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Hyaluronan content governs tissue stiffness in pancreatic islet inflammation.

Authors :
Nagy, Nadine
Nagy, Nadine
de la Zerda, Adi
Kaber, Gernot
Johnson, Pamela Y
Hu, Kenneth H
Kratochvil, Michael J
Yadava, Koshika
Zhao, Wenting
Cui, Yi
Navarro, Guadalupe
Annes, Justin P
Wight, Thomas N
Heilshorn, Sarah C
Bollyky, Paul L
Butte, Manish J
Nagy, Nadine
Nagy, Nadine
de la Zerda, Adi
Kaber, Gernot
Johnson, Pamela Y
Hu, Kenneth H
Kratochvil, Michael J
Yadava, Koshika
Zhao, Wenting
Cui, Yi
Navarro, Guadalupe
Annes, Justin P
Wight, Thomas N
Heilshorn, Sarah C
Bollyky, Paul L
Butte, Manish J
Source :
The Journal of biological chemistry; vol 293, iss 2, 567-578; 0021-9258
Publication Year :
2018

Abstract

We have identified a novel role for hyaluronan (HA), an extracellular matrix polymer, in governing the mechanical properties of inflamed tissues. We recently reported that insulitis in type 1 diabetes of mice and humans is preceded by intraislet accumulation of HA, a highly hygroscopic polymer. Using the double transgenic DO11.10 × RIPmOVA (DORmO) mouse model of type 1 diabetes, we asked whether autoimmune insulitis was associated with changes in the stiffness of islets. To measure islet stiffness, we used atomic force microscopy (AFM) and developed a novel "bed of nails"-like approach that uses quartz glass nanopillars to anchor islets, solving a long-standing problem of keeping tissue-scale objects immobilized while performing AFM. We measured stiffness via AFM nanoindentation with a spherical indenter and found that insulitis made islets mechanically soft compared with controls. Conversely, treatment with 4-methylumbelliferone, a small-molecule inhibitor of HA synthesis, reduced HA accumulation, diminished swelling, and restored basal tissue stiffness. These results indicate that HA content governs the mechanical properties of islets. In hydrogels with variable HA content, we confirmed that increased HA leads to mechanically softer hydrogels, consistent with our model. In light of recent reports that the insulin production of islets is mechanosensitive, these findings open up an exciting new avenue of research into the fundamental mechanisms by which inflammation impacts local cellular responses.

Details

Database :
OAIster
Journal :
The Journal of biological chemistry; vol 293, iss 2, 567-578; 0021-9258
Notes :
application/pdf, The Journal of biological chemistry vol 293, iss 2, 567-578 0021-9258
Publication Type :
Electronic Resource
Accession number :
edsoai.on1391612029
Document Type :
Electronic Resource