High-density microwell arrays enable controlled pseudoislet engineering for diabetes cell therapy

Publikation: Beitrag in FachzeitschriftForschungsartikelBeigetragenBegutachtung

Beitragende

Abstract

Macroencapsulation systems for pancreatic islet delivery are an emerging strategy for cell replacement therapy in type 1 diabetes, aimed at eliminating systemic immunosuppression and enabling the use of alternative cell sources. A critical design challenge is to achieve high packing densities while maintaining sufficient oxygen and nutrient supply to ensure islet viability and function. This design-focused study presents a one-step method for the simultaneous and defined formation and spatial arrangement of uniformly sized pancreatic pseudoislets using high-density concave microwell arrays with potential for future integration into macroencapsulation devices. Microwells with diameters between 130 and 200 µm were arranged in a hexagonal pattern with inter-well spacings of 50 or 100 µm to maximize the packing density while maintaining separation between clusters. The effects of microwell depth, diameter, and inter-well spacing on pseudoislet size, morphology, viability, and glucose-stimulated insulin secretion were systematically evaluated using reaggregated rat islet cells as a standardized and well-characterized model system under normoxic and hypoxic conditions. The optimized microwell configuration enabled efficient pseudoislet formation with a tailorable, uniform size, high viability, and preserved insulin secretory function, even at high densities. This scalable microwell array technology addresses key limitations of current pseudoislet culture and transplantation methods, thus providing a base for improved macroencapsulation device design in diabetes cell therapy.

Details

OriginalspracheEnglisch
Aufsatznummer045023
FachzeitschriftBiomedical Materials (Bristol)
Jahrgang21
Ausgabenummer4
PublikationsstatusVeröffentlicht - Aug. 2026
Peer-Review-StatusJa

Externe IDs

PubMed 42425151
ORCID /0000-0003-0189-3448/work/223381846

Schlagworte

Schlagwörter

  • concave microwell, diabetes, high-density microwell array, islet clustering, macroencapsulation, microarrangement, pseudoislets