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L Staiano-Coico

Publications and source records attributed to L Staiano-Coico.

At least 19 recordsLinked to original sources

Targeted inhibition of wound-induced PAI-1 expression alters migration and differentiation in human epidermal keratinocytes.

In the adult epidermis, keratinocytes do not normally express the type-1 inhibitor of plasminogen activator (PAI-1). Basal epithelial cell-specific PAI-1 synthesis, however, accompanies epidermal wound repair in vivo in which PAI-1 transcripts and immunoreactive protein are confined to epithelial cells in the migrating tongue and the hyperproliferative zone. A model system using human keratinocytes (HaCaT cells) was developed to assess functional relationships between epithelial growth state transitions and PAI-1 expression. PAI-1 synthesis was maximal in low population density, exponentially growing HaCaT cultures; relative PAI-1 mRNA and protein levels progressively declined as cells attained, and were maintained in, a postconfluent condition. While the fraction of PAI-1(+) keratinocytes remained stable (at approximately 85-90% of the population) throughout the culture period, both PAI-1 mRNA abundance and mean cell-associated PAI-1 protein declined by >90% during prolonged (i.e., 8-day) growth arrest. Similar to epidermal trauma in vivo, scrape wounding of HaCaT monolayers resulted in the rapid and location-specific induction of PAI-1 protein (an increase of 11- to 16-fold relative to unwounded cultures) in cells immediately bordering the injury site. PAI-1 expression was evident in keratinocytes that comprised the opposed migrating fronts and remained elevated until wound closure. Down-regulation of PAI-1 synthesis in HaCaT cells transfected with an inducible LacSwitch-based antisense vector system markedly impaired both the rate and the extent of wound closure. All injuries created in antisense PAI-1 monolayers remained unhealed at day 8 postinjury compared to the 3-day complete repair typical of control cultures. Vector-driven modulation of PAI-1 synthesis was also associated with an increase in the percentage of suprabasal-type keratinocytes within the wound field. PAI-1 expression by migrating HaCaT cells appears necessary to maintain the basal epidermal phenotype and/or appropriate cell-to-substrate adhesion during injury repair.

Cell Differentiation↗

PAI-1 gene expression is regionally induced in wounded epithelial cell monolayers and required for injury repair.

Induced expression of plasminogen activator inhibitor type-1 (PAI-1), a major negative regulator of pericellular plasmin generation, accompanies wound repair in vitro and in vivo. Since transcriptional control of the PAI-1 gene is superimposed on a growth state-dependent program of cell activation (Kutz et al., 1997, J Cell Physiol 170:8-18), it was important to define potentially functional relationships between PAI-1 synthesis and subpopulations of cells that emerge during the process of injury repair in T2 renal epithelial cells. Specific cohorts of migratory and proliferating cells induced in response to monolayer trauma were spatially as well as temporally distinct. Migrating cells did not divide in the initial 12 to 20 h postinjury. After 24 h, S-phase cells were generally restricted to a region 1 to 2 mm from, and parallel to, the wound edge. Proliferation of wound bed cells occurred subsequent to wound closure, whereas the distal contact-inhibited monolayer remained generally quiescent. Hydroxyurea blockade indicated, however, that proliferation (most likely of cells immediately behind the motile "tongue") was necessary for maintenance of cell-to-cell cohesiveness in the advancing front, although the ability to migrate was independent of proliferation. PAI-1 mRNA expression was rapidly up-regulated in response to wounding with inductive kinetics approximating that of serum-stimulated cultures. Differential harvesting of T2 cell subpopulations, based on proximity to the injury site, prior to Northern assessments of PAI-1 mRNA abundance indicated that PAI-1 transcripts were restricted to cells immediately bordering the wound or actively migrating and not expressed by cells in the distal contact-inhibited monolayer regions. Such cell location-specific distribution of PAI-1-producing cells was confirmed by immunocytochemistry. PAI-1 synthesis in cells that locomoted into the wound field continued until injury closure. Down-regulation of PAI-1 synthesis and matrix deposition in renal epithelial cells, stably transfected with a PAI-1 antisense expression vector, significantly impaired wound closure. Transfection of the wound repair-deficient R/A epithelial line with a sense PAI-1 expression construct restored both approximately normal levels of PAI-1 synthesis and repair ability. These data indicate that PAI-1 induction is an early event in creation of the wound-activated phenotype and appears to participate in the regulation of renal epithelial cell motility during in vitro injury resolution.

Animals↗

Wound fluids: a reflection of the state of healing.

Analyzing acute and chronic wound fluids provides an important and intriguing insight into the wound milieu. This review outlines some of the salient features of wound repair and the wound fluid environment. Most studies support the premise that the contents of the wound fluid reflect the status of the wound and can be indicative of whether a wound is on the course of a normal or impaired response to injury. For example, chronic wound fluids often differ from acute wound fluids in their proliferative effects on cells active in healing as well as their proteolytic effects. The authors discuss various cytokines, growth factors, proteinases, and protease inhibitors within wound fluids as well as their effect on wound repair. This review also presents confounding factors affecting interpretation of wound fluid studies, suggesting that further studies need to elucidate mechanisms whereby wound fluids either enhance or inhibit wound repair. So far, wound fluid analysis has yielded tantalizing glimpses of the teeming wound environment. What wound fluid contents tell us about the wound or its clinical care is not yet certain.

Acute Disease↗

Differential regulation of PAI-1 gene expression in human fibroblasts predisposed to a fibrotic phenotype.

Synthesis of the major negative physiologic regulator of plasmin activation [plasminogen activator inhibitor type-1 (PAI-1)] is elevated during progressive cellular senescence, in premature aging disorders (e.g., Werner's syndrome), and in conditions associated with tissue fibrosis and excessive fibrin accumulation (e.g., sclerosis, keloid formation). Dermal fibroblasts derived from Werner's patients as well as from keloid lesions markedly overexpress PAI-1 mRNA transcripts compared to normal skin fibroblasts. Such cell type-related differences in steady-state PAI-1 mRNA content, and variances in the relative abundance of the 3.0- compared to the 2.2-kb PAI-1 mRNA species, served to discriminate normal from Werner's and keloid fibroblasts. This disparity in PAI-1 mRNA levels paralleled transcriptional activities of the PAI-1 gene; de novo synthesis of PAI-1 protein among the three cell types, moreover, closely approximated the respective differences in total PAI-1 mRNA content. Despite the markedly elevated levels of PAI-1 mRNA and protein evident in newly confluent keloid fibroblasts, these cells effectively suppressed PAI-1 synthesis (as did normal dermal fibroblasts) upon culture in serum-free medium. Werner's syndrome skin fibroblasts, in contrast, continued to maintain high-level PAI-1 expression even after 3 days of growth arrest. Adhesion-mediated attenuation of serum-stimulated PAI-1 expression, a characteristic of normal cells involving sequences which mapped to the distal 5' flanking region of the PAI-1 gene, was retained in keloid but not Werner's fibroblasts. Collectively, these data suggest that (1) specific controls on PAI-1 gene expression are fundamentally different between these two clinically significant high PAI-1-synthesizing cell types and (2) the localized keloid may define the emergence of a distinct profibrotic dermal fibroblastoid phenotype in genetically predisposed individuals.

Adult↗

Growth state-dependent regulation of plasminogen activator inhibitor type-1 gene expression during epithelial cell stimulation by serum and transforming growth factor-beta1.

Transcription of the plasminogen activator inhibitor type-1 (PAI-1) gene appears to be growth state regulated in several cell types (e.g. , Ryan and Higgins, 1993, J Cell Physiol 155:376-384; Mu et al., 1998, J Cell Physiol 174:90-98). Transit of serum-stimulated normal rat kidney (NRK) epthelial cells through the first division cycle after release from quiescence (G(0)) provided a model system to assess the kinetics and mechanisms underlying PAI-1 expression in a growth "activated" phenotype. PAI-1 mRNA transcripts increased by more than 20-fold during the G(0)-->G(1) transition; induced expression had immediate-early response characteristics and abruptly declined prior to the onset of DNA synthesis. Transcriptional activity of the PAI-1 gene paralleled the steady-state mRNA abundance profile during this first synchronized growth cycle after release from quiescence. Although PAI-1 mRNA levels were up-regulated (approximately threefold) upon exposure to several different growth factors, neutralizing antibodies to transforming growth factor-beta1 (TGF-beta1) effectively attenuated the more than ninefold serum-associated PAI-1 inductive response by more than 70% (at both the mRNA transcript and protein levels). Similar to the metabolic requirements for serum-mediated PAI-1 transcription, PAI-1 induction upon addition of TGF-beta1 to quiescent NRK cell cultures was actinomycin D sensitive and resistant to cyclohexamide and puromycin, suggesting a primary mode of transcript control. The response to protein synthesis inhibitors, however, was complex. While cyclohexamide appeared to stabilize, or at least maintain, fetal bovine serum (FBS)- or TGF-beta1-stimulated PAI-1 mRNA levels, puromycin had no such affect. The amplitude and duration of induced PAI-1 expression were the same in either the presence or absence of puromycin. Cyclohexamide when used alone (i.e., in non-FBS- or TGF-beta1-treated cultures), moreover, effectively stimulated PAI-1 induction whereas puromycin was ineffective. Although TGF-beta1 was not a complete mitogen in the NRK cell system, incubation of quiescent renal cell cultures with TGF-beta1, prior to serum stimulation, resulted in a 10- to 12-fold increase in PAI-1 expression coincident with exit out of G(0). These data support a model in which PAI-1 gene expression is closely associated with creation of the growth-activated state and that cell cycle controls appear to be superimposed on the time course of the serum-induced expression of the PAI-1 gene.

Animals↗

Increased transcription and modified growth state-dependent expression of the plasminogen activator inhibitor type-1 gene characterize the senescent phenotype in human diploid fibroblasts.

The type-1 inhibitor of plasminogen activator (PAI-1) is a major physiologic regulator of pericellular proteolytic activity and, as such, influences matrix integrity, cell-to-substrate adhesion, and cellular proliferation. Excessive accumulation of both PAI-1 mRNA and protein correlates with the progressive acquisition of morphological and growth traits characteristic of the senescent phenotype (Mu and Higgins, 1995, J. Cell. Physiol., 165:647-657). Compared to early-passage IMR-90 human diploid fibroblasts, a late-passage senescence-associated 11-fold elevation in steady-state PAI-1 mRNA content reflected a 15-fold increase in constitutive PAI-1 gene transcription. Differential mRNA stability was not a factor in age-associated PAI-1 overexpression in IMR-90 cells. Upon removal of serum, early-passage human fibroblasts enter into a state of growth arrest with marked down-regulation of PAI-1 synthesis. Rapid induction of both the 3.0- and 2.2-kb PAI-1 mRNA species was evident upon serum-induced "activation" of quiescent early-passage fibroblasts; induced PAI-1 transcripts were maximal at 2 hr post-serum stimulation and declined in late G1 prior to entry into S phase. In contrast, late-passage (p32) fibroblasts maintained a significant level of PAI-1 expression under serum-free culture conditions. Although the PAI-1 gene was further responsive to serum in senescent cells, transcript abundance remained elevated and actually increased over the 12 to 16 hr post-serum addition period (a time when early-passage fibroblasts down-regulate PAI-1 mRNA content). Development of the senescent phenotype in human fibroblasts is associated, therefore, with significant changes in PAI-1 gene regulation. Such reprogramming involves predominantly transcriptional events and results in a marked increase in steady-state PAI-1 transcript abundance involving both the 3.0- and 2.2-kb mRNA species.

Cell Division↗

v-Crk, an effector of the nerve growth factor signaling pathway, delays apoptotic cell death in neurotrophin-deprived PC12 cells.

v-Crk is a member of a class of SH2 and SH3-containing adaptor proteins that have been implicated in regulating the TrkA receptor tyrosine kinase and potentiating Nerve Growth Factor (NGF)-mediated neurite outgrowth in pheochromocytoma (PC12) cells (Hempstead et al, Mol. Cell Biol. 14: 1964 - 1971). Given the fact that NGF induces both differentiation and survival by binding to TrkA, we examined the rate of apoptotic cell death elicited by NGF-withdrawal in native, v-Crk, and TrkA-expressing PC12 cells. While more than 50% of native PC12 cells underwent apoptosis within 48 h of NGF withdrawal, the v-Crk and TrkA-expressing cells were much more resistant to apoptosis under these conditions, whereby approximately 70 and 95%, respectively, of the cells were alive. The ability of v-Crk to delay apoptosis required prior NGF-dependent differentiation, since naive undifferentiated v-Crk expressing PC12 cells or cells that express v-Crk mutants that are defective in NGF signaling were not protected from apoptosis during growth factor withdrawal. Moreover, addition of 50 ng/ml EGF to serum and NGF deprived v-Crk expressing cells, which also causes neurite outgrowth, promoted complete and long-term survival, although such EGF replacement had no neurotrophic effect on wild-type PC12 cells or PC12 cells overexpressing Human Bcl-2. These experiments suggest that v-Crk potentiation of a receptor tyrosine kinase under conditions of growth factor deprivation is essential for preventing apoptosis. However, unlike native PC12 cells, neither v-Crk or TrkA-expressing PC12 cells exhibited a G1 arrest when incubated for 2 weeks in NGF. Thus, v-Crk and TrkA may protect NGF deprived PC12 by preventing cell cycle arrest and hence an aborted entry into a defective cell cycle. Moreover, during NGF-withdrawal, v-CrkPC12 cells exhibited down regulation in MAP kinase and JNK activities while in native cells, these activities increased within 6 - 8 h after NGF deprivation. Thus, unlike v-Crk-mediated augmentation of differentiation, sustained activation of MAP kinase may not be required for v-Crk-induced cell survival.

Journal Article↗

Analysis of cellular and decellular allogeneic dermal grafts for the treatment of full-thickness wounds in a porcine model.

BACKGROUND AND METHODS: The need for a reliable skin substitute to improve burn treatment has been long apparent. We have investigated the use of cryopreserved cellular and decellularized porcine allogeneic dermal grafts (CADGs or DADGs) in conjunction with an overlying thin split-thickness autograft (STSG) in a one-step technique. Control mirror-image wounds were treated with thin STSG alone. Autograft "take" rates and wound contraction were determined; biopsies were taken at weeks 2, 5, and 8, and blinded scar assessment was performed at week 10. RESULTS: The percent take of autografts overlying CADGs or DADGs was comparable to that of control sites (83.0 +/- 8.3% vs. 81.1 +/- 11.5% for CADG vs. control; 93.2 +/- 7.6% vs. 90.2 +/- 11.1% for DADG vs. control). CADGs did not alter wound contraction or cosmetic outcome. By contrast, DADG treatment inhibited wound contraction (42.9 +/- 17.8% vs. 30.9 +/- 10.4% contraction for control vs. DADG at week 10; p < 0.017) and significantly improved cosmetic outcome in 10 of 12 paired wounds (p < 0.012). CONCLUSION: CADGs and DADGs permitted simultaneous engraftment of an overlying thin STSG. Although CADGs had no effect on wound contraction and cosmetic outcome, DADGs significantly reduced wound contraction and improved cosmetic outcome of full-thickness wounds in a porcine model. The use of DADGs may represent a potential improvement in burn care.

Animals↗

Characterization of novel cell lines from pleomorphic adenomas of the parotid gland established in a collagen gel system.

The pathobiology of salivary neoplasms can best be studied in a model system that reflects the native state of the tumor. The present study describes the use of a three-dimensional collagen gel (organoid) system in which pleomorphic adenomas of the parotid gland were propagated in vitro. Five pleomorphic adenoma cultures were established as organoid gels and compared with touch-preparations or cryopreserved specimens of native tumor. The organoid cultures demonstrated normal DNA content, the expression of myoepithelial cell proteins, and the production of sulfated acid mucins; these cellular and secretory features mimicked those found in the archival specimens. Further, organoid cultures of pleomorphic adenoma could be initiated after monolayer culture, demonstrating that culture on a plastic support does not alter the nature of the cells. Development of an in vitro culture system that maintains the native state of pleomorphic adenoma is an important tool for studying the pathobiology of these tumors.

Actins↗

DNA analysis of human cholesteatomas.

HYPOTHESIS: The hypothesis tested in this article is that if cholesteatomas are a low-grade squamous cell neoplasm, then evidence of genetic instability, in the form of abnormal or aneuploid amounts of DNA, should be evident. BACKGROUND: Cholesteatoma is a destructive lesion of the middle ear and/or mastoid process that produces complications by erosion of the temporal bone. The clinical hallmarks of cholesteatomas, namely invasion, migration, uncoordinated proliferation, altered differentiation, aggressiveness, and recidivism, are traits typically associated with the neoplastic cell. However, there is little evidence to support or refute the speculation that cholesteatomas are a low-grade squamous cell neoplasm. the existence of defects in the genetic complement of the major cellular constituents comprising a cholesteatoma, fibroblasts and keratinocytes, would support the speculation that cholesteatomas are a neoplasm, since cancers commonly manifest quantitative and qualitative alterations in the normal euploid complement of genetic information, resulting in a cell that has an abnormal or aneuploid amount of DNA. METHODS: DNA content (ploidy) within cholesteatoma tissues was measured by flow cytometry and image analysis. RESULTS: The DNA content of 11 human cholesteatomas and nine postauricular skin specimens was analyzed using flow cytometry, while the DNA content of 10 cholesteatoma specimens was analyzed using image analysis. Interpretable data was obtained from 10 cholesteatoma specimens and six postauricular skin specimens. One cholesteatoma specimen demonstrated an abnormal aneuploid DNA content, whereas the remaining nine cholesteatomas and the six postauricular skin specimens demonstrated a normal euploid DNA content. CONCLUSIONS: We conclude that, due to the lack of overt genetic instability, as evidenced by the presence of a normal euploid DNA content, cholesteatomas are not low-grade neoplasms.

Adult↗

PAI-1 gene expression is growth state-regulated in cultured human epidermal keratinocytes during progression to confluence and postwounding.

Growth of human keratinocytes (NHKs) in submerged cultures approximates a "wound" response generally considered equivalent to regenerative maturation. Within this context, PAI-1 expression in cultured NHKs appears to be growth state-regulated and is associated with specific NHK subpopulations undergoing migration and proliferation in response to wounding; NHKs transit through specific phases during growth to confluence. Basal layer keratinocytes comprise several classes of nucleated epidermal cells (designated "A," "B," and "C") which are distinguishable on the basis of RNA content, population generation time, and expression of basal cell marker proteins. "A" substrate cells initially give rise to expanding proliferating keratinocyte colonies in vitro, but are rapidly replaced (at the stage of 50-75% culture confluence) by transient amplifying "B" cells and, eventually, the larger "C" subpopulation which subsequently differentiates into suprabasal spinous cells during the postconfluent growth period. Expression of plasminogen activator inhibitor type-1 (PAI-1), a serine protease inhibitor and member of the serpin gene family which is synthesized by "activated" or migrating keratinocytes in vivo, was restricted to the preconfluent stages of cell growth in vitro, a condition equivalent to wound regeneration in situ. PAI-1 mRNA and protein expression was maximal in 50-75% confluent cultures correlating, thereby, with the emergence of the transient amplifying "B" cell population. Flow cytometric analysis revealed that PAI-1 is detected early in expanding NHK colonies, during the initial recruitment of basal cells from the "A" state into the "B" compartment in the absence of significant proliferation, suggesting that PAI-1 may be active in regulating early NHK migratory events, independent of cell proliferation. Thereafter, these PAI-1-expressing "A" cells are recruited into the "B" compartment, where they continue to migrate, proliferate, and enlarge, eventually giving rise to PAI-1-expressing "C" cells. By the time NHK cultures reach exponential growth, virtually no small "A" cells contain immunoreactive PAI-1. PAI-1 expression peaks during preconfluent growth and remains confined to larger basal cell phenotypes. Cellular accumulation of both PAI-1 mRNA and protein appeared to be cell cycle phase-specific and characteristic of progression through an activated G1 growth phase. Induced expression, moreover, was restricted to a "window" in G1 with PAI-1 mRNA evident within 2 h after serum addition to growth-arrested cells and attaining maximal levels (50-fold) at 10 h poststimulation. Induced PAI-1 expression, thus, appears to be a general characteristic of the activated epidermal phenotype in vitro as well as in vivo.

Blood↗

Effects of nonsteroidal anti-inflammatory drugs on proliferation and on induction of apoptosis in colon cancer cells by a prostaglandin-independent pathway.

Nonsteroidal anti-inflammatory drugs (NSAIDs) decrease the incidence of and mortality from colon cancer. We observed that NSAIDs inhibit the proliferation rate, alter the cell cycle distribution, and induce apoptosis in colon cancer cell lines. We evaluated whether the inhibition by NSAIDs of prostaglandin (PG) synthesis is required for their effects on colon cancer cells by studying two human colon cancer cell lines: HCT-15 and HT-29. HCT-15, which lacks cyclooxygenase transcripts, does not produce PGs even when exogenously stimulated, whereas HT-29 produces PGE2, PGF2 alpha, and PGI2. HCT-15 and HT-29 cells, when treated for up to 72 hr with 200 microM sulindac sulfide (an active metabolite of sulindac) or 900 microM piroxicam, showed changes in proliferation, cell cycle phase distribution, and apoptosis. Treatment with PGE2, PGF2 alpha, and PGI2, following a variety of protocols, and at concentrations between 10(-6) and 10(-11) M, failed to reverse the effects of NSAIDs on these three parameters of cell growth. We concluded that NSAIDs inhibit the proliferation rate of the two colon cancer cell lines independent of their ability to inhibit PG synthesis. Thus, alternative mechanisms for their activity on tumor cell growth must be entertained. These observations may be relevant to the mechanism of colon tumor inhibition by NSAIDs.

Anti-Inflammatory Agents, Non-Steroidal↗

The effect of leukotrienes B and selected HETEs on the proliferation of colon cancer cells.

Eicosanoids have been implicated in colon carcinogenesis, but very little is known on the potential role of leukotrienes (LTs) and hydroxyeicosatetraenoic acids (HETEs) in this process; such compounds are produced by colonocytes and tumor infiltrating leukocytes. We studied the effect of LTB4, LTB4 methyl ester, LTB5, 12(R)-HETE, 12(S)-HETE and 15(S)-HETE (10(-10), 10(-8), 10(-6) M) on the proliferation rate, the cell cycle distribution, and the rate of apoptosis in HT-29 and HCT-15 human colon carcinoma cells. Our data show that LTB4, a lipoxygenase product, increased the proliferation rate of both cell lines in a time- and concentration-dependent manner. In HT-29 cells the concentration-response curve was bell-shaped (maximal effect at 10(-8) M). The proliferative effects of LTB4 in HT-29 cells were inhibited by SC-41930, a competitive antagonist of LTB4, suggesting the existence of an LTB4 receptor in epithelial cells. The methyl ester of LTB4 stimulated the proliferation of these cells, but LTB5, an isomer of LTB4 derived from eicosapentaenoic acid, did not. Of the HETEs, only 12(R)-HETE, a P-450 product, stimulated the proliferation of both cell lines; the other HETEs, all lipoxygenase products, failed to affect the proliferation of these cells. None of these eicosanoids had any effect on cell cycle distribution or apoptosis in either cell line. Taken together with our previous data showing that PGs stimulate colon cancer cell proliferation (Qiao et al. (1995) Biochim. Biophys. Acta 1258, 215-223), these findings indicate that arachidonic acid products synthesized via at least three different pathways (cyclooxygenase, lipoxygenase, P-450) may not be able to modulate the growth of colon cancer, and suggest a potential role in human colon carcinogenesis for LTB4 and 12(R)-HETE.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

Plasma from patients with idiopathic and human immunodeficiency virus-associated thrombotic thrombocytopenic purpura induces apoptosis in microvascular endothelial cells.

The pathogenesis of thrombotic thrombocytopenic purpura (TTP) is obscure. It is manifested classically by platelet thrombi and localized microvascular endothelial cell (EC) proliferation, in the absence of an inflammatory response. It is statistically associated with human retroviral disease, but pathological studies of TTP lesions have been unable to establish whether perturbation of the endothelium is a primary or secondary event, irrespective of the presence of retroviral infection. We document that plasma from all of four acute TTP patients, with or without human immunodeficiency virus infection, can induce apoptosis in cultured ECs of microvascular but not large vessel origin. This process was documented by three different methods, (1) laser-illuminated light scatter, (2) quantitation of the pre-G1 Ao peak on DNA histograms and direct visualization of chromatin fragmentation by acridine orange and 4'6-diamidino-2-phenylindole staining, and (3) agarose gel electrophoresis of low molecular weight cellular DNA. Apoptosis was independent of tumor necrosis factor-alpha secretion or the presence of CD36 on microvascular ECs but was linked to the rapid induction of Fas (CD95) on these cells. Soluble anti-Fas antibody, normal plasma depleted of cryoprecipitate, and low concentrations (< or = 0.1 micromol/L) of aurintricarboxylic acid were capable of suppressing TPP plasma-mediated EC apoptosis. In conclusion, microvascular EC apoptosis may be of pathophysiological importance in TTP may be susceptible to interruption by blockade of initiating signals for, or final common enzyme pathways leading to, programmed cell death.

Acridine Orange↗

Apoptotic depletion of CD4+ T cells in idiopathic CD4+ T lymphocytopenia.

Progressive loss of CD4+ T lymphocytes, accompanied by opportunistic infections characteristic of the acquired immune deficiency syndrome, ahs been reported in the absence of any known etiology. The pathogenesis of this syndrome, a subset of idiopathic CD4+ T lymphocytopenia (ICL), is uncertain. We report that CD4+ T cells from seven of eight ICL patients underwent accelerated programmed cell death, a process facilitated by T cell receptor cross-linking. Apoptosis was associated with enhanced expression of Fas and Fas ligand in unstimulated cell populations, and partially inhibited by soluble anti-Fas mAb. In addition, apoptosis was suppressed by aurintricarboxylic acid, an inhibitor of calcium-dependent endonucleases and proteases, in cells from four of seven patients, The in vivo significance of these findings was supported by three factors: the absence of accelerated apoptosis in persons with stable, physiologic CD4 lymphopenia without clinical immune deficiency; detection of serum antihistone H2B autoantibodies, one consequence of DNA fragmentation, in some patients; and its selectivity, with apoptosis limited to the CD4 population in some, and occurring among CD8+ T cells predominantly in those individuals with marked depletion of both CD4+ T lymphocytes linked to clinical immune suppression have evidence for accelerated T cell apoptosis in vitro that may be pathophysiologic and amenable to therapy with apoptosis inhibitors.

Adult↗

HIV-1 upregulates Fas ligand expression in CD4+ T cells in vitro and in vivo: association with Fas-mediated apoptosis and modulation by aurintricarboxylic acid.

CD4+ T-lymphocyte apoptosis has been associated with human immunodeficiency virus (HIV)-1 infection in vitro, paralleling the expression of Fas (APO-1, CD95) on peripheral blood mononuclear cells from patients with HIV disease. However, the link between Fas induction, T-cell activation, and cell death is unclear. We document, for the first time, marked upregulation of expression of mRNA for the ligand for Fas in peripheral blood mononuclear cells from HIV seropositive individuals, and demonstrate the ability of HIV infection to induce such expression in CD4+ T cells in vitro. We also define the relevance of this expression to HIV-mediated CD4+ T cell death. Our ability to downregulate Fas ligand message and suppress HIV-mediated apoptosis with aurintricarboxylic acid, a clinically used protease inhibitor with known activity against programmed cell death in other systems, may open up a new area of therapy for HIV infection.

Apoptosis↗

The effects of burn blister fluid on cultured keratinocytes.

OBJECTIVE: Previous studies have suggested that burn blister fluid (BBF) may be detrimental to the healing of the underlying wound bed. In this study, the effects of burn blister fluid on cultured keratinocyte proliferation and differentiation were examined and quantitated using various techniques. METHODS: At three different concentrations (2%, 10%, 20% in 20% fetal bovine serum/complete culture medium), 19 BBFs were tested in triplicate using 12 populations of cultured keratinocytes. All BBFs were collected from partial thickness burns within 72 hours of injury,. BBF was added on day 4 of the keratinocyte culture. The effect on proliferation and viability was assessed using trypan blue dye exclusion. Multiparameter flow cytometric analysis was used to quantitate population kinetics and cell size distribution. Keratinocyte differentiation was determined using immunohistochemical staining of differentiation markers and quantitation of cornified envelope formation. RESULTS: Relative to control fluid, the BBF caused a variable effect on proliferation, ranging from 67% inhibition to 103% stimulation with an overall 4% inhibition. The range of keratinocyte viability was narrower, with a similar overall 4% reduction. Using flow cytometry to analyze RNA/DNA content and cell size, the BBF caused a subtle shift in keratinocyte population kinetics and cell size distribution toward larger, less rapidly dividing cells. The BBF had no significant effect on expression of the differentiation markers, filaggrin and involucrin. Finally, the BBF did not alter terminal differentiation as it did not influence formation of cornified envelopes (BBF = 9.1 +/- 4.8%, control = 9.9 +/- 6.6%). CONCLUSION: Previous biochemical analysis has shown that BBF consists primarily of human serum filtrate with locally produced acute reactants. Our study suggests that BBF is biologically similar to serum and does not significantly alter keratinocyte proliferation or differentiation in vitro.

Adolescent↗

Transplantation of cryopreserved cultured epidermal allografts.

OBJECTIVE: To optimize cryopreservation methods for cultured epidermal allografts (CEAs) for transplantation onto wounds. DESIGN: Conditions were determined to optimize the cryopreservation of CEAs. Cryopreserved CEAs were then grafted onto 16 donor sites in a double blind randomized trial. MATERIALS AND METHODS: CEAs were grown in culture. Viability of cryopreserved CEAs was determined by: 1) trypan blue dye exclusion; 2) histology; 3) flow cytometry; and 4) acid lipase activity. Cryopreserved CEAs were grafted onto 16 donor sites. Wound healing assessments included 1) visual assessment of healing; 2) histologic assessment of re-epithelialization and differentiation; and 3) visual scar assessment. MEASUREMENTS AND MAIN RESULTS: CEAs were cryopreserved using a controlled rate freezer with an experimentally determined setting of -7 degrees C for the CEA freezing point. Such freezing conditions resulted in retention of approximately 92% of the original viability, no loss in basal keratinocytes as determined by flow cytometry, and no change in acid lipase activity. CEAs cryopreserved according to this method were grafted onto 16 donor sites in a double blind randomized trial. All donor sites underwent complete healing. Histologic examination of biopsies taken from the center of the wound beds showed that CEA-treated wounds significantly accelerated the rate of re-epithelialization (7.8 +/- 0.6 days vs. 9.2 +/- 0.9 days for CEA- and control-treated wounds, respectively; p = 0.039) and epithelial differentiation (p = 0.023) compared with control sites. Longterm results showed that CEA-treated wounds were comparable to control sites with regard to: 1) pigmentation; 2) scar height; 3) scar pliability; 4) vascularity; and 5) pain. Wounds treated with cryopreserved CEAs remained durable and not prone to blistering after healing. CONCLUSIONS: CEAs can be successfully cryopreserved for long-term storage. Upon retrieval from storage, CEAs may be used to treat partial thickness wounds.

Adult↗