Continuous Quadrupole Magnetic Separation of Islets during Digestion Improves Purified Porcine Islet Viability

Author:

Weegman Bradley P.12ORCID,Kumar Sajja Venkata Sunil3,Suszynski Thomas M.2ORCID,Rizzari Michael D.2,Scott III William E.24,Kitzmann Jennifer P.4,Mueller Kate R.24ORCID,Hanley Thomas R.3ORCID,Kennedy David J.5,Todd Paul W.6,Balamurugan Appakalai N.7,Hering Bernhard J.2,Papas Klearchos K.24ORCID

Affiliation:

1. CMRR, Department of Radiology, University of Minnesota, Minneapolis, MN, USA

2. Schulze Diabetes Institute, Department of Surgery, University of Minnesota, Minneapolis, MN, USA

3. Department of Chemical Engineering, Auburn University, Auburn, AL, USA

4. Department of Surgery, University of Arizona, Tucson, AZ, USA

5. MobileMedTek Inc., Louisville, KY 40206, USA

6. Techshot, Inc., Greenville, IN, USA

7. Clinical Islet Cell Laboratory, Cardiovascular Innovation Institute, Department of Surgery, University of Louisville, Louisville, KY 40202, USA

Abstract

Islet transplantation (ITx) is an emerging and promising therapy for patients with uncontrolled type 1 diabetes. The islet isolation and purification processes require exposure to extended cold ischemia, warm-enzymatic digestion, mechanical agitation, and use of damaging chemicals for density gradient separation (DG), all of which reduce viable islet yield. In this paper, we describe initial proof-of-concept studies exploring quadrupole magnetic separation (QMS) of islets as an alternative to DG to reduce exposure to these harsh conditions. Three porcine pancreata were split into two parts, the splenic lobe (SPL) and the combined connecting/duodenal lobes (CDL), for paired digestions and purifications. Islets in the SPL were preferentially labeled using magnetic microparticles (MMPs) that lodge within the islet microvasculature when infused into the pancreas and were continuously separated from the exocrine tissue by QMS during the collection phase of the digestion process. Unlabeled islets from the CDL were purified by conventional DG. Islets purified by QMS exhibited significantly improved viability (measured by oxygen consumption rate per DNA, p<0.03) and better morphology relative to control islets. Islet purification by QMS can reduce the detrimental effects of prolonged exposure to toxic enzymes and density gradient solutions and substantially improve islet viability after isolation.

Funder

Schulze Foundation and the Schulze Diabetes Institute

Publisher

Hindawi Limited

Subject

Endocrinology,Endocrinology, Diabetes and Metabolism

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