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Pharmacological inhibition of gut-derived serotonin synthesis is a potential bone anabolic treatment for osteoporosis.


ABSTRACT: Osteoporosis is a disease of low bone mass most often caused by an increase in bone resorption that is not sufficiently compensated for by a corresponding increase in bone formation. As gut-derived serotonin (GDS) inhibits bone formation, we asked whether hampering its biosynthesis could treat osteoporosis through an anabolic mechanism (that is, by increasing bone formation). We synthesized and used LP533401, a small molecule inhibitor of tryptophan hydroxylase-1 (Tph-1), the initial enzyme in GDS biosynthesis. Oral administration of this small molecule once daily for up to six weeks acts prophylactically or therapeutically, in a dose-dependent manner, to treat osteoporosis in ovariectomized rodents because of an isolated increase in bone formation. These results provide a proof of principle that inhibiting GDS biosynthesis could become a new anabolic treatment for osteoporosis.

SUBMITTER: Yadav VK 

PROVIDER: S-EPMC2836724 | biostudies-literature | 2010 Mar

REPOSITORIES: biostudies-literature

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Pharmacological inhibition of gut-derived serotonin synthesis is a potential bone anabolic treatment for osteoporosis.

Yadav Vijay K VK   Balaji Santhanam S   Suresh Padmanaban S PS   Liu X Sherry XS   Lu Xin X   Li Zhishan Z   Guo X Edward XE   Mann J John JJ   Balapure Anil K AK   Gershon Michael D MD   Medhamurthy Rudraiah R   Vidal Marc M   Karsenty Gerard G   Ducy Patricia P  

Nature medicine 20100207 3


Osteoporosis is a disease of low bone mass most often caused by an increase in bone resorption that is not sufficiently compensated for by a corresponding increase in bone formation. As gut-derived serotonin (GDS) inhibits bone formation, we asked whether hampering its biosynthesis could treat osteoporosis through an anabolic mechanism (that is, by increasing bone formation). We synthesized and used LP533401, a small molecule inhibitor of tryptophan hydroxylase-1 (Tph-1), the initial enzyme in G  ...[more]

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