Biomedical subjects
E Papavassiliou
Publications and source records attributed to E Papavassiliou.
Localised gastrocnemius myositis in Crohn's disease.
A19-year-old woman presented with pain and tenderness in both calves associated with pyrexia and neutrophil leukocytosis. Gastrocnemius muscle biopsy showed a non-specific lymphocytic myositis and she was found to have positive c-ANCA, in the absence of other evidence of systemic vasculitis. Subsequent investigation of her gastrointestinal tract revealed extensive Crohn's disease. The myositis responded promptly to treatment with prednisolone 0.5 mg/kg. A review of the literature showed that localised calf pain in the setting of Crohn's disease can be caused by non-specific myositis, granulomatous myositis or vasculitis. It is proposed that the "gastrocnemius myalgia syndrome" be included in the typical - albeit rare - extraintestinal manifestations that may herald the appearance of inflammatory bowel disease.
Chemoprevention of colorectal cancer in inflammatory bowel disease? A potential role for folate.
Patients with ulcerative colitis have an increased risk for developing colon cancer compared to the general population. The risk is related to the extension of the disease and its duration. This risk is the same for Crohn's colitis patients of equal extension and duration. By chemoprevention we mean the use of specific natural or synthetic chemical agents to reverse, suppress or prevent progression to invasive cancer. The chemopreventive agents for colon cancer are either of natural origin (vitamins, minerals, food constituents) or synthetic chemicals (difluoromethyl ornithine) and pharmaceutical agents (aspirin, oltipraz). Apart from folate, no other agent has so far been used in vivo for the prevention of colon cancer in long-standing inflammatory bowel disease. The use of folate was, however, not primarily intended to prevent cancer but to enhance folate absorption in ulcerative colitis. From retrospective studies, within the framework of cancer surveillance programmes, it became evident that folate supplementation may play a positive role as a chemopreventive agent against colorectal cancer in patients with long-standing, extensive ulcerative colitis. There is also evidence suggesting that folate supplementation may contribute to regulation of rectal cell proliferation in ulcerative colitis patients. There is a real need for multicentre, randomized, prospective clinical studies in order to evaluate the promising role of folate in preventing colorectal cancer in patients with long-standing inflammatory bowel disease.
Vascular endothelial growth factor (vascular permeability factor) expression in injured rat brain.
We investigated the expression of vascular endothelial growth factor (VEGF)/vascular permeability factor (VPF) in stab and freeze brain injury models in rats. Immunohistochemical staining with anti-VEGF antibodies demonstrated an increase in VEGF-positive cells in and around both lesions. Morphologically, the injury-induced VEGF-positive cells resembled astrocytes. Double immunofluorescent staining for the astrocytic marker glial fibrillary acidic protein (GFAP) and VEGF demonstrated directly that VEGF-positive cells which appeared in response to these injuries were astrocytes. VEGF expression in astrocytes was maximal on days 3 and 4 after injury in terms of both cell number and affected area. The increase in VEGF-positive cells was more widespread in the freeze lesion than in the stab wound, and occurred in both the lesioned and nonlesioned hemispheres. VEGF-positive cells were still present 3 weeks after both injuries, but their numbers were reduced and their distribution became limited to the immediate vicinity of the lesions. These observations indicate that astrocytes react to injury by increasing VEGF expression, suggesting that VEGF might participate in the central nervous system response to injury.
Post-transcriptional regulation of vascular endothelial growth factor mRNA by the product of the VHL tumor suppressor gene.
The VHL tumor suppressor gene is inactivated in patients with von Hippel-Lindau disease and in most sporadic clear cell renal carcinomas. Although VHL protein function remains unclear, VHL does interact with the elongin BC subunits in vivo and regulates RNA polymerase II elongation activity in vitro by inhibiting formation of the elongin ABC complex. Expression of wild-type VHL in renal carcinoma cells with inactivated endogenous VHL resulted in unaltered in vitro cell growth and decreased vascular endothelial growth factor (VEGF) mRNA expression and responsiveness to serum deprivation. VEGF is highly expressed in many tumors, including VHL-associated and sporadic renal carcinomas, and it stimulates neoangiogenesis in growing solid tumors. Despite 5-fold differences in VEGF mRNA levels, VHL overexpression did not affect VEGF transcription initiation or elongation as would have been suggested by VHL-elongin association. These results suggest that VHL regulates VEGF expression at a post-transcriptional level and that VHL inactivation in target cells causes a loss of VEGF suppression, leading to formation of a vascular stroma.
Mechanism of dexamethasone suppression of brain tumor-associated vascular permeability in rats. Involvement of the glucocorticoid receptor and vascular permeability factor.
Brain tumor-associated cerebral edema arises because tumor capillaries lack normal blood-brain barrier function; vascular permeability factor (VPF, also known as vascular endothelial growth factor, VEGF) is a likely mediator of this phenomenon. Clinically, dexamethasone reduces brain tumor-associated vascular permeability through poorly understood mechanisms. Our goals were to determine if suppression of permeability by dexamethasone might involve inhibition of VPF action or expression, and if dexamethasone effects in this setting are mediated by the glucocorticoid receptor (GR). In two rat models of permeability (peripheral vascular permeability induced by intradermal injection of 9L glioma cell-conditioned medium or purified VPF, and intracerebral vascular permeability induced by implanted 9L glioma), dexamethasone suppressed permeability in a dose-dependent manner. Since 80% of the permeability-inducing activity in 9L-conditioned medium was removed by anti-VPF antibodies, we examined dexamethasone effects of VPF expression in 9L cells. Dexamethasone inhibited FCS- and PDGF-dependent induction of VPF expression. At all levels (intradermal, intracranial, and cell culture), dexamethasone effects were reversed by the GR antagonist mifepristone (RU486). Dexamethasone may decrease brain tumor-associated vascular permeability by two GR-dependent mechanisms: reduction of the response of the vasculature to tumor-derived permeability factors (including VPF), and reduction of VPF expression by tumor cells.