Further refinements in the technique we currently use to isolate human islets are proposed. The procedure will utilize standard enzymatic digestion combined with chemical and mechanical disruption of the exocrine pancreas to liberate islets from the dense fibrous stoma of the pancreas. We will generate additional monoclonal antibodies against human pancreatic acinar and ductal cells. These reagents will be used to lyse cells that generally contaminate isolated human islets, in order to obtain highly purified islet preparations that can be transplanted into the liver of patients with IDDM. Clinical transplantation trials, already initiated, will be expanded. In dogs we will expand our current effort to impair or kill the immunostimulatory cells within islets using anti-Ia monoclonal antibodies and newly generated anti-dendritic cell monoclonal antibodies. The immunomodulatory effects of these reagents as well as ultra-violet light irradiation will be tested in vitro in lymphocyte-islet lymphoproliferative assays and in vivo following islet allografting in pancreatectomized and spontaneously diabetic dogs. A putative autoimmune canine model of diabetes will be developed for these allotransplantation studies. We will continue to explore the mechanism of tolerance to islet alloantigens induced by cyclosporine in dogs. In vitro, we will study secretory kinetics and structural integrity of canine, porcine, and human islets that have been maintained in microcapsules in tissue culture for long periods of time. In vivo we will evaluate the metabolic responses of microencapsulated islet allografts and porcine xenografts in pancreatectomized and spontaneously diabetic dogs. We will also examine whether down-regulation of putative glucoreceptors, the mass of islet transplanted, or the site of transplantation influence long term functional survival of islet allografts in dogs. Finally, we will also define the relative importance of islet Ia-bearing monocytes/macrophages, dendritic cells, and Ia-bearing capillary endothelium on the immunostimulatory effects of human islets. Thus, the current proposal will address the potential problems that may limit the application of islet transplantation in humans namely (a) improvement in islet isolation and preservation, (b) prevention of rejection by immunomodulation of the graft and/or recipient, or by isolation of allografted islets from the host immune system, and (c) the possibility of recurrence of the autoimmune process in transplanted islets.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK025802-09
Application #
3227596
Study Section
Surgery, Anesthesiology and Trauma Study Section (SAT)
Project Start
1980-05-01
Project End
1991-04-30
Budget Start
1988-05-01
Budget End
1989-04-30
Support Year
9
Fiscal Year
1988
Total Cost
Indirect Cost
Name
University of Miami School of Medicine
Department
Type
Schools of Medicine
DUNS #
City
Miami
State
FL
Country
United States
Zip Code
33101
Fotino, Nicoletta; Fotino, Carmen; Pileggi, Antonello (2015) Re-engineering islet cell transplantation. Pharmacol Res 98:76-85
Miki, Atsushi; Ricordi, Camillo; Yamamoto, Toshiyuki et al. (2014) Improved human islet preparations using glucocorticoid and exendin-4. Pancreas 43:1317-22
Ricordi, Camillo (2014) The path for tolerance permissive immunomodulation in islet transplantation. Transplantation 98:1260-1
Pileggi, Antonello; Ricordi, Camillo (2013) A new home for pancreatic islet transplants: the bone marrow. Diabetes 62:3333-5
Fotino, Carmen; Molano, R Damaris; Ricordi, Camillo et al. (2013) Transdisciplinary approach to restore pancreatic islet function. Immunol Res 57:210-21
Pileggi, Antonello; Klein, Dagmar; Fotino, Carmen et al. (2013) MicroRNAs in islet immunobiology and transplantation. Immunol Res 57:185-96
Pileggi, Antonello; Xu, Xiumin; Tan, Jianming et al. (2013) Mesenchymal stromal (stem) cells to improve solid organ transplant outcome: lessons from the initial clinical trials. Curr Opin Organ Transplant 18:672-81
Khan, Aisha; Jindal, Rahul M; Shriver, Craig et al. (2012) Remote processing of pancreas can restore normal glucose homeostasis in autologous islet transplantation after traumatic whipple pancreatectomy: technical considerations. Cell Transplant 21:1261-7
Pileggi, Antonello (2012) Mesenchymal stem cells for the treatment of diabetes. Diabetes 61:1355-6
Takahashi, Hidenori; Ruiz, Phillip; Ricordi, Camillo et al. (2012) Quantitative in situ analysis of FoxP3+ T regulatory cells on transplant tissue using laser scanning cytometry. Cell Transplant 21:113-25

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