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Biomedical subjects

P R Nelson

Publications and source records attributed to P R Nelson.

14 recordsLinked to original sources

Smooth muscle cell migration and proliferation are mediated by distinct phases of activation of the intracellular messenger mitogen-activated protein kinase.

PURPOSE: Mitogen-activated protein kinase (MAPK) is a ubiquitous signaling protein that has been associated with cellular proliferation; however, its role in cellular migration has not been established. In this study, we investigate the role of MAPK in platelet-derived growth factor (PDGF)-induced migration and proliferation of human vascular smooth muscle cells (SMCs). METHODS: SMC migration was measured using a microchemotaxis assay (4 hours), and proliferation was assessed using 3H-thymidine uptake and cell counts. PD098059 was used as a specific noncompetitive inhibitor of MAPK activation. RESULTS: Coincubation of SMCs with PD098059 resulted in significant inhibition of PDGF-BB (5 ng/ml)-induced SMC chemotaxis and proliferation. The IC50 for both processes was approximately 10 mumol/L with complete inhibition at 50 mumol/L. Stimulation of SMCs with PDGF produced an early peak in MAPK activity followed by a plateau of activity that persisted for 24 hours. We hypothesized that variations in the temporal activation of MAPK might explain the action of this enzyme on these two disparate cellular events. By adding PD098059 at intervals after stimulation of SMCs with PDGF, we demonstrated an association between MAPK activity within the first 15 minutes and SMC migration, whereas MAPK activity between 1 and 4 hours was associated with SMC proliferation. CONCLUSIONS: MAPK activity is essential for both SMC migration and proliferation, and distinct phases of enzyme activation are required to stimulate these two discrete cellular events. Inhibition of this signaling protein may prove to be a useful method for preventing intimal hyperplasia.

Becaplermin

Determination of (+)-alpha-tocopherol in environmental tobacco smoke.

A high-performance liquid chromatographic method is described for the quantitation of (+)-alpha-tocopherol in the particulate phase of environmental tobacco smoke (ETS) collected on a 1-micron pore size Fluoropore membrane. A methanol (MeOH) extract of the membrane, which can be used for four other ETS procedures, is analyzed for (+)-alpha-tocopherol on a reversed-phase column with fluorescence detection at selective wavelengths of 280 nm excitation and 330 nm emission. A mobile phase of MeOH and water is used. The method is reproducible with a relative standard deviation (%) of about 12. Recovery is 88%, and the procedure is capable of detecting greater than 0.04 microgram/m3 (+)-alpha-tocopherol in ETS. A comparison of the ETS from five commercially available cigarettes shows similar (+)-alpha-tocopherol concentrations. A cigarette that primarily heats tobacco yields about 6% of that amount of (+)-alpha-tocopherol found in ETS from tobacco-burning cigarettes. (+)-alpha-Tocopherol can be used as a marker for ETS respirable suspended particles (RSP) because it is found at a consistent amount in ETS RSP of 0.29%. However, sufficient amounts of RSP would have to be generated in order to detect (+)-alpha-tocopherol.

Chromatography, High Pressure Liquid

Comparative studies of the mutagenicity of environmental tobacco smoke from cigarettes that burn or primarily heat tobacco.

The mutagenicity of particulate matter concentrated from environmental tobacco smoke (ETS) from a prototype cigarette that primarily heats tobacco was compared to that of four popular commercially available cigarettes that burn tobacco. ETS was generated by six individuals simultaneously smoking 1 cigarette each in a 20-min time period in a 45 m3 environmental chamber operated in the static mode (without ventilation). Respirable suspended particles (RSP) were collected on polytetrafluoroethylene (PTFE) filters at a flow rate of 3 LPM for 120 min. Less ETS-RSP (86-90%) was emitted by the prototype tobacco-heating cigarette than by the tobacco-burning cigarettes. RSP was extracted from the filters by sequential sonication in acetone and dichloromethane. The acetone extract was dried under nitrogen and the dichloromethane filtrate was added and then dried to obtain ETS-RSP for testing. Mutagenicity was assessed in the microsuspension modification of the Ames Salmonella/microsome assay with strains TA98 and YG1024 in the presence of 5% S9 metabolic activation. The results show that the mutagenic activity of RSP from the prototype cigarette was reduced by 75-83% on a per-mg basis when compared to the commercially available cigarettes and was reduced by 96-98% when calculated as revertants/m3 air under identical smoking conditions.

Air Pollutants

Enhancement of migration by protein kinase Calpha and inhibition of proliferation and cell cycle progression by protein kinase Cdelta in capillary endothelial cells.

Activation of protein kinase C (PKC) induces angiogenesis, migration, and proliferation of endothelial cells (EC), but can also prevent growth factor-induced EC proliferation. To determine whether these disparate effects are mediated by substrates of individual PKC isoenzymes, PKCalpha and PKCdelta were overexpressed in rat microvascular EC. Basal and stimulated migration were enhanced in PKCalpha EC compared with either PKCdelta or control EC. Serum-induced growth of PKCdelta EC was decreased, while that of PKCalpha cells was similar to control EC. Phorbol ester markedly inhibited PKCdelta EC growth but enhanced growth of PKCalpha and control EC. To determine possible causes for this altered proliferation, the effect of PKCdelta on adhesion, mitogen-activated protein kinase activity, and cell cycle progression was measured. Adherence of PKCdelta EC to vitronectin was significantly enhanced. Serum-induced extracellular signal-regulated kinase-2 activity was increased equally in both PKCalpha and PKCdelta EC above that of control, while extracellular signal-regulated kinase-1 activity was similar in all EC. Cell cycle analysis suggested that PKCdelta EC entered S phase inappropriately and were delayed in passage through S phase. Thus, PKCalpha may mediate some proangiogenic effects of PKC activation; conversely, PKCdelta may direct antiangiogenic aspects of overall PKC activation, including slowing of the cell cycle progression.

Animals

Activation of pp60c-src is necessary for human vascular smooth muscle cell migration.

BACKGROUND: The most widely distributed nonreceptor tyrosine kinase is pp60c-src (src), yet the role of this intracellular signaling protein in cell migration has not been defined. Given that smooth muscle cell (SMC) migration is essential for the development of intimal hyperplasia, we investigated the importance of src in locomotion of human vascular SMC. METHODS: SMC migration was evaluated using a microchemotaxis chamber assay and videomicroscopy. Src kinase activity was determined by measuring phosphorylation of a synthetic derivative of p34cdc2, a specific substrate for src. Blocking antibodies to src were introduced using a cytoplasmic microinjection technique. RESULTS: Stimulation of SMC with platelet-derived growth factor (PDGF)-BB and AB resulted in an increase in src activation, whereas PDGF-AA did not consistently enhance src activity. These findings correlated with the ability of the PDGF isotypes to stimulate SMC chemotaxis; PDGF-BB and AB produced 7.4 +/- 0.3- and 5.3 +/- 0.5-fold increases in SMC chemotaxis, whereas PDGF-AA inhibited chemotaxis. SMC migration in response to PDGF-BB and serum was significantly inhibited by intracellular injection of a blocking antibody. CONCLUSIONS: Our findings reveal an association between agonist-induced src activation and chemotaxis. Moreover, an antibody that inhibits src activation dramatically inhibits migration of individual SMC. We conclude that activation of src is necessary for SMC migration. Because of its importance in SMC migration, either molecular or pharmacologic inhibitors of src may be useful in the control of intimal hyperplasia.

Becaplermin

The role of integrins in saphenous vein vascular smooth muscle cell migration.

PURPOSE: Smooth muscle cell (SMC) migration is an essential feature of the intimal hyperplastic process that so frequently limits the patency of vascular reconstructions. The purpose of this investigation was to evaluate the effect of a series of integrins, or cell surface receptors that mediate cellular attachment, on platelet-derived growth factor (PDGF) and extracellular matrix (ECM) protein-induced migration of human SMCs. METHODS: Immunofluorescence staining was used to search for various integrins and subunits on the surface of SMCs derived from human saphenous vein. Chemotaxis and haptotaxis of SMCs to various matrix proteins and PDGF were assayed using a 48-well microchemotaxis chamber in the presence or absence of antibodies that blocked the function of these integrins. RESULTS: Several subunits (beta 1, alpha 2, alpha 5) and one integrin (alpha v beta 3) were identified in saphenous vein SMCs. The beta 1 integrin antibody inhibited chemotaxis to collagen I and IV, laminin, and PDGF. The alpha 2 integrin antibody inhibited collagen I and IV, and laminin-induced chemotaxis. The alpha 5 integrin antibody had no effect on SMC migration. The alpha v beta 3 integrin antibody inhibited chemotaxis to PDGF but not to the ECM proteins. CONCLUSIONS: Integrins are necessary for SMC migration induced by PDGF and ECM proteins. The integrin or subunits responsible for facilitating migration varies with the stimulant. Agonists designed to inhibit integrin function might be used to suppress SMC migration and suppress the formation of intimal hyperplasia.

Cell Movement

Platelet-derived growth factor and extracellular matrix proteins provide a synergistic stimulus for human vascular smooth muscle cell migration.

PURPOSE: Smooth muscle cell (SMC) migration contributes significantly to the hyperplastic response that follows arterial injury. In vitro studies have shown that a number of growth factors and extracellular matrix (ECM) proteins individually stimulate vascular SMC migration. However, after arterial injury, SMCs exist in a complex environment in which they are exposed to many of these proteins simultaneously. The response of SMCs to multiple simultaneous stimuli may differ significantly from their response to any single individual stimulus. In this study, we evaluated the chemotactic response of human vascular SMCs to various combinations of growth factors and ECM proteins. METHODS: Human saphenous vein SMCs were used for all experiments. Using a 4-hour modified Boyden-chamber assay, we evaluated the effect on SMC chemotaxis of combinations of one of three growth factors (platelet-derived growth factor [PDGF]-AB, basic fibroblast growth factor [bFGF], or epidermal growth factor [EGF]), and one of four ECM proteins (fibronectin, laminin, or collagen type I or IV). A standard fluorimetric assay was used to assess changes in intracellular calcium ([Ca2+]i) in response to the various combinations of growth factors and ECM proteins. RESULTS: A simple additive effect was seen between ECM proteins and bFGF or EGF. However, when SMCs were simultaneously exposed to PDGF and ECM proteins, we observed a synergistic increase in chemotaxis. This synergy was evident for all concentrations of collagen type I and IV but only with higher concentrations of fibronectin and laminin. We evaluated whether intracellular calcium may be the signaling pathway through which this synergistic effect is mediated. Although ECM proteins alone did not stimulate a rise in [Ca2+]i, ECM proteins enhanced the early peak in [Ca2+]i induced by PDGF. CONCLUSION: These data show that PDGF acts synergistically with the ECM proteins to promote SMC migration; this effect appears to be specific for PDGF and was not observed with other growth factors. The mechanism responsible for this phenomenon may be a synergistic increase in [Ca2+]i in SMCs simultaneously exposed to both proteins.

Calcium

Role of protein kinase C in attachment, spreading, and migration of human endothelial cells.

Attachment, spreading, and migration of vascular endothelial cells (EC) are necessary for angiogenesis, reendothelialization of an injured artery, or seeding of a prosthetic graft. However, little is known about the signaling pathways that mediate these effects. Protein kinase C (PKC) is a ubiquitous intracellular messenger which we have previously shown to be necessary for EC proliferation (Kent et al., 1995, Circ. Res. 77, 231-238). In this study, we investigate whether activation of PKC is necessary for EC attachment, spreading, and migration. Using human umbilical vein EC, we found that direct activation of PKC with the phorbol ester phorbol 12-myristate-13-acetate enhanced all three processes. Inhibition of PKC by the selective agent, chelerythrine, markedly diminished the ability of EC to attach, spread, and migrate. Depletion of intracellular PKC by downregulation (prolonged exposure of EC to phorbol ester) reduced EC attachment and migration; however, downregulation had no effect on endothelial spreading. PKC is a family of isotypes, each of which may control specific cellular functions. By Western blotting, we identified PKC alpha, beta, delta, epsilon, eta, theta, and zeta isotypes in human EC. Downregulation led to a significant reduction in the quantity of PKC alpha and epsilon. These data demonstrate that activation of PKC is both necessary and sufficient for attachment, spreading, and migration of human EC. An isotype of PKC that is susceptible to downregulation (either alpha and/or epsilon) is at least partially responsible for attachment and migration. Pharmacological activation of PKC may be used as a method to enhance reendothelialization.

Alkaloids

Differential effects of platelet-derived growth factor isotypes on human smooth muscle cell proliferation and migration are mediated by distinct signaling pathways.

BACKGROUND: Platelet-derived growth factor (PDGF) is a potent mitogen and chemoattractant for vascular smooth muscle cells (SMCs). Three isotypes of PDGF (BB, AB, and AA) have been identified; each of these isotypes may have differing effects on the behaviour of vascular SMCs. In this study we evaluated the influence of PDGF isotypes on proliferation and migration of human venous SMCs and explored the signaling pathways through which these effects are mediated. METHODS: Proliferation was measured by a 72-hour assay of cell number, and migration was evaluated by a 4-hour microchemotaxis assay. The effects of PDGF isotypes on the activities of the signaling proteins mitogen-activated protein kinase (MAP-K), p 125 focal adhesion kinase (p125FAK), and tensin were measured by immunoprecipitation of these proteins and subsequent phosphorylation on myelin basic protein (in MAP-K) and Western blotting with antiphosphotyrosine (in tensin and p125FAK). RESULTS: All three isotypes stimulated SMC proliferation (PDGF-BB > AB > AA). PDGF-BB and -AB, but not -AA, stimulated chemotaxis. All three isotypes activated MAP-K with an intensity that corresponded to their proliferative effects. PDGF-BB and -AB tyrosine phosphorylated tensin and p125FAK, whereas PDGF-AA had no effect on either of these proteins. CONCLUSIONS: For human vascular SMCs the physiologic effects and the signaling pathways that mediate these effects are specific for each of the three PDGF isotypes. These data also suggest an association between MAP-K and SMC proliferation and between the proteins, p125FAK and tensin, and migration.

Calcium-Calmodulin-Dependent Protein Kinases

Extracellular matrix proteins are potent agonists of human smooth muscle cell migration.

PURPOSE: Extracellular matrix proteins can stimulate smooth muscle cell (SMC) migration by three distinct mechanisms: chemokinesis (nondirected migration in the presence of soluble protein), chemotaxis (directed migration toward soluble protein), and haptotaxis (directed migration toward insoluble, substrate-bound protein). This study investigates the effects of four prevalent extracellular matrix proteins (collagen types I and IV, fibronectin, and laminin), and platelet-derived growth factor (PDGF) on haptotaxis, chemotaxis, and chemokinesis of human SMCs. The role of large guanosine triphosphate-binding proteins (G-proteins) in the signaling mediating these effects is also evaluated. METHODS: Human saphenous vein SMCs were used in all migration studies. Chemokinesis, chemotaxis, and haptotaxis to each of the matrix proteins were measured and compared with PDGF through the use of a 48-well microchemotaxis chamber. The role of G-proteins in matrix-induced SMC migration was studied with the modulators of G-protein function, cholera and pertussis toxins. RESULTS: For all matrix proteins the relative strength of the various stimuli for migration was haptotaxis > chemotaxis > chemokinesis (p < 0.05). For all three stimuli collagen I and IV produced the most significant migration followed by fibronectin > PDGF-AB > laminin (p < 0.05). Pertussis toxin completely inhibited chemotaxis and partially inhibited haptotaxis by laminin but did not affect migration by other matrix proteins, whereas cholera toxin abolished migration in response to all four matrix proteins. CONCLUSION: Matrix proteins, with the exception of laminin, provide a more significant stimulus for SMC locomotion than does the prototypical agonist, PDGF-AB. Of the three mechanisms by which migration can be stimulated, haptotaxis elicits the most profound effect. The importance of G-proteins as second messengers for migration varies with each matrix protein and with the mechanism of stimulation.

Cell Movement

Cutaneous zygomycosis caused by Saksenaea vasiformis in a diabetic patient.

A 49-year-old woman with diabetes mellitus rapidly developed necrotizing cellulitis with fat necrosis and vasculitis after minor trauma to the right arm. Zygomycosis was diagnosed histologically. The lesion responded to aggressive debridement, amphotericin B, and normalization of blood glucose. Cultures yielded structures characteristic of Saksenaea vasiformis only after transfer to saline agar.

Dermatomycoses

Healing of full-thickness cartilage compared with full-thickness cartilage and subchondral bone defects in the equine third carpal bone.

The effect of lesion depth on the quality of third carpal bone cartilage repair was examined. A 1-cm diameter articular defect penetrating the calcified cartilage in one limb and the subchondral bone plate in the opposite limb was created in the radial facet of the third carpal bones. Clinical and xeroradiographic examinations were performed every 4 weeks until 4 months (3 horses) and 6 months (3 horses) after surgery. The synovial membrane, non-opposing articular surfaces and articular defects were examined grossly, histologically and histochemically. Grossly, deeper defects contained thicker, whiter tissue, but both joints contained generalised degenerative changes. Defects extending through calcified cartilage were filled deeply by fibrocartilage and superficially by fibrous connective tissue. Defects extending through subchondral bone were consistently filled with hyaline-like cartilage in the depths of the lesion, fibrocartilage in the intermediate layer and fibrous connective tissue superficially. The results indicate that subchondral bone is the source of hyaline-like cartilage repair tissue and suggest that quality of healing of cartilage defects may be improved by penetrating the subchondral bone plate. It also appears that the synovitis associated with the procedure must be controlled before the procedure can be advocated for treatment of clinical cases.

Animals

Comparison of two grafting methods in 4.0-mm drill defects in the third metacarpal bone of horses.

In 6 horses, bilateral metacarpal vertical series of three 4.0-mm unicortical drill holes were made. At random, one of each series of 3 holes was filled using a sternal 4.0-mm cancellous bone cylinder or a slurry of cancellous bone injected into the hole or left as an empty control. All horses had lateral metacarpal xeroradiographs at monthly intervals. Three horses (6 metacarpi) were examined post mortem after 4 months and 3 others after 6 months. Immediate through 4-month post-operative xeroradiographs demonstrated increased density in the holes with cancellous cylinders and no difference could be seen between the untreated controls and holes injected with slurry. From 5 months, no radiographic difference could be seen between the treatment groups. No consistent histological difference between treatment groups could be detected. In conclusion, no justification for clinical grafting of 4.0-mm unicortical dorsal metacarpal drill holes could be found.

Animals