Literature DB >> 29051963

Applications of particulate oxygen-generating substances (POGS) in the bioartificial pancreas.

John P McQuilling1, Sivanandane Sittadjody, Samuel Pendergraft, Alan C Farney, Emmanuel C Opara.   

Abstract

Type-1 Diabetes (T1D) is a devastating autoimmune disorder which results in the destruction of beta cells within the pancreas. A promising treatment strategy for T1D is the replacement of the lost beta cell mass through implantation of immune-isolated microencapsulated islets referred to as the bioartificial pancreas. The goal of this approach is to restore blood glucose regulation and prevent the long-term comorbidities of T1D without the need for immunosuppressants. A major requirement in the quest to achieve this goal is to address the oxygen needs of islet cells. Islets are highly metabolically active and require a significant amount of oxygen for normal function. During the process of isolation, microencapsulation, and processing prior to transplantation, the islets' oxygen supply is disrupted, and a large amount of islet cells are therefore lost due to extended hypoxia, thus creating a major barrier to clinical success with this treatment. In this work, we have investigated the oxygen generating compounds, sodium percarbonate (SPO) and calcium peroxide (CPO) as potential supplemental oxygen sources for islets during isolation and encapsulation before and immediately after transplantation. First, SPO particles were used as an oxygen source for islets during isolation. Secondly, silicone films containing SPO were used to provide supplemental oxygen to islets for up to 4 days in culture. Finally, CPO was used as an oxygen source for encapsulated cells by co-encapsulating CPO particles with islets in permselective alginate microspheres. These studies provide an important proof of concept for the utilization of these oxygen generating materials to prevent beta cell death caused by hypoxia.

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Year:  2017        PMID: 29051963      PMCID: PMC5698103          DOI: 10.1039/c7bm00790f

Source DB:  PubMed          Journal:  Biomater Sci        ISSN: 2047-4830            Impact factor:   6.843


  42 in total

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Journal:  Cell Transplant       Date:  2012       Impact factor: 4.064

2.  Long-term function of islets encapsulated in a redesigned alginate microcapsule construct in omentum pouches of immune-competent diabetic rats.

Authors:  Rajesh Pareta; John P McQuilling; Sivanandane Sittadjody; Randy Jenkins; Stephen Bowden; Giuseppe Orlando; Alan C Farney; Eric M Brey; Emmanuel C Opara
Journal:  Pancreas       Date:  2014-05       Impact factor: 3.327

3.  Control of oxygen release from peroxides using polymers.

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4.  Improved islet isolation from rat pancreas using 35% bovine serum albumin in combination with Dextran gradient separation.

Authors:  J Field; A Farney; D E Sutherland
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5.  Prevention of vascular and neural dysfunction in diabetic rats by C-peptide.

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6.  Coated charcoal immunoassay of insulin.

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7.  New alginate microcapsule system for angiogenic protein delivery and immunoisolation of islets for transplantation in the rat omentum pouch.

Authors:  J P McQuilling; J Arenas-Herrera; C Childers; R A Pareta; O Khanna; B Jiang; E M Brey; A C Farney; E C Opara
Journal:  Transplant Proc       Date:  2011-11       Impact factor: 1.066

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9.  Modulation of apoptosis pathways by oxidative stress and autophagy in β cells.

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Review 4.  Type 1 diabetes and engineering enhanced islet transplantation.

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Review 6.  Islet cell encapsulation - Application in diabetes treatment.

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7.  Symbiotic Photosynthetic Oxygenation within 3D-Bioprinted Vascularized Tissues.

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Journal:  Matter       Date:  2020-11-18

Review 8.  Chemoreactive Nanotherapeutics by Metal Peroxide Based Nanomedicine.

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9.  Optimization of an O2-balanced bioartificial pancreas for type 1 diabetes using statistical design of experiment.

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10.  Air-loaded Gas Vesicle Nanoparticles Promote Cell Growth in Three-dimensional Bioprinted Tissue Constructs.

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  10 in total

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