Effect of GGCX gene polymorphism on the responses of serum undercarboxylated osteocalcin and bone turnover markers after treatment with vitamin K2 (menatetrenone) among Thai postmenopausal women in Phramongkutklao Hospital
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Title Effect of GGCX gene polymorphism on the responses of serum undercarboxylated osteocalcin and bone turnover markers after treatment with vitamin K2 (menatetrenone) among Thai postmenopausal women in Phramongkutklao Hospital
Creator Thawee Songpatanasilp
Contributor Nimit Taechakraichana, Boonsong Ongphiphadhanakul
Publisher Chulalongkorn University
Publication Year 2552
Keyword Osteoporosis in women, Vitamin K2, Menopause
Abstract Objective: To evaluate the different response of serum undercarboxylated osteocalcin (ucOC) and bone turnover markers at three months after treatment with menatetrenone in Thai postmenopausal women, among differences in GGCX gene polymorphisms. Design: Prospective clinical pharmacogenetic study Method: One hundred and forty Thai postmenopausal women were enrolled to evaluate the response to 45 mg/d treatment with menatetrenone concurrently with calcium and vitamin D for 3 months. Baseline serum bone turnover markers and undercarboxylated osteocalcin (ucOC) levels were collected from all participants as well as demographic characteristics and GGCX genotyping. We evaluate the reduction from baseline of ucOC at 3 months and reduction from baseline of beta-CTx and P1NP at 1and 3 months. We compared all these parameters between different groups of GGCX genotypes (GG-group and GA+AA-group) as the main interest. Results: There are significant reduction of serum ucOC, beta-CTx and P1NP from baseline at 3 months by pair t-test and one-way repeated ANOVA analysis (p<0.001) in both GG-and GA+AA-group. But there are no significant difference when compare between genotypes (p > 0.05). There were no-serious adverse events in this study. Conclusion: Menatetrenone can effectively reduced serum ucOC as well as reduced beta- CTX and P1NP, which are the main mechanism to maintain the bone quality. GGCX polymorphism does not influence these reductions.
URL Website cuir.car.chula.ac.th
Chulalongkorn University

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