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Transdifferentiation of cardiac fibroblasts, a fetal factor in anti-SSA/Ro-SSB/La antibody-mediated congenital heart block.

The signature lesion of autoantibody-associated congenital heart block (CHB) is fibrosis of the conducting tissue. To date, participation of myofibroblasts in the cascade to injury has been unexplored. The importance of myofibroblast/macrophage cross-talk is demonstrated by the novel finding of these cell types in the heart of a neonate dying of CHB. This clue to pathogenesis prompted consideration of the mechanism by which maternal anti-SSA/Ro-SSB/La Abs initiate an inflammatory response and promote fibrosis. Isolated cardiocytes from 16-24 wk abortuses were rendered apoptotic by exposure to poly (2-) hydroxyethylmethacrylate; flow cytometry confirmed surface expression of Ro/La. Apoptotic cardiocytes were incubated with affinity-purified Abs to 52 and 60 kDa Ro from CHB mothers (opsonized) or IgG fractions from healthy donors (nonopsonized). Macrophages cultured with opsonized apoptotic cardiocytes expressed proinflammatory markers, supported by a three-fold increase in active alpha(V)beta(3) integrin. Fetal cardiac fibroblasts exposed to supernatants obtained from macrophages incubated with opsonized apoptotic cardiocytes (but not nonopsonized) dramatically increased expression of the myofibroblast marker alpha-smooth muscle actin (SMAc). The "opsonized" supernatant reversed an inhibitory effect of the "nonopsonized" supernatant on proliferation of fibroblasts (120 vs 69%, p < 0.05). Parallel experiments examined the effects of two cytokines and their neutralizing Abs on fibroblasts. TGFbeta1 increased SMAc staining but decreased proliferation. TNF-alpha did not affect either readout. Addition of anti-TGFbeta1 Abs to the "opsonized" supernatant blocked SMAc expression but increased proliferation, while anti-TNF-alpha blocking Abs had no effects. These data suggest that transdifferentiation of cardiac fibroblasts to a scarring phenotype is a pathologic process initiated by maternal Abs.

Antibodies, Antinuclear↗

Role of transforming growth factor-beta in transdifferentiation and fibrosis of lens epithelial cells.

PURPOSE: To determine the levels of mRNAs encoding markers of fibrosis in lens epithelial cells (LECs) from patients with anterior polar cataracts and to test whether transforming growth factor (TGF)-beta enhances the expression of mRNAs for mesenchymal markers in LECs. METHODS: LECs attached to the anterior capsules of patients with nuclear or anterior polar cataracts were analyzed by reverse transcription-polymerase chain reaction (RT-PCR) for the expression of mRNAs encoding pathologic extracellular matrix proteins, a marker of myofibroblast transformation, growth factors, and growth factor receptors, and by western blot analysis for the proteins encoded by these mRNAs. Bovine lens epithelial explants and intact rabbit lenses cultured with or without TGF-beta1 were also subjected to RT-PCR and western blot analysis. RESULTS: The levels of fibronectin, type I collagen, and alpha-smooth muscle actin (SMA) mRNAs were higher in LECs from patients with anterior polar cataracts than in those from patients with nuclear cataracts. Expression of mRNAs for TGF-beta1, TGF-beta2, TGF-beta receptor type II, and connective tissue growth factor (CTGF) was significantly greater in anterior polar type than in nuclear type cataracts. In contrast, expression of mRNAs for epidermal growth factor (EGF), epidermal growth factor receptor (EGFR), fibroblast growth factor (FGF)-2, and FGF receptor-1 was similar in LECs from the two types of cataracts. TGF-beta1 markedly increased the levels of fibronectin, type I collagen, and alpha-SMA mRNA in bovine lens epithelial explants and intact rabbit lenses. CONCLUSIONS: This is the first finding showing altered mRNA expression in LECs from anterior polar cataracts. Enhanced expression of TGF-beta and the TGF-beta receptor suggests that TGF-beta derived from LECs may function in an autocrine fashion as the prime mediator of transdifferentiation and pathogenesis in human LECs. Elevated levels of CTGF mRNA suggest that this growth factor may play a role in the increased deposition of extracellular matrix in metaplastic LECs.

Actins↗

A single endotoxin aggression causes dose-dependent reversible activation of rat liver Ito cells without their transdifferentiation into myofibroblasts.

The effect of Gram-negative bacterial lipopolysaccharide on rat hepatocytes and sinusoidal cells was studied. The damage and regeneration potential of the liver were evaluated by activation of perisinusoidal Ito cells and proliferative activity of liver cells. Compensatory and repair reactions in the liver induced by lipopolysaccharide manifested by proliferation of liver cells and reversible activation of Ito cells without their transdifferentiation into myofibroblasts.

Actins↗

Transforming growth factor beta1 treatment leads to an epithelial-mesenchymal transdifferentiation of pancreatic cancer cells requiring extracellular signal-regulated kinase 2 activation.

The aim of this study was to examine the effects of transforming growth factor (TGF) beta1 on the phenotype and the biological behavior of pancreatic cancer cell lines with and without mutations in the TGF-beta signaling pathway and to elucidate whether the Ras signaling cascade participates in mediating these effects of TGF-beta1. TGF-beta-responsive (PANC-1, COLO-357, and IMIM-PC1) and nonresponsive (CAPAN1 and IMIM-PC2) pancreatic cancer cell lines with activating mutations of the Ki-Ras oncogene were treated with 10 ng/ml TGF-beta1 over time. Phenotypic alterations were studied by electron and phase contrast microscopy and by immunohistochemistry and expression analyses of differentiation markers. The influence of TGF-beta on tumor cell scattering, migration, and invasion was determined. The role of the Ras-mitogen-activated protein kinase kinase (MEK)-extracellular signal-regulated kinase (ERK) cascade in mediating TGF-beta-induced morphological and functional effects were studied by pretreatment with the MEK1 inhibitor PD 98059 and by measuring ERK2 activation using immune complex kinase assays. TGF-beta1 led to a reversible and time-dependent epithelial-mesenchymal transdifferentiation (EMT) in TGF-beta-responsive pancreatic cancer cell lines, characterized by a fibroblastoid morphology and an up-regulation of mesenchymal markers and a down-regulation of epithelial markers. EMT was associated with an increase in tumor cell migration, invasion, and scattering. In the responsive cell lines, TGF-beta1 induced a moderate but sustained activation of ERK2. EMT, the concomitant changes in gene expression, and the invasive and migratory potential were reduced or abolished by pretreatment with the selective MEK1 inhibitor. Thus, in TGF-beta-responsive pancreatic cancer cells with activating Ki-Ras mutations, TGF-beta1 treatment caused an EMT associated with a more invasive phenotype. Cross-talk with the Ras-MEK-ERK-signaling cascade appears to be essential for mediating these effects of TGF-beta1.

Cell Differentiation↗

[The myc oncogene and transdifferentiation of the retinal pigment epithelium].

The retinal pigment epithelium (RPE) develops from the same sheet of neuroepithelium as the neuroretina. When infected with MC29, a v-myc expressing virus, the RPE cells can be induced to transdifferentiate and to take a neuroretinal epithelium fate. After a PCR-based differential screening from these cells we have identified three genes of interest. Qath5, a quail basic helix-loop-helix (bHLH) gene that is closely related to the Drosophila atonal, and whose expression is found in the developing neuroretina. A Chx10-related homeobox gene also expressed in the developing neuroretina and HuD, a RNA-binding protein not expressed in the RPE but expressed during neurogenesis. Beside these genes whose function is involved in regulating neuronal differentiation myc also induced a transient Mitf expression. Mitf is expressed in the entire optic cup, later restricted to the pigmented retina. Mitf is involved in the regulation of the pigmented differentiation. We conclude that v-myc can reverse the RPE to the bipotential retinal primordia.

Alpharetrovirus↗

TGFbeta3-induced activation of RhoA/Rho-kinase pathway is necessary but not sufficient for epithelio-mesenchymal transdifferentiation: implications for palatogenesis.

TGFbeta-induced epithelio-mesenchymal transdifferentiation (EMT) has been shown to play a pivotal role in developmental processes such as palatogenesis and heart organogenesis. Interestingly, EMT has also been shown to contribute to the promotion of invasiveness during the later stages of tumorigenesis. Here we show that cells induced to undergo EMT by TGFbeta3 demonstrate increased motility on fibronectin and display a rapid activation of RhoA followed by a gradual downregulation of Cdc42 and Rac3 activity. The induced expression of a fast-cycling RhoA mutant (RhoA F30) stimulates the formation of stress fibers and spreading, and therefore the generation of mesenchymal phenotype. Inactivation of the Rho effector Rho-kinase, interferes with TGFbeta3-induced EMT by inhibiting stress fiber formation, whereas disruption of adherens and tight junctions was not significantly affected. Moreover, we show that TGFbeta3-induced RhoA/Rho-kinase activation is biologically significant, since palatal shelves from pre-fusion mouse embryos cultured in the presence of Rho-kinase inhibitors failed to fuse and midline epithelial cells did not undergo EMT. To conclude, our results indicate that TGFbeta3 induces rapid activation of the RhoA/Rho-kinase pathway and subsequently reorganization of the actin cytoskeleton. These changes are likely to be necessary in biological processes in which EMT has been shown to play a critical role, such as palatal fusion.

Animals↗

[Transdifferentiation of conjunctival epithelium after ocular surface rehabilitation through deep lamellar sclerokeratoplasty].

PURPOSE: The quality of the postoperative corneal epithelia of patients with severe ocular surface disorders, whose ocular surface had been reconstructed through deep lamellar sclerokeratoplasty (DLSKP) using allografts, was examined. PATIENTS AND METHODS: Six eyes with ocular surface disorders in 6 patients who had received DLSKP were observed for periods of 2 years or longer (average: 3 years and 10 months). The rehabilitated corneal epithelium cells of some of these patients were analyzed with impression cytology and fluorescence in situ hybridization (FISH) analysis methods. RESULTS: All 3 cases analyzed using the impression cytology method showed normal corneal epithelium cell forms. In the 2 cases analyzed also with the FISH analysis method, in which the hosts and donors were of the opposite gender, the cells were host-derived (99.3% and 98.8%). CONCLUSION: It is considered that rehabilitation of severe ocular surface disorders using allograft epithelial transplantation procedures, including DL-SKP, is eventually concluded by transdifferentiation of the conjunctival epithelium cells derived from the host.

Adult↗

Transdifferentiation of macrophages into fibroblasts as a result of Schistosoma mansoni infection.

The possibility of transdifferentiation of macrophages into fibroblasts which could be at the origin of fibrotic tissue in schistosome-infected mice was studied using immunocytochemical techniques. Macrophage cell samples extracted from the peritoneal cavity of schistosome-infected mice were fractionated on a Percoll gradient. The cultures were purified by treatment with a trypsin solution to eliminate any fibroblasts possibly collected along with the macrophages. Immunocytochemical methods were then used to characterize the cells at different points in time. The fibroblastic property of the morphologically transformed cells was confirmed by their positive labeling with the anti-procollagen antibody. However, these cells still possessed the mac-1 and mac-2 antigens which characterize the monomacrophage line.

Animals↗

Transdifferentiation of corneal epithelium: evidence for a linkage between the segregation of epidermal stem cells and the induction of hair follicles during embryogenesis.

Corneal epithelium transdifferentiation into a hair-bearing epidermis provides a particularly useful system for studying the possibility that transient amplifying (TA) cells are able to activate different genetic programs in response to a change in their fibroblast environment, as well as to follow the different steps of rebuilding an epidermis from induced stem cells. Corneal stem and TA cells are found in different locations - stem cells at the periphery, in the limbus, and TA cells more central. Moreover, the TA cells already express the differentiating corneal-type keratin pair K3/K12, whereas the limbal keratinocytes express the basal keratin pair K5/K14. In contrast, suprabasal epidermal keratinocytes express keratin pair K1-2/K10, and basal keratinocytes the keratin pair K5/K14. The results of tissue recombination experiments show that adult central corneal cells are able to respond to specific information originating from embryonic dermis. First, the cells located at the base of the corneal epithelium show a decrease in expression of K12 keratin, followed by an increase in K5 expression; they then proliferate and form hair follicles. The first K10 expressing cells appear at the junction of the new hair follicles and the covering corneal epithelium. Their expansion finally gives rise to epidermal strata, which displace the corneal suprabasal keratinocytes. Corneal TA cells can thus be reprogrammed to form epidermal cells, first by reverting to a basal epithelial-type, then to hair pegs and probably concomitantly to hair stem cells. This confirms the role of the hair as the main reservoir of epidermal stem cells and raises the question of the nature of the dermal messages which are both involved in hair induction and stem cell specification.

Animals↗

[Transdifferentiation and collagen-synthesis effects of exogenous connective tissue growth factor on renal tubular epithelial cells in vitro].

OBJECTIVE: To investigate the effects of recombinal human connective tissue growth factor (rhCTGF) stimulation on epithelial-myofibroblast transdifferentiation (EMT) and collagen-synthesis in human renal tubular epithelial cell line (HK2) in vitro. METHODS: The cultured HK2 cells were stimulated with rhCTGF of 5 ng/mL. The morphological changes were observed under an inverted microscope. The cells were collected at 0, 3, 6, 12, 24 and 48 hrs after rhCTGF stimulation. The expression of E-cadherin,alpha-smooth muscle actin (alpha-SMA), collagen Ialpha1 (Col Ialpha1) and collagen IValpha1 (Col IValpha1) mRNAs were detected by RT-PCR. RESULTS: rhCTGF stimulation changed the HK2 cell appearance from oval to fusiformdown-regulated the E-cadherin mRNA expression and up-regulated alpha-SMA mRNA expression, but had no effects the Col Ialpha1 and Col IValpha1 mRNA expression. CONCLUSIONS: Exogenous CTGF can mediate the EMT but has no collagen-synthesis effects on HK2 cells.

Actins↗

TGFbeta induces transdifferentiation of iBREC to alphaSMA-expressing cells.

Transforming growth factor beta (TGFbeta) both inhibits proliferation of macrovascular endothelial cells and promotes their transdifferentiation to alpha-smooth-muscle-actin (alphaSMA)-expressing mesenchymal cells in vitro. Recently, we have confirmed that proliferation of immortalized bovine retinal microvascular endothelial cells (iBREC) is strongly inhibited by TGFbeta2. We now demonstrate a complete transition of both parental iBREC and single cell-derived subclones from cobblestone morphology to a ragged appearance as a consequence of incubation for a few days with 10 ng/ml TGFbeta1 or TGFbeta2. Depending on the type of culture medium, 5-40% of these cells strongly expressed alphaSMA after approximately 6 days whereas expression of the endothelial cell-specific marker proteins von Willebrand factor and VE Cadherin (CD144) declined. Expression of alphaSMA, associated with formation of stress fibers, was first detected in single cells and then spread to adjacent cells, and declined slowly after prolonged cultivation in medium without TGFbeta2. However, re-constitution of vWF expression was not observed. TGFbeta2-induced phenotypic alterations were specific, as they were not caused by treatment of iBREC with VEGF, IGF-1 or bFGF. Induction of alphaSMA expression but not effects on morphology was strongly inhibited by bFGF, whereas IGF-1 enhanced TGFbeta2-induced alphaSMA expression. These findings may have an important impact on the understanding of development of microvascular complications of diabetes such as diabetic retinopathy.

Actins↗

[Transdifferentiation of chondrocytes into osteogenic cells].

Hypertrophic chondrocytes, commonly considered as terminal cells designated to apoptotic elimination in the model of endochondral osteogenesis, are accordingly to the new concept based on histochemical, immunohistochemical, biochemical and cytological analysis, able to switch their metabolism and enter the osteoblastic differentiation path. According to this concept, some osteocytes in model of endochondral osteogenesis are derivative of hypertrophic chondrocytes. Also non-hypertrophic chondrocytes are able to transdifferentiate toward osteogenic cells, and the bone formed by such mechanism is termed "transchondroid bone".

Animals↗

Transdifferentiation of ductular cells into hepatocytes in regenerating hamster pancreas.

The transdifferentiation of regenerating pancreatic cells into hepatocytes in the Syrian golden hamster and Fischer rat is an example of the surprising plasticity of cells in the adult animal. While earlier experiments suggested that these might be derived from acinar cells, unequivocal evidence of this in both models has not been forthcoming. In this paper, we document that pancreatic ductular epithelium in the hamster is the cell of origin and that presumptive hepatocytes can be identified morphologically as early as the 3rd day after the induction of regeneration. The patterns of development of various organelles as characterized by their acquisition of liver-specific protein markers parallels those that have been reported by others during the differentiation of embryonic and postnatal hepatocytes. Colloidal gold-labeled antibody staining of carbamoyl phosphate synthetase, a liver-specific mitochondrial enzyme, and catalase, a peroxisomal enzyme, first appeared 60 hours and 4.5 days postregeneration, respectively. At these times, the morphologic features of the hepatocyte phenotype in the pancreas were ambiguous. Morphometric analysis showed that for both enzymes, the number of gold particles/organelle increased to a maximum by the 9th week. In contrast, urate oxidase, a liver-specific peroxisomal enzyme, was not identified by ultrastructural immunochemistry until the 14th day after regeneration and remained at low levels through the 9th week.

Animals↗

Transdifferentiation of chicken embryo neural retina into pigment epithelium: indications of its biochemical basis.

Neural retina from 8- to 9-day embryo chickens was grown in long-term cell culture in an experiment to test the hypothesis that one step during the in vitro transdifferentiation of neural retina into pigment cells occurs in response to stimulation of tricarboxylic acid (TCA) cycle activity. Time-lapse photography showed that pigment-cell formation occurs through the intermediate stages of 'undistinguished cells', 'pavement epithelium' and 'potential pigment cells'. Mitosis of undistinguished cells to pavement epithelium was proportional to malonate over most of the tested range of concentrations and was inhibited by succinate, which respectively depress and stimulate the TCA cycle. Conversely mitosis of pavement epithelium to potential pigment cells occurred in proportion to succinate concentration over most of the tested range and was inhibited by malonate, in support of the hypothesis under test. Melanin synthesis begins in a minority of 'pigment leader cells' uniquely stimulated by the lowest concentration of malonate, although higher concentrations blocked pigment synthesis in all cell types. The pigment leader cells appear to act as centres of influence upon neighbouring potential pigment cells, which subsequently also become pigmented. Lactate inhibited most or all of the steps in formation of pigment epithelium. Between three and five mitoses occur in the production of pigment cells, whereas multilayers and lentoid bodies seem to be formed by expansion of undistinguished cells, probably without mitosis. The observations lead to a general theory that metaplastic conversion between cell types in eye tissues may require the physical isolation of overtly differentiated, multipotent cells from 'leader' cells which normally hold them in physiological subjugation.

Animals↗

'Transdifferentiation' of chicken neural retina into lens and pigment epithelium in culture: controlling influences.

The in vitro transdifferentiation of chicken embryo neural retina into pigment epithelium and lens cells was investigated under a variety of experimental conditions. Our findings suggest that some aspects of the phenomena are a function of medium composition and volume, whereas others depend upon conditions which develop during culture growth. Before melanin is visible, potential pigment cells are recognized as foci within epithelial sheets which remain in contact with the dish. The final area occupied by colonies of potential pigment cells is directly proportional to bicarbonate concentration. Low total medium volume also favours formation of potential pigment cells. In contrast the extent of cells other than potential pigment cells is not related to bicarbonate and is favoured when the volume of medium is large. Accumulation of melanin within the potential pigment cell colonies is suppressed when cells are crowded together. Lentoid bodies are formed from cells which are distinct from potential pigment cells and arise in crowded situations, in association with multilayering. Another type of structure superficially resembling a lentoid is derived from cell aggregates formed during the initial establishment of cultures. The survival of these 'aggregate bodies' is inversely related to bicarbonate concentration. Crystallin content is unrelated to lentoid numbers. The results provide the basis for a new hypothesis concerning cytodifferentiation in this system.

Animals↗

Transdifferentiation of human monocytes into fibroblast-like cells in vitro.

Proliferative vitreoretinopathy is a process of uncontrolled cell proliferation in the vitreous. There is some evidence that monocytes and macrophages play an essential role during the pathogenesis. The purpose of this study was to investigate whether human monocytes derived from the peripheral blood can transform into fibroblast-like cells under in vitro conditions. To provide similar environmental conditions in vitro, human monocytes were brought onto fresh calf vitreous and kept for 17 days. Monocytes differentiated into macrophages and assumed a fibroblast-like morphology. During transdifferentiation, expression of CD11c was present for only 3 days and that of CD18, for only 7 days. The longest presence was found for CD68 expression, which lasted for 15 days. The present results indicate that human monocytes from the peripheral blood are capable of transforming into fibroblast-like cells under in vitro conditions. Blood-borne monocytes could therefore represent a major source for the fibroblast-like cells found in proliferative vitreoretinopathy.

Antibodies, Monoclonal↗

Transdifferentiation of pigmented multipotent epithelium during morphallactic development of budding tunicates.

In the budding tunicate, Polyandrocarpa misakiensis, the atrial epithelium is the major formative tissue giving rise to the pharynx, digestive tract, brain and endostyle of a bud. We show here that this multipotent epithelium carries several differentiation markers that are lost in the process of bud development. In both adult animals and growing buds, the atrial epithelium contained orange-pigmented granules in the cytoplasm. In developing buds, on the other hand, the cells committed to organ primordia have lost the granules, taken a cuboidal shape and have a large nucleus with a prominent nucleolus, like undifferentiated cells. The atrial epithelium was also characterized by ALP expressed on the apical surface of the cell. During budding the enzyme activity disappeared from the atrial epithelium and reappeared in the primordial digestive tract. Immunohistochemical studies suggested strongly that during gut formation, ALP antigens has been switched from the epithelial isoform to the intestinal isoform. These results have shown that in P. misakiensis budding involves transdifferentiation of multipotent, but differentiated epithelium, confirming our previous results (Fujiwara and Kawamura, Dev. Growth Differ. 34:463-472, 1992).

Alkaline Phosphatase↗

Endothelial transdifferentiated phenotype and cell-cycle kinetics of AIDS-associated Kaposi sarcoma cells.

The nature of Kaposi sarcoma (KS) (vascular malignancy vs. discordant angiogenesis) and lineage of the progenitor cell remain unclear. Therefore, AIDS-KS enzyme isolate cultures were prepared from excised skin lesions. Endothelial marker positivity for Factor VIII related antigen (F8RAg), Ulex europaeus agglutinin (UEA), and angiotensin-converting enzyme (ACE) were determined by fluorescence microscopy (FM) and flow cytometry (FCM). DNA cell-cycle analysis was performed using FCM. KS lesions showed large thick-walled channels (F8RAg and UEA strongly +), narrow vascular slits and thin-walled lakes (F8RAg and UEA weakly +), and non-prominent spindle cells (F8RAg and UEA almost uniformly negative). KS cultures yielded heterogenous populations of spindle, stellate, and flattened endothelial-like cells, displaying positivity for F8RAg (64 +/- 3%; mean +/- SE), UEA (40 +/- 9%), and ACE (81 +/- 9%). When injected subcutaneously in the nude mouse these cells failed to produce tumors. During contact inhibition induced quiescence, KS cultures exhibited a high G2M (18 +/- 3%) compared to non-KS (7 +/- 4%; p < 0.04), evidence of an altered proliferative potential consistent with a transdifferentiated or transformed phenotype.

Acquired Immunodeficiency Syndrome↗