Neprilysin Inhibition Promotes Skeletal Growth via the CNP/NPR-B Pathway

Author:

Hakata Takuro1,Ueda Yohei1ORCID,Yamashita Takafumi2ORCID,Yamauchi Ichiro1ORCID,Kosugi Daisuke1,Sugawa Taku1,Fujita Haruka1,Okamoto Kentaro1,Fujii Toshihito1ORCID,Taura Daisuke1,Yasoda Akihiro3,Akiyama Haruhiko4,Inagaki Nobuya15ORCID

Affiliation:

1. Department of Diabetes, Endocrinology and Nutrition, Kyoto University Graduate School of Medicine , Kyoto 606-8507 , Japan

2. Metabolism and Endocrinology Division of Internal Medicine, Kishiwada City Hospital , Osaka 596-8501 , Japan

3. Clinical Research Institute, National Hospital Organization Kyoto Medical Center , Kyoto 612-8555 , Japan

4. Department of Orthopaedic Surgery, Gifu University Graduate School of Medicine   Gifu 501-1194 , Japan

5. Medical Research Institute KITANO HOSPITAL, PIIF Tazuke-kofukai , Osaka 530-8480 , Japan

Abstract

Abstract C-type natriuretic peptide (CNP) plays a crucial role in enhancing endochondral bone growth and holds promise as a therapeutic agent for impaired skeletal growth. To overcome CNP's short half-life, we explored the potential of dampening its clearance system. Neprilysin (NEP) is an endopeptidase responsible for catalyzing the degradation of CNP. Thus, we investigated the effects of NEP inhibition on skeletal growth by administering sacubitril, a NEP inhibitor, to C57BL/6 mice. Remarkably, we observed a dose-dependent skeletal overgrowth phenotype in mice treated with sacubitril. Histological analysis of the growth plate revealed a thickening of the hypertrophic and proliferative zones, mirroring the changes induced by CNP administration. The promotion of skeletal growth observed in wild-type mice treated with sacubitril was nullified by the knockout of cartilage-specific natriuretic peptide receptor B (NPR-B). Notably, sacubitril promoted skeletal growth in mice only at 3 to 4 weeks of age, a period when endogenous CNP and NEP expression was higher in the lumbar vertebrae. Additionally, sacubitril facilitated endochondral bone growth in organ culture experiments using tibial explants from fetal mice. These findings suggest that NEP inhibition significantly promotes skeletal growth via the CNP/NPR-B pathway, warranting further investigations for potential applications in people with short stature.

Funder

JSPS KAKENHI

Japan Foundation for Applied Enzymology

Publisher

The Endocrine Society

Reference58 articles.

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3. Critical roles of the guanylyl cyclase B receptor in endochondral ossification and development of female reproductive organs;Tamura;Proc Natl Acad Sci U S A,2004

4. Rats deficient C-type natriuretic peptide suffer from impaired skeletal growth without early death;Fujii;PLoS One,2018

5. Dwarfism and early death in mice lacking C-type natriuretic peptide;Chusho;Proc Natl Acad Sci U S A,2001

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