Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “FIBROBLASTS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 793 records · Page 44Linked to original sources

Impact of transforming growth factor-beta1 on atrioventricular node conduction modification by injected autologous fibroblasts in the canine heart.

BACKGROUND: Atrioventricular (AV) nodal ablation for management of atrial fibrillation (AF) is irreversible and requires permanent pacemaker implantation. We hypothesized that as an alternative, implantation of autologous fibroblasts in the perinodal region would focally modify AV nodal conduction and that this modulation would be enhanced by pretreatment with transforming growth factor-beta1 (TGF-beta1), a stimulant of fibroblasts. METHODS AND RESULTS: Skin biopsies were taken from 12 mongrel dogs, and derived fibroblasts were dissociated and grown in culture for 2 weeks. Multiple injections (0.25 mL) were made through an 8F NOGA catheter along the fast/slow AV nodal pathways as guided by an electroanatomic mapping system. Seven dogs received fibroblasts alone (1x10(6) cells/mL), 7 dogs received TGF-beta1 (5 microg), 4 dogs received fibroblasts and TGF-beta1 (1x10(6) cells/mL+5 microg), and 4 dogs received saline only. AV node function was assessed at baseline and after 4 weeks. Saline (80 mL) with assigned therapy (0.25 mL per injection) was injected into the peri-AV nodal region in each dog. At baseline, the AH interval (66+/-3 ms) and the average RR interval (331+/-17 ms) in pacing-induced AF were similar in each cohort. The increase in AH interval in normal sinus rhythm was longer after fibroblast (23+/-4 versus 5+/-5 ms; P=0.05) and fibroblast plus TGF-beta1 (50+/-5 versus 5+/-5 ms; P<0.001) injections than with saline alone, with similar findings during high right atrium and distal coronary sinus pacing. The AH interval was not significantly increased after TGF-beta1 injections. The AH interval was significantly longer after fibroblast plus TGF-beta1 injections than with either therapy (TGF-beta1 or fibroblasts) alone. The RR interval during AF was increased in dogs that received fibroblasts alone (110+/-36 versus -41+/-34 ms) and to a greater extent with the addition of TGF-beta1 (294+/-108 versus -41+/-34 ms). No AV block was seen in any cohort at 4 weeks. Labeled fibroblasts that expressed vimentin were identified in all dogs that received cell injections at 4 weeks. CONCLUSIONS: AV nodal modification can be achieved with injected fibroblasts without the creation of AV block. The effect on AV node conduction is substantially enhanced by pretreatment of fibroblasts with TGF-beta1. These data have therapeutic potential for the management of rapid ventricular rate during AF without pacemaker implantation.

Animals↗

Small molecule receptor tyrosine kinase inhibitor of platelet-derived growth factor signaling (SU9518) modifies radiation response in fibroblasts and endothelial cells.

BACKGROUND: Several small receptor tyrosine kinase inhibitors (RTKI) have entered clinical cancer trials alone and in combination with radiotherapy or chemotherapy. The inhibitory spectrum of these compounds is often not restricted to a single target. For example Imatinib/Gleevec (primarily a bcr/abl kinase inhibitor) or SU11248 (mainly a VEGFR inhibitor) are also potent inhibitors of PDGFR and other kinases. We showed previously that PDGF signaling inhibition attenuates radiation-induced lung fibrosis in a mouse model. Here we investigate effects of SU9518, a PDGFR inhibitor combined with ionizing radiation in human primary fibroblasts and endothelial cells in vitro, with a view on utilizing RTKI for antifibrotic therapy. METHODS: Protein levels of PDGFR-alpha/-beta and phosphorylated PDGFR in fibroblasts were analyzed using western and immunocytochemistry assays. Functional proliferation and clonogenic assays were performed (i) to assess PDGFR-mediated survival and proliferation in fibroblasts and endothelial cells after SU9518 (small molecule inhibitor of PDGF receptor tyrosine kinase); (ii) to test the potency und selectivity of the PDGF RTK inhibitor after stimulation with PDGF isoforms (-AB, -AA, -BB) and VEGF+bFGF. In order to simulate in vivo conditions and to understand the role of radiation-induced paracrine PDGF secretion, co-culture models consisting of fibroblasts and endothelial cells were employed. RESULTS: In fibroblasts, radiation markedly activated PDGF signaling as detected by enhanced PDGFR phosphorylation which was potently inhibited by SU9518. In fibroblast clonogenic assay, SU9518 reduced PDGF stimulated fibroblast survival by 57%. Likewise, SU9518 potently inhibited fibroblast and endothelial cell proliferation. In the co-culture model, radiation of endothelial cells and fibroblast cells substantially stimulated proliferation of non irradiated fibroblasts and vice versa. Importantly, the RTK inhibitor significantly inhibited this paracrine radiation-induced fibroblast and endothelial cell activation. CONCLUSION: Radiation-induced autocrine and paracrine PDGF signaling plays an important role in fibroblast and endothelial cell proliferation. SU9518, a PDGFR tyrosine kinase inhibitor, reduces radiation-induced fibroblast and endothelial cell activation. This may explain therapeutic anticancer effects of Imatinib/Gleevec, and at the same time it could open a way of attenuating radiation-induced fibrosis.

Cell Proliferation↗

Differential expression, function and response to inflammatory stimuli of 11beta-hydroxysteroid dehydrogenase type 1 in human fibroblasts: a mechanism for tissue-specific regulation of inflammation.

Stromal cells such as fibroblasts play an important role in defining tissue-specific responses during the resolution of inflammation. We hypothesized that this involves tissue-specific regulation of glucocorticoids, mediated via differential regulation of the enzyme 11beta-hydroxysteroid dehydrogenase type 1 (11beta-HSD1). Expression, activity and function of 11beta-HSD1 was assessed in matched fibroblasts derived from various tissues (synovium, bone marrow and skin) obtained from patients with rheumatoid arthritis or osteoarthritis. 11beta-HSD1 was expressed in fibroblasts from all tissues but mRNA levels and enzyme activity were higher in synovial fibroblasts (2-fold and 13-fold higher mRNA levels in dermal and synovial fibroblasts, respectively, relative to bone marrow). Expression and activity of the enzyme increased in all fibroblasts following treatment with tumour necrosis factor-alpha or IL-1beta (bone marrow: 8-fold and 37-fold, respectively, compared to vehicle; dermal fibroblasts: 4-fold and 14-fold; synovial fibroblasts: 7-fold and 31-fold; all P < 0.01 compared with vehicle). Treatment with IL-4 or interferon-gamma was without effect, and there was no difference in 11beta-HSD1 expression between fibroblasts (from any site) obtained from patients with rheumatoid arthritis or osteoarthritis. In the presence of 100 nmol/l cortisone, IL-6 production--a characteristic feature of synovial derived fibroblasts--was significantly reduced in synovial but not dermal or bone marrow fibroblasts. This was prevented by co-treatment with an 11beta-HSD inhibitor, emphasizing the potential for autocrine activation of glucocorticoids in synovial fibroblasts. These data indicate that differences in fibroblast-derived glucocorticoid production (via the enzyme 11beta-HSD1) between cells from distinct anatomical locations may play a key role in the predeliction of certain tissues to develop persistent inflammation.

11-beta-Hydroxysteroid Dehydrogenase Type 1↗

Insulin-like growth factors (IGF-I and IGF-II) and IGF-binding protein-3 production by fibroblasts of patients with Turner's syndrome in culture.

Reports indicate that in plasma insulin-like growth factor I (IGF-I) and IGF-binding protein-3 (IGFBP-3) are normal in patients with Turner's syndrome (TS). The aim of our study was to evaluate both the spontaneous and the stimulated synthesis of these peptides by mesenchymal cells obtained from skin biopsies of patients affected with TS. We compared the ability of fibroblasts from six TS patients with that of fibroblasts from six age-matched control (C) subjects to synthesize in vitro IGF-I, IGF-II, and IGFBP-3 under basal and GH-, estradiol (E2)-, or GH- plus E2-stimulated conditions. Furthermore, we evaluated IGF-I, IGF-II, and IGFBP-3 messenger ribonucleic acid (mRNA) expression in fibroblasts from TS and C subjects. Fibroblasts obtained from TS patients release into the medium significantly lower amounts of IGF-I and IGF-II than C fibroblasts (P = 0.0435 and 0.0318, respectively). In TS fibroblasts, GH and E2 are able to induce a similar increase, although not significant, of IGF-I secretion into the medium (163 +/- 75% and 112 +/- 41% of control values). On the contrary, in C fibroblasts, GH is more effective (275 +/- 61%; P = 0.0277) than E2 (75 +/- 46%). In both cell lines, GH and E2 do not significantly modify IGF-II release. Interestingly, the medium conditioned by fibroblasts from TS contains, under basal conditions, significantly higher amounts (273 +/- 79 ng/1 x 10(6) cells) of IGFBP-3 than that from control fibroblasts (67 +/- 19 ng/1 x 10(6) cells; P = 0.0191). GH exerts a stimulatory effect, although it is not statistically significant, on IGFBP-3 secretion, particularly in control fibroblasts. By contrast, the effect of E2 is inhibitory in all TS fibroblast cell lines, although it does not reach statistical significance (P = 0.067). In agreement with these data, a reduced mRNA expression of the genes encoding for IGF peptides was evident in TS fibroblasts, whereas no significant difference could be demonstrated for IGFBP-3 mRNA. The results suggest a reduced autocrine/paracrine action of IGFs in TS and indicate that skin fibroblast cultures can give information on the local responsiveness to the treatment.

Adolescent↗

Foetal-to-adult transitions in fibroblast phenotype: their possible relevance to the pathogenesis of cancer.

We have previously shown that the migration of foetal, adult and transformed fibroblasts into three-dimensional collagen gels is differentially affected by plating cell density. We now present data indicating that the migration of these fibroblasts is also differentially affected by local cell density in microdomains of the gel surface. In this article we discuss the possible biochemical and behavioural mechanisms that may contribute to the different migratory phenotypes expressed by foetal, adult and transformed fibroblasts; these include: (1) cell-induced alterations in the orientation and or packing density of collagen fibres in the gel; (2) deposition of specific matrix macromolecules by the fibroblasts; (3) social interactions between the cells; and (4) secretion of soluble factors affecting cell migration. We show that foetal fibroblasts secrete a migration stimulating factor (MSF) not produced by adult cells. Incubation of adult fibroblasts in the presence of MSF induces these cells to express a foetal-like migratory phenotype. Foetal fibroblasts undergo a spontaneous foetal-to-adult transition in migratory phenotype after prolonged passage in vitro; this transition is accompanied by a cessation in MSF production. MSF appears to promote fibroblast migration at high cell density by stimulating the deposition of hyaluronic acid in the extracellular matrix. Recent studies have indicated that skin fibroblasts from cancer patients display certain behavioural abnormalities characteristic of transformed and/or foetal cells. In this regard, we have shown that skin fibroblasts from cancer patients commonly express a foetal-like phenotype with respect to migratory behaviour and secretion of MSF: it is of interest to note that these cancer patient fibroblasts are indistinguishable from normal adult cells in other respects, such as morphology in confluent culture. On the basis of these observations, we suggest that: (1) fibroblasts in certain individuals fail to undergo normal foetal-to-adult transitions in a number of phenotypic characteristics; and that (2) the disruption in epithelial-mesenchymal interactions caused by the continued presence of these foetal-like fibroblasts in the adult significantly increases the risk of cancer development.

Cell Movement↗

Differentiation of fibroblast stem cells.

Primary human skin fibroblasts derived from the abdomen of 45 female donors of the four age groups 1-20, 20-40, 40-60, and 60-80 years were studied in primary explant, in primary low-density mass cultures, and in primary clonal populations in vitro. As a function of the age of the donor, primary mitotic and postmitotic fibroblasts in the three primary cell systems analysed represent heterogeneous populations with reproducible changes in the proportions of the mitotic fibroblasts MF I, MF II, MF III, and postmitotic fibroblasts PMF IV, PMF V, PMF VI, and PMF VII. These findings make it very likely that equivalent cell types exist in the connective tissue of skin in vivo, and that these cells undergo reproducible changes in the proportions of the mitotic and postmitotic counterparts in vivo as a function of the age of the donor. Secondary mitotic human skin fibroblast populations of the cell line HH-8 in vitro underwent 53.6 +/- 6.0 cumulative population doublings (CPD) in 302 +/- 27 days. If appropriate methods are applied, mitotic fibroblasts differentiate spontaneously into postmitotic fibroblasts which are kept in stationary cultures for up to 305 +/- 41 additional days. As a function of the CPD level and of the duration of stationary culture, secondary mitotic and postmitotic fibroblast populations are heterogeneous populations with reproducible changes in the proportions of mitotic fibroblasts MF I, MF II, and MF III, and postmitotic fibroblasts PMF IV, PMF V, PMF VI, and PMF VII. The seven secondary fibroblast cell types show differentiation-dependent and cell-type specific patterns of [35S]methionine polypeptides in total soluble cytoplasmic and nuclear proteins, in secreted proteins, and in membrane bound proteins. These findings make it very likely that the morphologically recognizable primary and secondary fibroblasts differentiate spontaneously along a seven stage terminal cell lineage MF I - MF II - MF III - PMF IV - PMF V - PMF VI - PMF VII in three compartments of the fibroblasts stem cell system.

Adolescent↗

Fibroblasts express RANKL and support osteoclastogenesis in a COX-2-dependent manner after stimulation with titanium particles.

UNLABELLED: Synovial fibroblasts are possible mediators of osteolysis. Fibroblasts respond directly to titanium particles and increase RANKL expression through a COX-2/PGE2/EP4/PKA signaling pathway. Fibroblasts pretreated with titanium or PGE2 stimulated osteoclast formation, showing the functional importance of RANKL induction. Synovial fibroblasts and their activation pathways are potential targets to prevent osteolysis. INTRODUCTION: Bone loss adjacent to the implant is a major cause of joint arthroplasty failure. Although the cellular and molecular response to microscopic wear debris particles is recognized as causative, little is known concerning role of synovial fibroblasts in these events. MATERIALS AND METHODS: Murine embryonic fibroblasts and knee synovial fibroblasts in culture stimulated with titanium particles were examined by FACS, real time RT-PCR, Northern blot, and Western blot for expressions of vascular cell adhesion molecule (VCAM)1, RANKL, cyclooxygenase (COX)-1, and COX-2, and the four prostaglandin E2 (PGE2) receptor isoforms. Experiments were performed in the presence and absence of COX inhibitors, protein kinase A (PKA) and protein kinase C (PKC) inhibitors, and various EP receptor agonists. Osteoclast formation was examined in co-cultures of pretreated glutaraldehyde-fixed fibroblasts and primary murine spleen cells treated with macrophage-colony stimulating factor (M-CSF) for 7-days. RESULTS: TNF-alpha stimulated VCAM1 expression, consistent with a synovial fibroblast phenotype. Titanium particles stimulated RANKL gene and protein expressions in fibroblasts in a dose-dependent manner. Gene expression was increased 5-fold by 4 h, and protein levels reached a maximum after 48 h. Within 1 h, titanium particles also induced COX-2 mRNA and protein levels, whereas both indomethacin and celecoxib blocked the stimulation of RANKL, suggesting a COX-2-mediated event. Furthermore, PGE2 induced RANKL gene and protein expression and rescued RANKL expression in titanium-treated cultures containing COX-2 inhibitors. Fibroblast cultures pretreated with either PGE2 or titanium particles enhanced osteoclast formation, indicating the functional importance of RANKL induction. EP4 was the most abundant PGE2 receptor isoform, EP1 and EP2 were expressed at low levels, and EP3 was absent. The EP1 selective agonist iloprost and the EP2 selective agonist butaprost minimally stimulated RANKL. In contrast, the EP2 and EP4 agonist misoprostol induced RANKL to a magnitude similar to PGE2. Finally, PKA antagonism strongly repressed RANKL stimulation by PGE2. CONCLUSION: Fibroblasts respond directly to titanium particles and increase RANKL expression through a COX-2/PGE2/EP4/PKA signaling pathway. Thus, the synovial fibroblast is important mediator of osteolysis and target for therapeutic strategies.

Animals↗

Proliferative characteristics of fibroblast lines derived from open lung biopsy specimens of patients with IPF (UIP).

We compared the doubling time of fibroblasts derived from idiopathic pulmonary fibrosis (usual interstitial pneumonia) (IPF [UIP]) lung tissues and control fibroblasts, cultured in usual growth medium, and examined the response of these fibroblasts to platelet-derived growth factor (PDGF) and prostaglandin E2 (PGE2). Ten fibroblast lines from open lung biopsy specimens of patients with IPF (UIP) and ten control fibroblast lines from surgically resected lung tissue of patients with limited lung diseases were established. The average doubling time of fibroblast lines was 32.0 +/- 6.0 h (mean +/- SD) in UIP and 33.2 +/- 10.4 h in controls, showing no difference between the two groups. To examine the responses of fibroblasts to PDGF and PGE2 and the differences between fibroblasts derived from fibrotic tissues with different intensity of fibrosis, lung specimens from five patients with IPF were subdivided into two groups, higher-intensity fibrotic lesions (H) and lower-intensity fibrotic lesions (L). The fibroblast lines were established separately. 3H-thymidine uptake with or without PDGF or PGE2 was examined. Results were expressed as the index of thymidine incorporation into the fibroblasts. There were no differences in the doubling times and the responses to PDGF and PGE2 between H and L. There were no differences between control and H regarding their response to PDGF. In response to PGE2, the growth inhibition for H was significantly decreased compared with the control (p less than 0.05). There was no difference in growth inhibition between H and L. The finding that PGE2 inhibits fibroblast proliferation less in UIP lung tissue suggests that fibroblasts from UIP were functionally altered cells or, to some extent, out of normal regulation. These results suggest an abnormal proliferation of fibroblasts observed in IPF (UIP).

Cell Division↗

Transcript profiling of periodontal fibroblasts and osteoblasts.

BACKGROUND: Fibroblasts are critical to the establishment and maintenance of the periodontal attachment apparatus (cementum, periodontal ligament [PDL], and bone). In order to characterize the cellular changes that accompany periodontal regeneration, better tools are necessary to distinguish periodontal ligament fibroblasts (PDLF), gingival fibroblasts, and osteoblasts. Our goal is to identify gene markers to better characterize and identify these cell types. METHODS: We chose to examine and compare the expression of numerous gene transcripts by semiquantitative reverse transcriptase-polymerase chain reaction using primers specific for 44 different gene transcripts in order to better characterize the identity of these cells. RESULTS: Several transcripts were cell-type specific. Specifically, fibromodulin was expressed only in PDL fibroblasts, while osteopontin was expressed only in dermal fibroblasts. In addition, lumican was expressed by all three types of fibroblasts (PDL, gingival, and dermal), while alkaline phosphatase was expressed by osteoblasts as well as PDL and gingival fibroblasts. CONCLUSIONS: Our results indicate that PDL fibroblasts are distinct from either gingival or dermal fibroblasts or osteoblasts. In general, PDL and gingival fibroblasts displayed greater similarity to each other than either displayed toward dermal fibroblasts. Furthermore, both gingival and PDL fibroblasts displayed greater similarity to osteoblasts than to dermal fibroblasts, possibly reflecting their common origin (the neural crest).

Cell Differentiation↗

Stimulation of collagen gel contraction by angiotensin II and III in cardiac fibroblasts.

OBJECTIVE: The aim of the present study was to investigate whether angiotensin II (Ang II), angiotensin III (Ang III) or Ang II (2-8), angiotensin IV (Ang IV) or Ang II (3-8) and Ang II (1-7), Ang II (4-8), Ang II (5-8) and Ang II (1-4) can stimulate collagen gel contraction in cardiac fibroblasts in serum-free conditions. METHODS: Cardiac fibroblasts (from male adult Wistar rats) from passage 2 were cultured to confluency and added to a hydrated collagen gel in a Dulbecco's Modified Eagle's Medium, with or without foetal bovine serum, for one, two or three days. The area of the collagen gels embedded with cardiac fibroblasts was determined by a densitometric analysis. Collagen gel contraction was characterised by a decrease in the gel area. RESULTS: Ang II dose-dependently stimulated the contraction of collagen mediated by cardiac fibroblasts after one, two or three days of incubation in a serum-free medium. Telmisartan completely blocked the Ang II-induced collagen contraction by cardiac fibroblasts. PD 123319 and des-Asp(1)-Ile(8)-Ang II had no effect on the Ang II-induced collagen contraction by cardiac fibroblasts. Ang III also stimulated the contraction of collagen mediated by cardiac fibroblasts after one, two or three days of incubation in a serum-free medium. des-Asp(1)-Ile(8)-Ang II and telmisartan completely blocked the Ang III-induced collagen gel contraction by cardiac fibroblasts. des-Asp(1)-Ile(8)-Ang II, however, had no effect on the Ang II-induced collagen gel contraction by cardiac fibroblasts. Ang IV and Ang II (4-8), (5-8), (1-7) and (1-4), however, had no effect on collagen gel contraction by cardiac fibroblasts. Addition of telmisartan, PD 123319 or des-Asp(1)-Ile(8)-Ang II alone did not affect collagen gel contraction by cardiac fibroblasts. CONCLUSION: Our data demonstrate that the effects of Ang II on the collagen gel contraction by adult rat cardiac fibroblasts in serum-free conditions are Ang II type 1(AT(1))-receptor- mediated, because they are abolished by the specific AT(1)-receptor antagonist, telmisartan, and not by the AT(2)-receptor antagonist PD 123319 or by the Ang III antagonist des-Asp(1)-Ile(8)-angiotensin. The Ang III- stimulated contraction of collagen by cardiac fibroblasts is completely blocked by the Ang III receptor antagonist, des-Asp(1)-Ile(8)-angiotensin II, and by telmisartan.

Angiotensin II↗

Effects of cholesterol on proliferation and functional protein expression in rabbit bile duct fibroblasts.

AIM: To investigate the effect of cholesterol (Ch) on the growth and functional protein expression of rabbit bile duct fibroblasts. METHODS: The cultured bile duct fibroblasts were divided randomly into two groups: the control group and the experiment group (fibroblasts were incubated respectively with 0.6 g/L Ch for 12, 24, 36 and 48 h). The growth and DNA synthesis of bile duct fibroblasts were measured by the means of (3)H-TdR incorporation. The total protein content of fibroblast was measured by BSA protein assay reagent kit, then the expression of alpha-actin was analyzed semi-quantitatively by Western blot. RESULTS: After treatment with 0.6 g/L Ch for 12, 24, 36 and 48 h, the values of (3)H-TdR incorporation of bile duct fibroblasts were respectively 3.1+/-0.39, 3.8+/-0.37, 4.6+/-0.48 and 5.2+/-0.56 mBq/cell, and the values of the corresponding control groups were 3.0+/-0.33, 3.2+/-0.39, 3.7+/-0.49 and 4.3+/-0.43 mBq/cell. After comparing the values of experiment groups and their corresponding control groups, it was found that the (3)H-TdR incorporation of bile duct fibroblasts after treatment with 0.6 g/L Ch for 24, 36 and 48 h were significantly increased (P<0.05, P<0.01, P<0.01), while the (3)H-TdR incorporation of 12-h group was not different statistically from its control group. Ch had no obvious effect on the total protein content of fibroblasts. After incubated with 0.6 g/L Ch for 12, 24, 36 and 48 h, the total protein content of each experiment group was not altered markedly compared with its corresponding control group. The values of experiment groups were 0.246+/-0.051, 0.280+/-0.049, 0.263+/-0.044 and 0.275+/-0.056 ng/cell, and those of corresponding control groups were 0.253+/-0.048, 0.270+/-0.042, 0.258+/-0.050 and 0.270+/-0.045 ng/cell. Western blot analysis revealed that the alpha-actin expression in fibroblasts affected by Ch for 12 and 24 h was not markedly changed compared with their corresponding control groups (P>0.05), the values of total gray scale of 12- and 24-h groups were 1748+/-185 and 1756+/-173, respectively. But after stimulation with Ch for 36 h, the total gray scale of fibroblasts (1923+/-204) was significantly higher than that of control group (1734+/-197). When the time of Ch treatment was lengthened to 48 h, the alpha-actin expression was markedly elevated, the total gray scale was 2 189+/-231 (P<0.01 vs control group). CONCLUSION: Moderately concentrated Ch can promote the proliferation of bile duct fibroblasts at early stage. With the prolongation of Ch treatment, the alpha-actin expression of fibroblasts was also increased, but the hypertrophy of fibroblasts was not observed.

Actins↗

IL-6 and matrix metalloproteinase-1 are regulated by the cyclin-dependent kinase inhibitor p21 in synovial fibroblasts.

During the pathogenesis of rheumatoid arthritis (RA), the synovial fibroblasts increase in number and produce proinflammatory cytokines and matrix metalloproteinases (MMPs) that function to promote inflammation and joint destruction. Recent investigations have suggested that cell cycle activity and inflammation may be linked. However, little is known about the mechanisms responsible for the coordinate regulation of proliferation and the expression of proinflammatory molecules in RA synovial fibroblasts. Here, we demonstrate a 50 +/- 10% decrease in the expression of p21, a cell cycle inhibitor, in the synovial fibroblast population from RA compared with osteoarthritis (OA) synovial tissue. Moreover, p21 positivity in the synovial fibroblasts inversely correlates with medium synovial lining thickness (r = -0.76; p < 0.02). The expression of p21 is also reduced in isolated RA synovial fibroblasts compared with OA synovial fibroblasts. Adenovirus-mediated delivery of p21 (Ad-p21) arrests both RA and OA synovial fibroblasts in the G(0)/G(1) phase of the cell cycle without inducing cytotoxicity. However, the spontaneous production of IL-6 and MMP-1 is suppressed only in the Ad-p21-infected RA synovial fibroblasts, indicating a novel role for p21 in RA. Analyses of p21-deficient mouse synovial fibroblasts reveal a 100-fold increase in IL-6 protein and enhance IL-6 and MMP-3 mRNA. Restoration of p21, but not overexpression of Rb, which also induces G(0)/G(1) cell cycle arrest, decreases IL-6 synthesis in p21-null synovial fibroblasts. Furthermore, in RA synovial fibroblasts the ectopic expression of p21 reduces activation of the AP-1 transcription factor. Additionally, p21-null synovial fibroblasts display enhanced activation of AP-1 compared with wild-type synovial fibroblasts. These data suggest that alterations in p21 expression may activate AP-1 leading to enhanced proinflammatory cytokine and MMP production and development of autoimmune disease.

Adenoviridae↗

Sera from patients with scleroderma inhibit fibroblast micromotions monitored electrically.

OBJECTIVE: To investigate scleroderma fibroblast behavior, and the effect of different human sera on fibroblast behavior, we established a model using the newly developed electrical biosensor, electrical cell-substrate impedance sensing (ECIS). METHODS: Cellular locomotion, defined as cellular micromotion, measured by ECIS indicates the dynamic vertical motion of a given group of cells. The junctional resistance (Rb) between adjacent cells and the average height (h) between basal cell surface and substratum derived from ECIS were quantified for dermal fibroblasts obtained from patients with scleroderma and normal controls. The cellular micromotions of both scleroderma and normal control fibroblasts were compared in the presence of different human sera, including those from patients with scleroderma, systemic lupus erythematosus (SLE), and Sjögren's syndrome (SS) and from normal individuals. RESULTS: The Rb and h levels for scleroderma and normal fibroblasts were 2.7 omega.cm2, 150 nm and 0.8 omega.cm2, 303 nm respectively. The micromotions of scleroderma fibroblasts were more active than those of normal fibroblasts. Sera from patients with scleroderma can inhibit the micromotions of normal fibroblasts but not those of scleroderma fibroblasts, while sera from patients with SLE and SS have no inhibitory effect on either normal or scleroderma fibroblast micromotions. CONCLUSION: We have demonstrated the previously unrecognized characteristics of dermal fibroblasts and sera derived from patients with scleroderma. It is possible that in vivo activities cause scleroderma fibroblasts to display active cellular micromotions, while sera from patients with scleroderma inhibit the micromotions of normal fibroblasts. The use of ECIS technology has also provided a new approach to the study of scleroderma.

Aged↗

Neurotransmitter modulation of interleukin 6 (IL-6) and IL-8 secretion of synovial fibroblasts in patients with rheumatoid arthritis compared to osteoarthritis.

OBJECTIVE: The sensory nervous system with the 2 neurotransmitters substance P (SP) and calcitonin gene related peptide (CGRP) is proinflammatory in experimental models of arthritis. The role of the sympathetic nervous system with norepinephrine (NE), adenosine, beta-endorphin, and methionine enkephalin (MENK) is not clearly understood. We studied the influence of these neurotransmitters on secretion of interleukin 6 (IL-6) and IL-8 in primary cultures of synovial fibroblasts of patients with rheumatoid arthritis (RA) compared to osteoarthritis (OA). METHODS: Fibroblasts were isolated using fresh synovial tissue of 5 patients with RA and 5 with OA who underwent knee joint replacement surgery. Modulation of spontaneous secretion of IL-6 and IL-8 was investigated in vitro using the neurotransmitters noted above. RESULTS: In RA fibroblasts, CGRP increased IL-6 and IL-8 secretion at 10(-10) to 10(-8) M (p at least < 0.01), which was not observed in OA fibroblasts. SP had no effect on either cytokine in RA fibroblasts but stimulated IL-8 secretion at 10(-8) M in OA fibroblasts (p < 0.01). In RA fibroblasts, adenosine and NE inhibited secretion of both cytokines at low concentrations (10(-8) M; p < 0.01). However, in OA fibroblasts there was a NE induced increase of IL-8 and IL-6 secretion at 10(-7) and 10(-6) M (p < 0.01), but no inhibition at lower concentrations (10(-8) M; p = NS). In RA fibroblasts, beta-endorphin and MENK inhibited IL-8 secretion at 10(-9) to 10(-7) M (p < 0.01), whereas in OA fibroblasts the dose response curve was shifted to lower concentrations (10(-12) M, 10(-11) M; p < 0.01). CONCLUSION: In OA fibroblasts, the sympathetic neurotransmitters were stimulatory at higher concentrations. CGRP was the most potent stimulatory neurotransmitter in RA fibroblasts whereas the sympathetic adenosine, NE, beta-endorphin, and MENK were inhibitory. This indicates a dualism of action of sympathetic and sensory neurotransmitters, with inhibitory and stimulatory effects on cytokine secretion of RA fibroblasts.

Aged↗

Tumour-stroma interactions between metastatic prostate cancer cells and fibroblasts.

Previous work has shown the importance of tumour-stroma interactions for prostate cancer development at the primary site. The aim of the present study was to find out whether evidence can be found for a tumour-stroma cross- talk also between metastatic prostate cancer cell lines and non-prostatic stromal fibroblasts which are encountered by metastatic cells at most sites. We addressed this issue in cell culture systems using 3 metastatic human prostate cancer cell lines (LnCaP, PC-3 and DU-145) on the one hand, and a human fibroblast line (HFF, human foreskin fibroblasts) on the other. We incubated fibroblasts with tumour cell- and tumour cells with fibroblast-conditioned media and evaluated several parameters important for the establishment of metastases such as cell proliferation, migration and expression of matrix degrading proteases. We also determined in the conditioned media the concentrations of several growth factors and cytokines which might be responsible for the observed effects. We found that media conditioned by all 3 metastatic prostate cancer cell lines stimulated fibroblast proliferation which corresponds to fibrous stroma induction in vivo. DU-145 cell conditioned media induced in fibroblasts expression of mmp-1 mRNA known to be important for tumour invasion. ELISA assays revealed that tumour cells secrete bFGF, PDGF and TNFalpha known to stimulate fibroblast proliferation and/or MMP-1 expression. Cultivation of DU-145 carcinoma cells in fibroblast conditioned medium resulted in an enhanced proliferation and anchorage-independent growth of this cell line in soft agar. Fibroblast conditioned medium also increased migration of PC-3 cells in the wound assay and slightly augmented mmp-1 expression. KGF (able to stimulate proliferation of normal and neoplastic prostate epithelial cells) was secreted by fibroblasts at higher concentrations than by all 3 tumour cell lines. In addition, fibroblasts secreted TNFalpha, bFGF, PDGF, HGF and also VEGF, the most important factor for tumour vascularization. Our results provide evidence that tumour-stroma interactions do not only exist at the primary site but also between metastatic prostate cancer cell lines and their fibroblastic microenvironment. These interactions, which are mediated through secreted factors, affect several steps of the metastatic cascade including proliferation, anchorage-independent growth, migration and the secretion of matrix-degrading proteases.

Carcinoma↗

Creatine kinase and lactate dehydrogenase isoenzyme patterns in cultured normal and pathological gingival fibroblasts.

The isoenzyme patterns of creatine kinase (CK) and lactate dehydrogenase (LDH) were examined in cultured fibroblasts derived from the gingival tissue of a healthy person and patients with periodontitis and gingival fibromatosis. Human foreskin fibroblasts were also included for comparison. Cytosol fractions were prepared by sonication and centrifugation. Gingival fibroblasts from normal subjects (A), and from patients with periodontitis (B) or fibromatosis (C), exhibited CK-MM (muscle form) as a predominant isoenzyme and CK-BB (brain form) as a minor fraction. There was no significant difference in specific activities of CK-BB fraction in all 3 types of fibroblasts. However, B fibroblasts contained a higher proportion of MM type isoenzyme than A fibroblasts. C fibroblasts showed the lowest amount of CK-MM isoenzyme as compared to either A or B fibroblasts. In contrast, fibroblasts derived from human foreskin (D) contained only a small amount of CK-BB isoenzyme, but CK-MM was not present. In the studies of LDH isoenzymes, A, B, and C fibroblasts possessed only 3 isoenzymes, namely, LDH-3, LDH-4 and LDH-5. In terms of the relative abundance of M vs H subunits, A, B, and C fibroblasts were shown to have a preponderance of M subunits (85-87% M vs 13-15% H subunits). In comparison, D fibroblasts contained 4 isoenzymes (LDH-2, LDH-3, LDH4, LDH-5) with 73% M and 27% H subunits. The ratio of LDH-5 to LDH-4 was calculated for all fibroblasts tested, and the values were 1.11 in A, 1.39 in B, 1.16 in C and 0.64 in D.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Regulation of the growth rate of mouse fibroblasts by IL-3-activated mouse bone marrow-derived mast cells.

When mouse bone marrow-derived mast cells (BMMC) are cocultured with a confluent layer of mouse 3T3 fibroblasts in the presence of WEHI-3-conditioned medium, the mast cells undergo a phenotypic change toward that of a connective tissue mast cell, and the fibroblasts increase their synthesis of globopentaosylceramide. We now demonstrate that fibroblasts lose their contact inhibition and multiply such that by the 2nd and the 4th wk of coculture there are, respectively, approximately four-fold and six-fold more fibroblasts than in the cultures that are not exposed to BMMC. This in vitro increase in the number of fibroblasts is dependent on the number of mast cells (over the range of 6 x 10(4) to 1 x 10(6) BMMC/culture) initially seeded with the fibroblasts and on the concentration of WEHI-3-conditioned medium present during the coculture. That the fibroblasts also multiply in BMMC/fibroblast cocultures exposed to synthetic IL-3 or to purified IL-3 indicates that IL-3 is a component in WEHI-3-conditioned medium that induces mast cells to produce the fibroblast growth factor. The number of fibroblasts does not increase if fibroblasts are exposed to lysates of BMMC, or to BMMC-derived conditioned medium, or if the two cell types are separated from one another during the coculture with a 3-microns filter or a 0.4-microns filter. Thus, IL-3-activated BMMC must be in proximity to fibroblasts to induce them to multiply. Because of their increased numbers per culture dish, total fibroblasts that were cocultured with mast cells synthesized approximately two-fold more 35S-labeled proteoglycans, incorporated approximately 3-fold more [3H] proline into collagenase-sensitive proteins, and had substantially more alpha 2(I) collagen mRNA than fibroblasts that were maintained in the absence of mast cells. These is vitro studies reveal a sequence by which IL-3-activated mast cells may play a role in the induction of fibrosis.

Animals↗

Fibroblast-dependent tumorigenicity of cells in nude mice: implication for implantation of metastases.

The inadequate nature of the microenvironment is one of several factors considered in the failure of tumor engraftment in athymic mice; in the present work, we have tried to more adequately reconstitute it by injecting tumor cells together with fibroblasts. We have demonstrated that the s.c. co-inoculation of fibroblasts with different kinds of tumor cells of animal origin [rat rhabdomyosarcoma (RMS) 9-4/0, rat hepato-carcinoma FAO] or human origin (colonic adenocarcinoma HT29, Ewing's sarcoma pleural metastasis EW-S1) is necessary for tumor take and growth when the number of tumor cells alone is below the tumorigenic dose. We have shown that the s.c. coinoculation of 10(6) fibroblasts and 10(2) RMS 9-4/0 tumor cells induced a tumor take in all the recipient mice, while 10(2) tumor cells alone never gave any tumor. With a tumorigenic number of RMS 9-4/0 tumor cells (10(4), addition of 10(6) fibroblasts decreased the delay between cell injection and tumor appearance, thereby increasing tumor take and growth rate. These results were observed not only in nude animals (mice and rats) used as recipient animals but also in normal WAG rats receiving the syngeneic RMS 9-4/0 tumor cells, and they were independent of the nature or origin of the different fibroblasts cells. This helper effect has also been observed in the normal WAG rats. I.v. injection of tumor cells from a poorly metastatic 9-4/8 subline, derived from the RMS 9-4/0 line and mixed with 10(6) fibroblasts, gave a high number of lung colonies. Addition of 10(6) irradiated 9-4/8 tumor cells instead of fibroblasts did not increase the lung colonizing potential. Fibroblast-conditioned medium mixed with tumor cells instead of fibroblasts also enhanced tumor take and size but to a lesser extent than did the fibroblasts themselves. Only endothelial cells cultured from porcine aorta had a similar helper effect among the cells tested. It is argued in the discussion that the proliferating state of cultivated fibroblasts is a determinant factor conferring upon them the ability to promote tumor cell growth, while fibroblasts very numerous at the implantation site but quiescent might not be efficient in cooperation. Changes in fibroblast morphology and physiology may be necessary in order for tumor cells to express their tumorigenicity.

Animals↗