| Literature DB >> 29883808 |
Shiva Pathak1, Shobha Regmi1, Tiep Tien Nguyen1, Biki Gupta1, Milan Gautam1, Chul Soon Yong1, Jong Oh Kim1, Youlim Son2, Jae-Ryong Kim2, Min Hui Park3, Young Kyung Bae3, So Young Park4, Daewon Jeong5, Simmyung Yook6, Jee-Heon Jeong7.
Abstract
Attenuation of senescence progression may be attractive way to preserve the functionality of pancreatic islets (PI) after transplantation. In this study, we developed a model for in vitro induction of premature senescence in rat PI and showed the effectiveness of quercetin (QU) to prevent the senescence. To provide targeted-delivery of QU to the PI after transplantation, we prepared the hybrid clusters (HC) of islet single cells (ISC) and QU-loaded polymeric microspheres (QU; ∼7.55 ng HC-1). Long-term culture of the HC revealed reduced levels of reactive oxygen species and decreased expression of senescence-associated beta galactosidase, Rb, p53, p16, and p21 compared to that of the control islets. Transplantation of HC into subcutaneous space of the immune-deficient mice produced better glycemic control compared to the control islets or the ICC-transplanted mice. SA-β-Gal staining of the in vivo transplanted HC sample showed lower intensity compared to that of the control islets or the islet cell clusters. Thus, in situ delivery of therapeutic agent may be a promising approach to improve therapeutic outcomes in cell therapy. STATEMENT OF SIGNIFICANCE: In this study, we aimed to improve outcomes in islet transplantation using in situ delivery of quercetin to pancreatic islets, using polymeric microspheres. We prepared prolonged release-type microspheres and constructed hybrid clusters of pancreatic islets and the microspheres using hanging drop method. The presence of quercetin in the cellular microenvironment attenuated the progression of senescence in the pancreatic islets in a long-term in vitro culture. Moreover, transplantation of the hybrid clusters in the diabetic mice produced better glycemic control compared to that of the control islets. In addition, quercetin delayed the progression of senescence in the pancreatic islets after in vivo transplantation. Thus, local delivery of antioxidants like quercetin may be an attractive way to improve outcomes in cell therapy.Entities:
Keywords: Hybrid clusters; Pancreatic islets; Quercetin; Senescence; Transplantation
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Year: 2018 PMID: 29883808 DOI: 10.1016/j.actbio.2018.06.006
Source DB: PubMed Journal: Acta Biomater ISSN: 1742-7061 Impact factor: 8.947