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Relationships between vitamin D and paraspinal muscle: human data and experimental rat model analysis.

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Author(s)
Woo-Seok BangDong-Hyun Leeyoung-Tae KimDae-Chul ChoJoo-Kyung SungIn-Bo HanDu-Hwan KimBrian K. KwonChi Heon KimKi-Su ParkMan-Kyu ParkSung-Young SeoYe-Jin Seo
Keimyung Author(s)
Kim, Du Hwan
Department
Dept. of Rehabilitation Medicine (재활의학)
Journal Title
Spine Journal
Issued Date
2018
Volume
18
Issue
6
Keyword
Intramyonuclear vitamin D receptorParaspinal muscleSpinal diseaseVitamin DVitamin D deficiencyVitamin D replacement
Abstract
BACKGROUND CONTEXT:

Vitamin D deficiency (VDD) has been closely linked with skeletal muscle atrophy in many studies, but to date no study has focused on the paraspinal muscle.

PURPOSE:

To verify paraspinal muscle changes according to serum vitamin D level.

STUDY DESIGN:

A cross-sectional study of patients who visited our hospital and an in vivo animal study.

METHODS:

We measured serum vitamin D concentration in 91 elderly women and stratified them according to their vitamin D status in three groups, control, vitamin D insufficiency, and VDD, and obtained magnetic resonance imaging data of the lumbar spine and evaluated the quality and quantity of the paraspinal muscles. Additionally, we designed experimental rat models for VDD and VDD replacement. Then, we analyzed the microcomputed tomography data and histologic data of paraspinal muscles, and the histologic data and reverse transcription-quantitative polymerase chain reaction data of intramyonuclear vitamin D receptor (VDR) in paraspinal muscle through comparison with control rats (n=25, each group). This work was supported by a Biomedical Research Institute grant ($40,000), Kyungpook National University Hospital (2014).

RESULTS:

In the human studies, a significant decrease was noted in the overall paraspinal muscularity (p<.05) and increase in fatty infiltration in the VDD group as compared with the other groups (p<.05). In the rat experiment, a decrease was noted in paraspinal muscle fiber size and VDR concentration and VDR gene expression level, and total muscle volume of the VDD rats as compared with the control rats (p<.05). Vitamin D replacement after VDD could partially restore the muscle volume, muscle fiber size, and intramyonuclear VDR concentration levels (p<.05) of the paraspinal muscles.

CONCLUSIONS:

VDD induces paraspinal muscle atrophy and decreases the intramyonuclear VDR concentration and VDR gene expression level in these muscles. Vitamin D replacement contributes to the recovery from atrophy and restoration of intramyonuclear VDR concentration in VDD status.
Keimyung Author(s)(Kor)
김두환
Publisher
School of Medicine (의과대학)
Citation
Woo-Seok Bang et al. (2018). Relationships between vitamin D and paraspinal muscle: human data and experimental rat model analysis. Spine Journal, 18(6), 1053–1061. doi: 10.1016/j.spinee.2018.01.007
Type
Article
ISSN
1529-9430
Source
https://linkinghub.elsevier.com/retrieve/pii/S1529-9430(18)30009-3
DOI
10.1016/j.spinee.2018.01.007
URI
https://kumel.medlib.dsmc.or.kr/handle/2015.oak/41437
Appears in Collections:
1. School of Medicine (의과대학) > Dept. of Rehabilitation Medicine (재활의학)
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