Enhanced expression of CD44 isoforms in nonobese diabetic (NOD) mice.
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Biomedical subjects
Publications and source records attributed to R Alejandro.
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Molecular cloning of the dog homologue of the human CD44 was achieved using RT/PCR. A 1055 bp cDNA has a deduced amino acid sequence of 351 residues, 338 of them correspond to the mature protein. Nine conserved cysteine residues were found. The extracellular region contains a single link superfamily domain on the N-terminal part and potential post-translational modification sites as: N- and O-linked glycosylation sites and chondroitin sulfate attachment sites. Three mRNAs of 2.2, 3.8 and 4.4 kb were identified on Northern blot analysis and Western blot hybridization revealed a 85-90 kDa protein expressed in lymph node tissue.
The gene of the CD44 cell surface glycoprotein consists of 20 exons. Ten exons known as variant exons are inserted by alternative RNA splicing between exon 5 and 16, thus generating diversity in the extracellular portion of the protein. We have cloned the dog cDNA homologue of the human variant exon region of CD44 and characterized its transcript expression in normal lymphatic tissues. Using PCR with primers complementary to regions contiguous to the insertion point and a variant exon, all ten variant exons of dog CD44 were detected in a high number of different isoforms. Transcripts containing the ten variable exons directly spliced to both sides of the insertion point were detected. We found an extensive usage of all variant exons from v1 to v10 in a high number of different combinations, some presenting a tissue-specific expression pattern. A similar complex profile of transcript expression was found in peripheral blood lymphocytes from rat and human.
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After PCR amplification two overlapping cDNA clones encoding the dog homologue of the human CD4 glycoprotein were identified. This internal fragment of the mature protein including the complete extracellular domains, consists of 1297 bp with a deduced amino acid sequence of 432 residues. The dog CD4 molecule differs from the corresponding protein of other species including human in the second domain. We found nine extra residues in the beginning of that domain, a cysteine at position 138, usually involved in a disulfide bridge, is substituted by tryptophan, and three new glycosylation sites are present.
The monokines interleukin-1 alpha and -beta have been implicated as effector molecules in the immune-mediated pancreatic beta-cell destruction leading to insulin-dependent diabetes mellitus. Here we investigated the effects of interleukin-1 receptor antagonism on insulin and glucagon release of rat, mouse and human islets exposed to recombinant human interleukin-1 beta, and on interleukin-1 beta induced changes in blood glucose, serum insulin and serum glucagon levels in Wistar Kyoto rats. The interleukin-1 receptor antagonist reduced the co-mitogenic effect of interleukin-1 beta on mouse and rat thymocytes with a 50% inhibitory concentration of 10- and 100-fold molar excess, respectively. Complete inhibition was obtained with a 100-1,000-fold molar excess. However, at a 100-fold molar excess the interleukin-1 receptor antagonist did not antagonise the potentiating effect of interleukin-1 beta on rat islet insulin accumulation during 3 and 6 h of exposure or of interleukin-1 beta-induced inhibition of insulin release after 24 h. In contrast, interleukin-1 beta-stimulated islet glucagon release was completely antagonised by a 100-fold molar excess of interleukin-1 receptor antagonist. A 10,000-fold molar excess of interleukin-1 receptor antagonist was needed to antagonise interleukin-1 beta stimulatory and inhibitory effects on rat beta-cell function in vitro. A 100-fold excess of interleukin-1 receptor antagonist could not counteract interleukin-1 beta effects on mouse and human beta cells, excluding species difference in the efficacy of the human interleukin-1 receptor antagonist.(ABSTRACT TRUNCATED AT 250 WORDS)
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The development of strategies that will allow permanent survival of islet allografts without continuous host immunosuppression continues to be the most important goal in the field of pancreatic islet cell transplantation. In our study, we demonstrated that intrathymic inoculation of allogeneic spleen cell membrane antigens with a single dose of anti-lymphocyte serum induces an unresponsive state that permits survival of a subsequent pancreatic islet allograft to an extrathymic site (renal subcapsular space). This effect is donor specific and cannot be reproduced by the intravenous injection of spleen cell membrane antigens. Our results offer a potential approach for establishing donor-specific allograft acceptance in adult recipients.
Prednisone was shown to induce hyperglycemia in dogs submitted to total pancreatectomy and pancreatic islet autotransplantation. The hyperglycemia caused by a 10-day course of prednisone, 1 mg/kg/day, starting on the day of operation was reversible within 1 week after steroid discontinuance. Three weeks after prednisone was stopped, there was no detectable adverse effect on glucose homeostasis as judged by fasting blood sugar levels and intravenous glucose tolerance test results. Four months after transplantation, glucose disappearance was delayed in animals previously treated with the prednisone compared with those previously treated with prednisone plus insulin or control animals. This was accompanied by lower insulin values on intravenous glucose tolerance testing and suggests a long-term subtle effect on islet function. The mechanism of the steroid effect is not known. However, this model could be used to test the diabetogenicity of other immunosuppressive agents including cyclosporine, FK 506, and azathioprine.
In this report, we describe the effect of FK506 on glucose-mediated insulin release in normal dogs. Dogs were placed into one of two groups, group 1 dogs received FK506 (1 mg/kg/d orally) for 2 weeks, and group 2 dogs received FK506 at the same dose, but for 4 weeks. Following the treatment period, both groups of dogs were allowed a recovery period during which time no FK506 was administered. Intravenous glucose tolerance tests (IVGTT) were performed (0.5 mg/kg IV) before FK506 treatment, after 2 or 4 weeks of treatment, and following the recovery periods. Complete blood cell counts (CBC) and serum chemistries were also obtained at these times. Following FK506 treatment for either 2 or 4 weeks, the dogs experienced a delay in glucose disappearance in response to IV glucose injection. Insulin secretion during IVGTT was unchanged in dogs treated for only 2 weeks, but was significantly decreased in dogs treated for 4 weeks. Following the recovery period, glucose disappearance during IVGTT returned to normal in dogs that were treated for 2 weeks, and was more rapid than normal in dogs that had been treated for 4 weeks. Insulin secretion after the recovery period remained unchanged in group 1 dogs, but continued to be significantly reduced in group 2 dogs that had received FK506 for 4 weeks. No significant change was detected in the CBCs or serum chemistries.
This article describes the localization of intact insulin-containing intrahepatic islets after combined liver-islet allotransplantation. The patient was a 36-year-old woman who underwent upper abdominal exenteration for neuroendocrine carcinoma; 289,000 islets were transplanted via portal vein infusion immediately after complete revascularization of the liver. Immunosuppression was with low-dose FK-506. OKT3 and steroids were used to treat one rejection episode 2 weeks after transplantation, but the patient subsequently developed multiple infections and died 109 days after transplantation. At autopsy, the transplanted liver did not show any sign of rejection and well-preserved islets were present in portal triads sampled from the anterior inferior edge of the right lobe. Immunohistochemical labeling confirmed the presence of insulin-containing cells. This finding indicated that human islets can survive after intrahepatic allotransplantation, despite positive cross-match with no HLA antigen match, suggesting that upper abdominal exenteration and liver transplantation may constitute a protective factor for the survival of allogeneic human islets.
This report provides our initial experience in islet isolation and intrahepatic allotransplantation in 21 patients. In group 1, 10 patients underwent combined liver-islet allotransplantation following upper-abdominal exenteration for cancer. In group 2, 4 patients received a combined liver-islet allograft for cirrhosis and diabetes. One patients had plasma C-peptide greater than 3 pM and was therefore excluded from analysis. In group 3, 7 patients received 8 combined cadaveric kidney-islet grafts (one retransplant) for end-stage renal disease secondary to type 1 diabetes mellitus. The islets were separated by a modification of the automated method for human islet isolation and the preparation were infused into the portal vein. Immunosuppression was with FK506 (group 1) plus steroids (groups 2 and 3). Six patients in group 1 did not require insulin treatment for 5 to greater than 16 months. In groups 2 and 3 none of the patients became insulin-independent, although decreased insulin requirement and stabilization of diabetes were observed. Our results indicate that rejection is still a major factor limiting the clinical application of islet transplantation in patients with type 1 diabetes mellitus, although other factors such as steroid treatment may contribute to deteriorate islet engraftment and/or function.
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