» Articles » PMID: 32081627

Functional Analysis of Islet Cells in Vitro, in Situ, and in Vivo

Overview
Date 2020 Feb 22
PMID 32081627
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

The islet of Langerhans contains at least five types of endocrine cells producing distinct hormones. In response to nutrient or neuronal stimulation, islet endocrine cells release biochemicals including peptide hormones to regulate metabolism and to control glucose homeostasis. It is now recognized that malfunction of islet cells, notably insufficient insulin release of β-cells and hypersecretion of glucagon from α-cells, represents a causal event leading to hyperglycemia and frank diabetes, a disease that is increasing at an alarming rate to reach an epidemic level worldwide. Understanding the mechanisms regulating stimulus-secretion coupling and investigating how islet β-cells maintain a robust secretory activity are important topics in islet biology and diabetes research. To facilitate such studies, a number of biological systems and assay platforms have been developed for the functional analysis of islet cells. These technologies have enabled detailed analyses of individual islets at the cellular level, either in vitro, in situ, or in vivo.

Citing Articles

SliceChip: a benchtop fluidic platform for organotypic culture and serial assessment of human and rodent pancreatic slices.

Alver C, Alvarez-Cubela S, Altilio I, Hutchison E, Warrner E, Viso M Lab Chip. 2024; 24(6):1557-1572.

PMID: 38205530 PMC: 10939771. DOI: 10.1039/d3lc00850a.


Observing exocrine pancreas metabolism using a novel pancreas perfusion technique in combination with hyperpolarized [1- C]pyruvate.

Rushin A, McLeod M, Ragavan M, Merritt M Magn Reson Chem. 2023; 61(12):748-758.

PMID: 37482899 PMC: 10800648. DOI: 10.1002/mrc.5382.


Delivery of Dissociated Islets Cells within Microporous Annealed Particle Scaffold to Treat Type 1 Diabetes.

Roosa C, Ma M, Chhabra P, Brayman K, Griffin D Adv Ther (Weinh). 2022; 5(9).

PMID: 36405778 PMC: 9674036. DOI: 10.1002/adtp.202200064.


Ectopic Odorant Receptor Responding to Flavor Compounds: Versatile Roles in Health and Disease.

Tong T, Wang Y, Kang S, Huang K Pharmaceutics. 2021; 13(8).

PMID: 34452275 PMC: 8402194. DOI: 10.3390/pharmaceutics13081314.


ZIMIR Imaging of Mouse Pancreatic Islet Cells Shows Oscillatory Insulin Secretion.

Chen S, Huang Z, Kidd H, Kim M, Suh E, Xie S Front Endocrinol (Lausanne). 2021; 12:613964.

PMID: 33767668 PMC: 7985533. DOI: 10.3389/fendo.2021.613964.


References
1.
Frank J, Broichhagen J, Yushchenko D, Trauner D, Schultz C, Hodson D . Optical tools for understanding the complexity of β-cell signalling and insulin release. Nat Rev Endocrinol. 2018; 14(12):721-737. DOI: 10.1038/s41574-018-0105-2. View

2.
Singh S, Janjuha S, Hartmann T, Kayisoglu O, Konantz J, Birke S . Different developmental histories of beta-cells generate functional and proliferative heterogeneity during islet growth. Nat Commun. 2017; 8(1):664. PMC: 5610262. DOI: 10.1038/s41467-017-00461-3. View

3.
Tsien R . Fluorescent indicators of ion concentrations. Methods Cell Biol. 1989; 30:127-56. DOI: 10.1016/s0091-679x(08)60978-4. View

4.
Harata M, Liu S, Promes J, Burand A, Ankrum J, Imai Y . Delivery of shRNA via lentivirus in human pseudoislets provides a model to test dynamic regulation of insulin secretion and gene function in human islets. Physiol Rep. 2018; 6(20):e13907. PMC: 6204361. DOI: 10.14814/phy2.13907. View

5.
van Gurp L, Loomans C, van Krieken P, Dharmadhikari G, Jansen E, Ringnalda F . Sequential intravital imaging reveals in vivo dynamics of pancreatic tissue transplanted under the kidney capsule in mice. Diabetologia. 2016; 59(11):2387-2392. PMC: 5506096. DOI: 10.1007/s00125-016-4049-6. View