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Biomedical subjects

R Alejandro

Publications and source records attributed to R Alejandro.

At least 37 records · Page 2Linked to original sources

Human islet allografts in patients with type 2 diabetes undergoing liver transplantation.

BACKGROUND: Most patients with cirrhosis have insulin resistance and impaired glucose tolerance, and 20% eventually develop diabetes. Although diabetes in this setting may be reversible after orthotopic liver transplantation (OLTx), immunosuppressive agents administered after transplantation could exacerbate this disease. We report the results of the first pilot trial of islet cell transplantation (ICTx) in patients with diabetes undergoing OLTx. METHODS: Five patients with diabetes and liver cirrhosis underwent OLTx and ICTx. Donor bone marrow cells were also infused to enhance the acceptance of the graft. We identified seven patients who received only OLTx and donor bone marrow cells as historical controls. RESULTS: Preliminary results suggest that ICTx in conjunction with OLTx may improve glucose metabolism (insulin requirement, hemoglobin A1c) in patients with liver cirrhosis. However, there was virtually no change in pre- and posttransplant basal C-peptide levels in the recipients of OLTx + ICTx. CONCLUSIONS: We are planning to further evaluate the effect of OLTx with or without ICTx in a randomized prospective trial, using euglycemic insulin clamp studies.

Adolescent↗

Effects of ketamine sedation on glucose clearance, insulin secretion and counterregulatory hormone production in baboons (Papio hamadryas).

Since the effects of ketamine sedation seem to differ between subspecies of baboons, we assessed the endocrine response to an intravenous glucose tolerance test (IVGTT) in 12 hamadryas baboons. The first phase insulin secretion, basal insulin, and glucose levels, as well as the glucose clearance, were significantly lower in sedated baboons as compared to fully awake animals. Glucagon and cortisol were significantly higher, while growth hormone was lower during ketamine sedation. Papio hamadryas appears to be a promising pre-clinical model for the study of endocrine replacement therapy in insulin-dependent diabetes. However, the data obtained must be interpreted with the knowledge that the anesthetic employed to allow for testing of the animals does have an effect on the parameters described in this report.

Anesthetics, Dissociative↗

Long-term function (6 years) of islet allografts in type 1 diabetes.

Eight type 1 diabetic patients, ages 29-41 years, with mean diabetes duration of 23 years (range 18-29 years) received islet transplants from 1 to 5 donors. Seven patients had stable kidney allografts 1-11 years before the islet transplant, and one patient had a simultaneous islet-kidney allograft. Patients' blood glucose control was poor as reflected by the mean +/- SD HbA1c of 9.1 +/- 1.7% before transplant. Of the first three patients, two (1 and 3) achieved insulin independence for 36 and 38 days, respectively. Two recipients rejected their islet grafts within 1 month (2 and 8) and therefore were excluded from analysis. The HbA1c and insulin requirement of the six remaining patients who had persistent islet function for more than 60 days was significantly reduced from 9.3 +/- 1.9 to 6.4 +/- 1.0% (P = 0.002) and from 0.75 +/- 0.15 to 0.35 +/- 0.12 U x kg(-1) x day(-1) (P < 0.001), respectively. The two patients with the longest graft survival (4 and 6) achieved a normalization or near-normalization of their HbA1c levels during 6 years in the absence of severe episodes of hypoglycemia. As demonstrated by a decline in C-peptide response during Sustacal challenge tests over a 6-year period, there was a diminution of islet allograft function over time, despite persistence of normal or near normal HbA1c. We concluded that transplantation of allogeneic islets with an islet mass comparable with whole or segmental pancreas transplants in type 1 diabetic patients can result in long-term islet allograft function; further, we concluded that, in conjunction with small dosages of exogenous insulin, a functioning islet allograft can result in near-normalization of blood glucose levels and significant improvement in HbA1c. The occurrence of severe hypoglycemic episodes observed for patients in the Diabetes Control and Complications Trial was not observed in recipients with functioning islet transplants, despite the continuous need for exogenous insulin therapy to sustain normal HbA1c over the 6-year follow-up. The significant improvement in metabolic control observed for the patients described in this study, and the potential to significantly decrease or halt the progression of diabetic complications, support the continued application of islet allotransplantation as a treatment modality for type 1 diabetic patients.

Adult↗

Improved human islet isolation using a new enzyme blend, liberase.

Enzymatic digestion of donor pancreases is a vital step in human and large mammalian islet isolation. The variable enzymatic activities of different batches of commercially available collagenase is a major obstacle in achieving reproducibility in islet isolation procedures. In the present work, the effectiveness of Liberase, a standardized mixture of highly purified enzymes recently developed for the separation of human islets, was compared with that of a traditional collagenase preparation (type P). The results of 50 islet isolations using Liberase enzyme were compared with those of 36 isolations with collagenase, type P. No significant differences in donor age, cold ischemia time, digestion time, or weight of the pancreases were observed between the two groups. Islet yield was significantly higher in the group where the Liberase enzyme was used. All parameters examined (islet number, islet number per gram of tissue, islet equivalent number, and islet equivalent number per gram of tissue) were significantly improved when Liberase enzyme was used. Different lots of Liberase enzyme were tested, and no difference was observed. Islets isolated with Liberase enzyme were also of larger size and were much less fragmented, suggesting a gentler enzymatic action and better preservation of anatomical integrity. Islets isolated with Liberase enzyme, assessed both in vitro and in vivo, revealed a functional profile similar to that of islets separated with collagenase. Liberase enzyme appears, therefore, to represent a new powerful tool for improving the quality of human islet isolation.

Adult↗