DOAJ Open Access 2025

Differential stress responses of immunoisolated human islets embedded in pancreatic extracellular matrix under static and free-fall dynamic conditions

Isaura Borges-Silva Marluce da Cunha Mantovani Minh Danh Anh Luu Alan Gorter Theo Borghuis +4 lainnya

Abstrak

Pancreatic islet transplantation offers great promise for the treatment of type 1 diabetes, yet the functional decline of islets after isolation remains a major obstacle. Increasing evidence highlights the endoplasmic reticulum (ER) as a critical regulator of islet cell survival under stress. We explored how ex vivo culture conditions affect encapsulated islet resilience under ER-stress. Two conditions were assessed: (i) incorporation of decellularized porcine pancreatic extracellular matrix (ECM) into alginate microcapsules, and (ii) free-fall dynamic pre-conditioning culture. Human islets were encapsulated in alginate with or without ECM, cultured under static or dynamic conditions, and exposed to acute ER-stress followed or not by a recovery period. Dynamic culture preserved viability and enhanced glucose responsiveness. ECM-containing capsules showed reduced inflammatory marker expression, while encapsulation in alginate-only capsules led to more pronounced changes associated with ECM remodeling. Under ER-stress, the dynamic culture, especially combined with ECM, maintained cell function and reduced cell death. Gene profiles indicated improved stress adaptation and ECM remodeling. These results highlight ECM enrichment and dynamic culture as good strategies to maintain islet survival and functionality.

Topik & Kata Kunci

Penulis (9)

I

Isaura Borges-Silva

M

Marluce da Cunha Mantovani

M

Minh Danh Anh Luu

A

Alan Gorter

T

Theo Borghuis

N

Naschla Gasaly

M

Mari Cleide Sogayar

P

Paul deVos

M

Marina Trombetta-Lima

Format Sitasi

Borges-Silva, I., Mantovani, M.d.C., Luu, M.D.A., Gorter, A., Borghuis, T., Gasaly, N. et al. (2025). Differential stress responses of immunoisolated human islets embedded in pancreatic extracellular matrix under static and free-fall dynamic conditions. https://doi.org/10.1177/20417314251383295

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.1177/20417314251383295
Akses
Open Access ✓