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The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility

Oocyte activation, a fundamental event during mammalian fertilisation, is initiated by concerted intracellular patterns of calcium (Ca(2+)) release, termed Ca(2+) oscillations, predominantly driven by testis-specific phospholipase C zeta (PLCζ). Ca(2+) exerts a pivotal role in not just regulating oo...

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Autores principales: Abdulsamad, Haia M. R., Murtaza, Zoha F., AlMuhairi, Hessa M., Bafleh, Wjdan S., AlMansoori, Salma A., AlQubaisi, Shaikha A., Hamdan, Hamdan, Kashir, Junaid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10056371/
https://www.ncbi.nlm.nih.gov/pubmed/36986540
http://dx.doi.org/10.3390/ph16030441
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author Abdulsamad, Haia M. R.
Murtaza, Zoha F.
AlMuhairi, Hessa M.
Bafleh, Wjdan S.
AlMansoori, Salma A.
AlQubaisi, Shaikha A.
Hamdan, Hamdan
Kashir, Junaid
author_facet Abdulsamad, Haia M. R.
Murtaza, Zoha F.
AlMuhairi, Hessa M.
Bafleh, Wjdan S.
AlMansoori, Salma A.
AlQubaisi, Shaikha A.
Hamdan, Hamdan
Kashir, Junaid
author_sort Abdulsamad, Haia M. R.
collection PubMed
description Oocyte activation, a fundamental event during mammalian fertilisation, is initiated by concerted intracellular patterns of calcium (Ca(2+)) release, termed Ca(2+) oscillations, predominantly driven by testis-specific phospholipase C zeta (PLCζ). Ca(2+) exerts a pivotal role in not just regulating oocyte activation and driving fertilisation, but also in influencing the quality of embryogenesis. In humans, a failure of Ca(2+) release, or defects in related mechanisms, have been reported to result in infertility. Furthermore, mutations in the PLCζ gene and abnormalities in sperm PLCζ protein and RNA, have been strongly associated with forms of male infertility where oocyte activation is deficient. Concurrently, specific patterns and profiles of PLCζ in human sperm have been linked to parameters of semen quality, suggesting the potential for PLCζ as a powerful target for both therapeutics and diagnostics of human fertility. However, further to PLCζ and given the strong role played by Ca(2+) in fertilisation, targets down- and up-stream of this process may also present a significantly similar level of promise. Herein, we systematically summarise recent advancements and controversies in the field to update expanding clinical associations between Ca(2+)-release, PLCζ, oocyte activation and human fertility. We discuss how such associations may potentially underlie defective embryogenesis and recurrent implantation failure following fertility treatments, alongside potential diagnostic and therapeutic avenues presented by oocyte activation for the diagnosis and treatment of human infertility.
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spelling pubmed-100563712023-03-30 The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility Abdulsamad, Haia M. R. Murtaza, Zoha F. AlMuhairi, Hessa M. Bafleh, Wjdan S. AlMansoori, Salma A. AlQubaisi, Shaikha A. Hamdan, Hamdan Kashir, Junaid Pharmaceuticals (Basel) Review Oocyte activation, a fundamental event during mammalian fertilisation, is initiated by concerted intracellular patterns of calcium (Ca(2+)) release, termed Ca(2+) oscillations, predominantly driven by testis-specific phospholipase C zeta (PLCζ). Ca(2+) exerts a pivotal role in not just regulating oocyte activation and driving fertilisation, but also in influencing the quality of embryogenesis. In humans, a failure of Ca(2+) release, or defects in related mechanisms, have been reported to result in infertility. Furthermore, mutations in the PLCζ gene and abnormalities in sperm PLCζ protein and RNA, have been strongly associated with forms of male infertility where oocyte activation is deficient. Concurrently, specific patterns and profiles of PLCζ in human sperm have been linked to parameters of semen quality, suggesting the potential for PLCζ as a powerful target for both therapeutics and diagnostics of human fertility. However, further to PLCζ and given the strong role played by Ca(2+) in fertilisation, targets down- and up-stream of this process may also present a significantly similar level of promise. Herein, we systematically summarise recent advancements and controversies in the field to update expanding clinical associations between Ca(2+)-release, PLCζ, oocyte activation and human fertility. We discuss how such associations may potentially underlie defective embryogenesis and recurrent implantation failure following fertility treatments, alongside potential diagnostic and therapeutic avenues presented by oocyte activation for the diagnosis and treatment of human infertility. MDPI 2023-03-15 /pmc/articles/PMC10056371/ /pubmed/36986540 http://dx.doi.org/10.3390/ph16030441 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Abdulsamad, Haia M. R.
Murtaza, Zoha F.
AlMuhairi, Hessa M.
Bafleh, Wjdan S.
AlMansoori, Salma A.
AlQubaisi, Shaikha A.
Hamdan, Hamdan
Kashir, Junaid
The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility
title The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility
title_full The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility
title_fullStr The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility
title_full_unstemmed The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility
title_short The Therapeutic and Diagnostic Potential of Phospholipase C Zeta, Oocyte Activation, and Calcium in Treating Human Infertility
title_sort therapeutic and diagnostic potential of phospholipase c zeta, oocyte activation, and calcium in treating human infertility
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10056371/
https://www.ncbi.nlm.nih.gov/pubmed/36986540
http://dx.doi.org/10.3390/ph16030441
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