Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats

Abstract Background Labetalol is an antihypertensive drug commonly used in obstetrics for both long-term treatment and the acute management of severe maternal hypertension. However, there have not been published articles about the effects of labetalol on the myocardium and the placenta. This study a...

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Main Authors: Hend T. El-Borm, Marwa N. Atallah
Format: Article
Language:English
Published: SpringerOpen 2021-09-01
Series:Journal of Basic and Applied Zoology
Subjects:
Online Access:https://doi.org/10.1186/s41936-021-00238-7
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author Hend T. El-Borm
Marwa N. Atallah
author_facet Hend T. El-Borm
Marwa N. Atallah
author_sort Hend T. El-Borm
collection DOAJ
description Abstract Background Labetalol is an antihypertensive drug commonly used in obstetrics for both long-term treatment and the acute management of severe maternal hypertension. However, there have not been published articles about the effects of labetalol on the myocardium and the placenta. This study aimed to estimate the histological, immune-histochemical, and ultrastructural cardio- and placental-toxicity of labetalol administration and the effectiveness of ginger against this toxicity in pregnant rats. Labetalol was daily administrated orally with or without ginger at a dose of 300 mg/kg and 200 mg/kg, respectively, during the gestation days 6 to 20. Results In the labetalol-administrated group, the myocardium displayed histological and ultrastructure destructive changes and a significant increase in caspase-3 expression. Labetalol also decreased the placental weight compared with the control group, caused marked degeneration and disorganization of their architecture, and increased caspase-3 expression. Co-administration of ginger after labetalol highly ameliorates the adverse effect of labetalol on both cardiac and placental tissues. Conclusions It is concluded that ginger can mitigate cardiac and placental toxicity induced by labetalol administration into pregnant rats.
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spelling doaj.art-61e76aa6f6ac4a888efd57d0f70147b62022-12-21T22:05:50ZengSpringerOpenJournal of Basic and Applied Zoology2090-990X2021-09-0182111510.1186/s41936-021-00238-7Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant ratsHend T. El-Borm0Marwa N. Atallah1Comparative Anatomy and Embryology-Zoology Department, Faculty of Science, Menoufia UniversityComparative Anatomy and Embryology-Zoology Department, Faculty of Science, Menoufia UniversityAbstract Background Labetalol is an antihypertensive drug commonly used in obstetrics for both long-term treatment and the acute management of severe maternal hypertension. However, there have not been published articles about the effects of labetalol on the myocardium and the placenta. This study aimed to estimate the histological, immune-histochemical, and ultrastructural cardio- and placental-toxicity of labetalol administration and the effectiveness of ginger against this toxicity in pregnant rats. Labetalol was daily administrated orally with or without ginger at a dose of 300 mg/kg and 200 mg/kg, respectively, during the gestation days 6 to 20. Results In the labetalol-administrated group, the myocardium displayed histological and ultrastructure destructive changes and a significant increase in caspase-3 expression. Labetalol also decreased the placental weight compared with the control group, caused marked degeneration and disorganization of their architecture, and increased caspase-3 expression. Co-administration of ginger after labetalol highly ameliorates the adverse effect of labetalol on both cardiac and placental tissues. Conclusions It is concluded that ginger can mitigate cardiac and placental toxicity induced by labetalol administration into pregnant rats.https://doi.org/10.1186/s41936-021-00238-7Wistar ratsHeartPlacentaLabetalolGingerCaspase-3
spellingShingle Hend T. El-Borm
Marwa N. Atallah
Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats
Journal of Basic and Applied Zoology
Wistar rats
Heart
Placenta
Labetalol
Ginger
Caspase-3
title Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats
title_full Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats
title_fullStr Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats
title_full_unstemmed Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats
title_short Protective effects of Zingiber officinale extract on myocardium and placenta against labetalol-induced histopathological, immune-histochemical, and ultrastructural alterations in pregnant rats
title_sort protective effects of zingiber officinale extract on myocardium and placenta against labetalol induced histopathological immune histochemical and ultrastructural alterations in pregnant rats
topic Wistar rats
Heart
Placenta
Labetalol
Ginger
Caspase-3
url https://doi.org/10.1186/s41936-021-00238-7
work_keys_str_mv AT hendtelborm protectiveeffectsofzingiberofficinaleextractonmyocardiumandplacentaagainstlabetalolinducedhistopathologicalimmunehistochemicalandultrastructuralalterationsinpregnantrats
AT marwanatallah protectiveeffectsofzingiberofficinaleextractonmyocardiumandplacentaagainstlabetalolinducedhistopathologicalimmunehistochemicalandultrastructuralalterationsinpregnantrats