In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review

The pancreas is regarded as consisting of two separate organ systems, the endocrine and exocrine pancreas. While treatment of a disease with either an endocrine or exocrine pathogenesis may affect the function of the entire pancreas, the pancreatic diseases have been treated by clinicians in differe...

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Main Authors: Michael P. Dybala, Manami Hara
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-05-01
Series:Frontiers in Endocrinology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fendo.2021.602620/full
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spelling doaj-430f02905b264329ba96bcd6c6de3a3a2021-05-10T15:04:49ZengFrontiers Media S.A.Frontiers in Endocrinology1664-23922021-05-011210.3389/fendo.2021.602620602620In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-ReviewMichael P. DybalaManami HaraThe pancreas is regarded as consisting of two separate organ systems, the endocrine and exocrine pancreas. While treatment of a disease with either an endocrine or exocrine pathogenesis may affect the function of the entire pancreas, the pancreatic diseases have been treated by clinicians in different medical disciplines, including endocrinologists and gastroenterologists. Islet microcirculation has long been considered to be regulated independently from that of the exocrine pancreas. A new model proposes that pancreatic islet blood flow is integrated with the surrounding exocrine capillary network. This recent model may provide revived or contrasting hypotheses to test, since the pancreatic microcirculation has critical implications for the regulation of islet hormones as well as acinar pancreas functions. In this mini-review, practical applications of in vivo and in situ studies of islet microcirculation are described with a specific emphasis on large-scale data analysis to ensure sufficient sample size accounting for known islet heterogeneity. For in vivo small animal studies, intravital microscopy based on two-photon excitation microscopes is a powerful tool that enables capturing the flow direction and speed of individual fluorescent-labeled red blood cells. Complementarily, for structural analysis of blood vessels, the recent technical advancements of confocal microscopy and tissue clearing have enabled us to image the three-dimensional network structure in thick tissue slices.https://www.frontiersin.org/articles/10.3389/fendo.2021.602620/fullbeta cell (β-Cell)isletcapillarymicrocirculationintravital 2-photon microscopy3D image analysis
collection DOAJ
language English
format Article
sources DOAJ
author Michael P. Dybala
Manami Hara
spellingShingle Michael P. Dybala
Manami Hara
In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review
Frontiers in Endocrinology
beta cell (β-Cell)
islet
capillary
microcirculation
intravital 2-photon microscopy
3D image analysis
author_facet Michael P. Dybala
Manami Hara
author_sort Michael P. Dybala
title In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review
title_short In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review
title_full In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review
title_fullStr In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review
title_full_unstemmed In Vivo and In Situ Approach to Study Islet Microcirculation: A Mini-Review
title_sort in vivo and in situ approach to study islet microcirculation: a mini-review
publisher Frontiers Media S.A.
series Frontiers in Endocrinology
issn 1664-2392
publishDate 2021-05-01
description The pancreas is regarded as consisting of two separate organ systems, the endocrine and exocrine pancreas. While treatment of a disease with either an endocrine or exocrine pathogenesis may affect the function of the entire pancreas, the pancreatic diseases have been treated by clinicians in different medical disciplines, including endocrinologists and gastroenterologists. Islet microcirculation has long been considered to be regulated independently from that of the exocrine pancreas. A new model proposes that pancreatic islet blood flow is integrated with the surrounding exocrine capillary network. This recent model may provide revived or contrasting hypotheses to test, since the pancreatic microcirculation has critical implications for the regulation of islet hormones as well as acinar pancreas functions. In this mini-review, practical applications of in vivo and in situ studies of islet microcirculation are described with a specific emphasis on large-scale data analysis to ensure sufficient sample size accounting for known islet heterogeneity. For in vivo small animal studies, intravital microscopy based on two-photon excitation microscopes is a powerful tool that enables capturing the flow direction and speed of individual fluorescent-labeled red blood cells. Complementarily, for structural analysis of blood vessels, the recent technical advancements of confocal microscopy and tissue clearing have enabled us to image the three-dimensional network structure in thick tissue slices.
topic beta cell (β-Cell)
islet
capillary
microcirculation
intravital 2-photon microscopy
3D image analysis
url https://www.frontiersin.org/articles/10.3389/fendo.2021.602620/full
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