Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice

Abstract Background Extracellular polymeric substances isolated from Aureobasidium pullulans (EAP), containing specifically 13% β-1,3/1,6-glucan, have shown various favorable bone-preserving effects. Textoria morbifera Nakai (TM) tree has been used as an ingredient in traditional medicine and tea fo...

Full description

Bibliographic Details
Main Authors: Chang-Soo Cho, Hye-Seong Jeong, In-Young Kim, Go-Woon Jung, Bon-Hwa Ku, Dong-Chan Park, Seung-Bae Moon, Hyung-Rae Cho, Khawaja Muhammad Imran Bashir, Sae Kwang Ku, Jae-Suk Choi
Format: Article
Language:English
Published: BMC 2018-11-01
Series:BMC Complementary and Alternative Medicine
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12906-018-2362-y
id doaj-34345bf3725640539047a9bd7cecb425
record_format Article
spelling doaj-34345bf3725640539047a9bd7cecb4252020-11-25T02:04:49ZengBMCBMC Complementary and Alternative Medicine1472-68822018-11-0118111510.1186/s12906-018-2362-yAnti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized miceChang-Soo Cho0Hye-Seong Jeong1In-Young Kim2Go-Woon Jung3Bon-Hwa Ku4Dong-Chan Park5Seung-Bae Moon6Hyung-Rae Cho7Khawaja Muhammad Imran Bashir8Sae Kwang Ku9Jae-Suk Choi10Hurim Hwangchil Co., LtdHurim Hwangchil Co., LtdHurim Hwangchil Co., LtdGlucan Corp., #305 Marine Bio-Industry Development CentgerGlucan Corp., #305 Marine Bio-Industry Development CentgerGlucan Corp., #305 Marine Bio-Industry Development CentgerGlucan Corp., #305 Marine Bio-Industry Development CentgerGlucan Corp., #305 Marine Bio-Industry Development CentgerResearch Center for Extremophiles and Microbiology, College of Medical and Life Sciences, Silla UniversityDepartment of Anatomy and Histology, College of Korean Medicine, Daegu Haany UniversityMajor in Food Biotechnology, Division of Bioindustry, College of Medical and Life Sciences, Silla UniversityAbstract Background Extracellular polymeric substances isolated from Aureobasidium pullulans (EAP), containing specifically 13% β-1,3/1,6-glucan, have shown various favorable bone-preserving effects. Textoria morbifera Nakai (TM) tree has been used as an ingredient in traditional medicine and tea for various pharmacological purposes. Thus, the present study was aimed to examine the synergistic anti-osteoporotic potential of mixtures containing different proportions of EAP and TM compared with that of the single formulations of each herbal extract using bilateral ovariectomized (OVX) mice, a renowned rodent model for studying human osteoporosis. Methods Thirty five days after bilateral-OVX surgery, 9 combinations of EAP:TM (ratios = 1:1, 1:3, 1:5, 1:7, 1:9, 3:1, 5:1, 7:1, 9:1) and single separate formulations of EAP or TM were supplied orally, once a day for 35 days at a final concentration of 200 mg/kg. Variations in body weight gains during the experimental periods, as well as femur weights, bone mineral density (BMD), bone strength (failure load), and mineral content (calcium [Ca] and inorganic phosphorus [IP]) following sacrifice were measured. Furthermore, histomorphometric and histological profile analyses of serum biochemical parameters (osteocalcin content and bone specific alkaline phosphatase [bALP] activity) were conducted following sacrifice. Femurs histomorphometric analyses were also conducted for bone resorption, structure and mass. The results for the mixed formulations of EAP:TM and separate formulations were compared with those of risedronate sodium (RES). Results The EAP:TM (3:1) formulation synergistically enhanced the anti-osteoporotic potential of individual EAP or TM formulations, possibly due to enhanced variety of the active ingredients. Furthermore, the effects of EAP:TM were comparable to those of RES (2.5 mg/kg) treatment. Conclusion The results of this study suggest that, the EAP:TM (3:1) combination might act as a new pharmaceutical agent and/or health functional food substance for curing osteoporosis in menopausal women.http://link.springer.com/article/10.1186/s12906-018-2362-yAnti-osteoporotic effectAureobasidium pullulansβ-GlucansExopolymerTextoria morbifera
collection DOAJ
language English
format Article
sources DOAJ
author Chang-Soo Cho
Hye-Seong Jeong
In-Young Kim
Go-Woon Jung
Bon-Hwa Ku
Dong-Chan Park
Seung-Bae Moon
Hyung-Rae Cho
Khawaja Muhammad Imran Bashir
Sae Kwang Ku
Jae-Suk Choi
spellingShingle Chang-Soo Cho
Hye-Seong Jeong
In-Young Kim
Go-Woon Jung
Bon-Hwa Ku
Dong-Chan Park
Seung-Bae Moon
Hyung-Rae Cho
Khawaja Muhammad Imran Bashir
Sae Kwang Ku
Jae-Suk Choi
Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice
BMC Complementary and Alternative Medicine
Anti-osteoporotic effect
Aureobasidium pullulans
β-Glucans
Exopolymer
Textoria morbifera
author_facet Chang-Soo Cho
Hye-Seong Jeong
In-Young Kim
Go-Woon Jung
Bon-Hwa Ku
Dong-Chan Park
Seung-Bae Moon
Hyung-Rae Cho
Khawaja Muhammad Imran Bashir
Sae Kwang Ku
Jae-Suk Choi
author_sort Chang-Soo Cho
title Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice
title_short Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice
title_full Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice
title_fullStr Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice
title_full_unstemmed Anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from Aureobasidium pullulans and Textoria morbifera in ovariectomized mice
title_sort anti-osteoporotic effects of mixed compositions of extracellular polymers isolated from aureobasidium pullulans and textoria morbifera in ovariectomized mice
publisher BMC
series BMC Complementary and Alternative Medicine
issn 1472-6882
publishDate 2018-11-01
description Abstract Background Extracellular polymeric substances isolated from Aureobasidium pullulans (EAP), containing specifically 13% β-1,3/1,6-glucan, have shown various favorable bone-preserving effects. Textoria morbifera Nakai (TM) tree has been used as an ingredient in traditional medicine and tea for various pharmacological purposes. Thus, the present study was aimed to examine the synergistic anti-osteoporotic potential of mixtures containing different proportions of EAP and TM compared with that of the single formulations of each herbal extract using bilateral ovariectomized (OVX) mice, a renowned rodent model for studying human osteoporosis. Methods Thirty five days after bilateral-OVX surgery, 9 combinations of EAP:TM (ratios = 1:1, 1:3, 1:5, 1:7, 1:9, 3:1, 5:1, 7:1, 9:1) and single separate formulations of EAP or TM were supplied orally, once a day for 35 days at a final concentration of 200 mg/kg. Variations in body weight gains during the experimental periods, as well as femur weights, bone mineral density (BMD), bone strength (failure load), and mineral content (calcium [Ca] and inorganic phosphorus [IP]) following sacrifice were measured. Furthermore, histomorphometric and histological profile analyses of serum biochemical parameters (osteocalcin content and bone specific alkaline phosphatase [bALP] activity) were conducted following sacrifice. Femurs histomorphometric analyses were also conducted for bone resorption, structure and mass. The results for the mixed formulations of EAP:TM and separate formulations were compared with those of risedronate sodium (RES). Results The EAP:TM (3:1) formulation synergistically enhanced the anti-osteoporotic potential of individual EAP or TM formulations, possibly due to enhanced variety of the active ingredients. Furthermore, the effects of EAP:TM were comparable to those of RES (2.5 mg/kg) treatment. Conclusion The results of this study suggest that, the EAP:TM (3:1) combination might act as a new pharmaceutical agent and/or health functional food substance for curing osteoporosis in menopausal women.
topic Anti-osteoporotic effect
Aureobasidium pullulans
β-Glucans
Exopolymer
Textoria morbifera
url http://link.springer.com/article/10.1186/s12906-018-2362-y
work_keys_str_mv AT changsoocho antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT hyeseongjeong antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT inyoungkim antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT gowoonjung antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT bonhwaku antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT dongchanpark antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT seungbaemoon antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT hyungraecho antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT khawajamuhammadimranbashir antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT saekwangku antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
AT jaesukchoi antiosteoporoticeffectsofmixedcompositionsofextracellularpolymersisolatedfromaureobasidiumpullulansandtextoriamorbiferainovariectomizedmice
_version_ 1724940869738430464