Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men

Introduction: MiRNA expression alterations are closely related to growth, proliferation, and cell development. In addition, miR-187 has been found to regulate cellular proliferation. Further, spermatogenesis is a highly complicated process which is regulated through several genes targeted by miRNAs....

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Autores principales: Fahimeh Piryaei, Hossein Mozdarani, Mohammad Ali Sadighi Gilani, Mansour Ebrahimi
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Publicado: Zabol University of Medical sciences 2020
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spelling oai:doaj.org-article:2ba056e26d644e8aa851cd5adf23a0ec2021-11-17T09:54:24ZHomo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men2476-664X10.34172/ijbsm.2020.08https://doaj.org/article/2ba056e26d644e8aa851cd5adf23a0ec2020-06-01T00:00:00Zhttp://ijbsm.zbmu.ac.ir/PDF/ijbsm-13314https://doaj.org/toc/2476-664XIntroduction: MiRNA expression alterations are closely related to growth, proliferation, and cell development. In addition, miR-187 has been found to regulate cellular proliferation. Further, spermatogenesis is a highly complicated process which is regulated through several genes targeted by miRNAs. However, no study has completely addressed the etiology of spermatogenic impairments. Accordingly, the present study examined the expression pattern of Homo sapiens (human) microRNA (hsa-mir-187) in the testicular biopsies of infertile men with non-obstructive azoospermia (NOA) and Sertoli cell-only syndrome (SCOS) subtype in comparison with those with obstructive azoospermia (OA). Methods: Quantitative reverse‐transcription polymerase chain reaction analysis was performed to assess the expression level of hsa-mir-187 using the ΔΔCt method. Results: Our data indicated that hsa-mir-187 was significantly up-regulated in the testis of the SCOS group (P˂ 0.05) in comparison with the OA group. Conclusion: In general, the findings suggest that the differential expression of hsa-mir-187 is linked with male infertility and shed more light on molecular defects that underlie spermatogenic impairments.Fahimeh PiryaeiHossein MozdaraniMohammad Ali Sadighi GilaniMansour EbrahimiZabol University of Medical sciencesarticlenon-obstructive azoospermia (noa) obstructive azoospermia (oa) mir-187 sertoli cell only syndrome (scos) testicular tissue Medicine (General)R5-920ENInternational Journal of Basic Science in Medicine, Vol 5, Iss 2, Pp 39-42 (2020)
institution DOAJ
collection DOAJ
language EN
topic non-obstructive azoospermia (noa)
obstructive azoospermia (oa)
mir-187
sertoli cell only syndrome (scos)
testicular tissue

Medicine (General)
R5-920
spellingShingle non-obstructive azoospermia (noa)
obstructive azoospermia (oa)
mir-187
sertoli cell only syndrome (scos)
testicular tissue

Medicine (General)
R5-920
Fahimeh Piryaei
Hossein Mozdarani
Mohammad Ali Sadighi Gilani
Mansour Ebrahimi
Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men
description Introduction: MiRNA expression alterations are closely related to growth, proliferation, and cell development. In addition, miR-187 has been found to regulate cellular proliferation. Further, spermatogenesis is a highly complicated process which is regulated through several genes targeted by miRNAs. However, no study has completely addressed the etiology of spermatogenic impairments. Accordingly, the present study examined the expression pattern of Homo sapiens (human) microRNA (hsa-mir-187) in the testicular biopsies of infertile men with non-obstructive azoospermia (NOA) and Sertoli cell-only syndrome (SCOS) subtype in comparison with those with obstructive azoospermia (OA). Methods: Quantitative reverse‐transcription polymerase chain reaction analysis was performed to assess the expression level of hsa-mir-187 using the ΔΔCt method. Results: Our data indicated that hsa-mir-187 was significantly up-regulated in the testis of the SCOS group (P˂ 0.05) in comparison with the OA group. Conclusion: In general, the findings suggest that the differential expression of hsa-mir-187 is linked with male infertility and shed more light on molecular defects that underlie spermatogenic impairments.
format article
author Fahimeh Piryaei
Hossein Mozdarani
Mohammad Ali Sadighi Gilani
Mansour Ebrahimi
author_facet Fahimeh Piryaei
Hossein Mozdarani
Mohammad Ali Sadighi Gilani
Mansour Ebrahimi
author_sort Fahimeh Piryaei
title Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men
title_short Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men
title_full Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men
title_fullStr Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men
title_full_unstemmed Homo Sapiens (Human) microRNA 187 Expression Is Dysregulated in Testis of Non-obstructive Azoospermic Men
title_sort homo sapiens (human) microrna 187 expression is dysregulated in testis of non-obstructive azoospermic men
publisher Zabol University of Medical sciences
publishDate 2020
url https://doaj.org/article/2ba056e26d644e8aa851cd5adf23a0ec
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