Cargando…

The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model

Male osteoporosis is associated with higher rates of disability and mortality. Hence the search for suitable intervention and treatment to prevent the degeneration of skeletal health in men is necessary. Eurycoma longifolia (EL), a traditional plant with aphrodisiac potential may be used to treat an...

Descripción completa

Detalles Bibliográficos
Autores principales: Jayusman, Putri Ayu, Mohamed, Isa Naina, Alias, Ekram, Mohamed, Norazlina, Shuid, Ahmad Nazrun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6073572/
https://www.ncbi.nlm.nih.gov/pubmed/29933617
http://dx.doi.org/10.3390/nu10070799
_version_ 1783344221662478336
author Jayusman, Putri Ayu
Mohamed, Isa Naina
Alias, Ekram
Mohamed, Norazlina
Shuid, Ahmad Nazrun
author_facet Jayusman, Putri Ayu
Mohamed, Isa Naina
Alias, Ekram
Mohamed, Norazlina
Shuid, Ahmad Nazrun
author_sort Jayusman, Putri Ayu
collection PubMed
description Male osteoporosis is associated with higher rates of disability and mortality. Hence the search for suitable intervention and treatment to prevent the degeneration of skeletal health in men is necessary. Eurycoma longifolia (EL), a traditional plant with aphrodisiac potential may be used to treat and prevent male osteoporosis. The skeletal protective effect of quassinoid-rich EL extract, which has a high content of eurycomanone, has not been studied. This study aimed to determine whether EL could prevent skeletal deteriorations in gonadal hormone-deficient male rats. Ninety-six male Sprague–Dawley rats were randomly assigned to baseline, sham-operated (Sham), orchidectomised or chemically castrated groups. Chemical castration was achieved via subcutaneous injection of degarelix at 2 mg/kg. The orchidectomised and degarelix-castrated rats were then divided into negative control groups (ORX, DGX), testosterone-treated groups (intramuscular injection at 7 mg/kg weekly) (ORX + TES, DGX + TES), and EL-supplemented groups receiving daily oral gavages at doses of 25 mg/kg (ORX + EL25, DGX + EL25), 50 mg/kg (ORX + EL50, DGX + EL50), and 100 mg/kg (ORX + EL100, DGX + EL100). Following 10 weeks of treatment, the rats were euthanized and their blood and femora were collected. Bone biochemical markers, serum testosterone, osteoprotegerin (OPG), and receptor activator of nuclear factor kappa β-ligand (RANKL) levels and histomorphometric indices were evaluated. Quassinoid-rich EL supplementation was found to reduce degenerative changes of trabecular structure by improving bone volume, trabecular number, and separation. A reduction in the percentage of osteoclast and increase in percentage of osteoblast on bone surface were also seen with EL supplementation. Dynamic histomorphometric analysis showed that the single-labeled surface was significantly decreased while the double-labeled surface was significantly increased with EL supplementations. There was a marginal but significant increase in serum testosterone levels in the ORX + EL25, DGX + EL50, and DGX + EL100 groups compared to their negative control groups. Quassinoid-rich EL extract was effective in reducing skeletal deteriorations in the androgen-deficient osteoporosis rat model.
format Online
Article
Text
id pubmed-6073572
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-60735722018-08-13 The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model Jayusman, Putri Ayu Mohamed, Isa Naina Alias, Ekram Mohamed, Norazlina Shuid, Ahmad Nazrun Nutrients Article Male osteoporosis is associated with higher rates of disability and mortality. Hence the search for suitable intervention and treatment to prevent the degeneration of skeletal health in men is necessary. Eurycoma longifolia (EL), a traditional plant with aphrodisiac potential may be used to treat and prevent male osteoporosis. The skeletal protective effect of quassinoid-rich EL extract, which has a high content of eurycomanone, has not been studied. This study aimed to determine whether EL could prevent skeletal deteriorations in gonadal hormone-deficient male rats. Ninety-six male Sprague–Dawley rats were randomly assigned to baseline, sham-operated (Sham), orchidectomised or chemically castrated groups. Chemical castration was achieved via subcutaneous injection of degarelix at 2 mg/kg. The orchidectomised and degarelix-castrated rats were then divided into negative control groups (ORX, DGX), testosterone-treated groups (intramuscular injection at 7 mg/kg weekly) (ORX + TES, DGX + TES), and EL-supplemented groups receiving daily oral gavages at doses of 25 mg/kg (ORX + EL25, DGX + EL25), 50 mg/kg (ORX + EL50, DGX + EL50), and 100 mg/kg (ORX + EL100, DGX + EL100). Following 10 weeks of treatment, the rats were euthanized and their blood and femora were collected. Bone biochemical markers, serum testosterone, osteoprotegerin (OPG), and receptor activator of nuclear factor kappa β-ligand (RANKL) levels and histomorphometric indices were evaluated. Quassinoid-rich EL supplementation was found to reduce degenerative changes of trabecular structure by improving bone volume, trabecular number, and separation. A reduction in the percentage of osteoclast and increase in percentage of osteoblast on bone surface were also seen with EL supplementation. Dynamic histomorphometric analysis showed that the single-labeled surface was significantly decreased while the double-labeled surface was significantly increased with EL supplementations. There was a marginal but significant increase in serum testosterone levels in the ORX + EL25, DGX + EL50, and DGX + EL100 groups compared to their negative control groups. Quassinoid-rich EL extract was effective in reducing skeletal deteriorations in the androgen-deficient osteoporosis rat model. MDPI 2018-06-21 /pmc/articles/PMC6073572/ /pubmed/29933617 http://dx.doi.org/10.3390/nu10070799 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jayusman, Putri Ayu
Mohamed, Isa Naina
Alias, Ekram
Mohamed, Norazlina
Shuid, Ahmad Nazrun
The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model
title The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model
title_full The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model
title_fullStr The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model
title_full_unstemmed The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model
title_short The Effects of Quassinoid-Rich Eurycoma longifolia Extract on Bone Turnover and Histomorphometry Indices in the Androgen-Deficient Osteoporosis Rat Model
title_sort effects of quassinoid-rich eurycoma longifolia extract on bone turnover and histomorphometry indices in the androgen-deficient osteoporosis rat model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6073572/
https://www.ncbi.nlm.nih.gov/pubmed/29933617
http://dx.doi.org/10.3390/nu10070799
work_keys_str_mv AT jayusmanputriayu theeffectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT mohamedisanaina theeffectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT aliasekram theeffectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT mohamednorazlina theeffectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT shuidahmadnazrun theeffectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT jayusmanputriayu effectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT mohamedisanaina effectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT aliasekram effectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT mohamednorazlina effectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel
AT shuidahmadnazrun effectsofquassinoidricheurycomalongifoliaextractonboneturnoverandhistomorphometryindicesintheandrogendeficientosteoporosisratmodel