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The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening

After fertilization, the oocyte-specific metalloproteinase ovastacin is released and cleaves the zona pellucida protein 2 (ZP2), making the zona pellucida impermeable to sperm. Before fertilization, the zona remains permeable because previously released ovastacin is inhibited by fetuin-B. Consequent...

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Autores principales: Schmitz, Carlo, Sadr, Seyedeh Zeynab, Körschgen, Hagen, Kuske, Michael, Schoen, Jennifer, Stöcker, Walter, Jahnen-Dechent, Willi, Floehr, Julia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8494380/
https://www.ncbi.nlm.nih.gov/pubmed/34320465
http://dx.doi.org/10.1530/REP-21-0122
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author Schmitz, Carlo
Sadr, Seyedeh Zeynab
Körschgen, Hagen
Kuske, Michael
Schoen, Jennifer
Stöcker, Walter
Jahnen-Dechent, Willi
Floehr, Julia
author_facet Schmitz, Carlo
Sadr, Seyedeh Zeynab
Körschgen, Hagen
Kuske, Michael
Schoen, Jennifer
Stöcker, Walter
Jahnen-Dechent, Willi
Floehr, Julia
author_sort Schmitz, Carlo
collection PubMed
description After fertilization, the oocyte-specific metalloproteinase ovastacin is released and cleaves the zona pellucida protein 2 (ZP2), making the zona pellucida impermeable to sperm. Before fertilization, the zona remains permeable because previously released ovastacin is inhibited by fetuin-B. Consequently, in the absence of fetuin-B, ZP2 cleavage occurs prematurely and leads to infertility of female fetuin-B deficient mice. In contrast, fetuin-B/ovastacin double-deficient oocytes show a permanently permeable zona with intact ZP2. In this study, we asked if the elastic modulus of the zona pellucida informs about ZP2 cleavage and thus could serve as a new reference of oocyte fertility. Therefore, we determined the elastic modulus of mouse oocytes by nanoindentation as a direct measure of mechanical zona hardening. The elastic modulus reflects ZP2 cleavage, but with more than double sensitivity compared to immunoblot analysis. The elastic modulus measurement allowed to define the range of zona hardening, confined by the extreme states of the zona pellucida in fetuin-B and ovastacin-deficient oocytes with cleaved and uncleaved ZP2, respectively. We present here nanoindentation as a method to quantify the effect of potential contributing factors on the zona hardening of individual oocytes. To demonstrate this, we showed that mechanical hardening of the zona pellucida is forced by recombinant ovastacin, inhibited by additional administration of fetuin-B, and unaffected by zinc. Since the change in elastic modulus is induced by ZP2 cleavage, an automated elastic modulus measurement of oocytes may serve as a novel sensitive, non-destructive, marker-free, and observer-unbiased method for assessing individual oocyte quality.
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spelling pubmed-84943802021-10-08 The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening Schmitz, Carlo Sadr, Seyedeh Zeynab Körschgen, Hagen Kuske, Michael Schoen, Jennifer Stöcker, Walter Jahnen-Dechent, Willi Floehr, Julia Reproduction Research After fertilization, the oocyte-specific metalloproteinase ovastacin is released and cleaves the zona pellucida protein 2 (ZP2), making the zona pellucida impermeable to sperm. Before fertilization, the zona remains permeable because previously released ovastacin is inhibited by fetuin-B. Consequently, in the absence of fetuin-B, ZP2 cleavage occurs prematurely and leads to infertility of female fetuin-B deficient mice. In contrast, fetuin-B/ovastacin double-deficient oocytes show a permanently permeable zona with intact ZP2. In this study, we asked if the elastic modulus of the zona pellucida informs about ZP2 cleavage and thus could serve as a new reference of oocyte fertility. Therefore, we determined the elastic modulus of mouse oocytes by nanoindentation as a direct measure of mechanical zona hardening. The elastic modulus reflects ZP2 cleavage, but with more than double sensitivity compared to immunoblot analysis. The elastic modulus measurement allowed to define the range of zona hardening, confined by the extreme states of the zona pellucida in fetuin-B and ovastacin-deficient oocytes with cleaved and uncleaved ZP2, respectively. We present here nanoindentation as a method to quantify the effect of potential contributing factors on the zona hardening of individual oocytes. To demonstrate this, we showed that mechanical hardening of the zona pellucida is forced by recombinant ovastacin, inhibited by additional administration of fetuin-B, and unaffected by zinc. Since the change in elastic modulus is induced by ZP2 cleavage, an automated elastic modulus measurement of oocytes may serve as a novel sensitive, non-destructive, marker-free, and observer-unbiased method for assessing individual oocyte quality. Bioscientifica Ltd 2021-07-28 /pmc/articles/PMC8494380/ /pubmed/34320465 http://dx.doi.org/10.1530/REP-21-0122 Text en © The authors https://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research
Schmitz, Carlo
Sadr, Seyedeh Zeynab
Körschgen, Hagen
Kuske, Michael
Schoen, Jennifer
Stöcker, Walter
Jahnen-Dechent, Willi
Floehr, Julia
The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
title The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
title_full The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
title_fullStr The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
title_full_unstemmed The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
title_short The E-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
title_sort e-modulus of the oocyte is a non-destructive measure of zona pellucida hardening
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8494380/
https://www.ncbi.nlm.nih.gov/pubmed/34320465
http://dx.doi.org/10.1530/REP-21-0122
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