Sulfur Conversion Pathway-Dependent Production of Endogenous Hydrogen Sulfide Accelerated Trauma-Induced Heterotopic Ossification Through the Ca2+/Erk Pathway-Enhanced Aberrant Osteogenic Activity

33 Pages Posted: 2 Mar 2024

See all articles by Zhengqiang Yuan

Zhengqiang Yuan

Shanghai Jiao Tong University (SJTU) - Department of Orthopaedic Surgery

Hui Wang

affiliation not provided to SSRN

Kuangyu He

affiliation not provided to SSRN

Juehong Li

Shanghai Jiao Tong University (SJTU) - Department of Orthopaedic Surgery

Ziyang Sun

affiliation not provided to SSRN

Cunyi Fan

Shanghai Jiao Tong University (SJTU) - Department of Orthopaedic Surgery

Chao Zhou

affiliation not provided to SSRN

Haomin Cui

affiliation not provided to SSRN

Abstract

AbstractUnveiling of the mechanism involved in the occurrence and development of trauma-induced heterotopic ossification (tHO) is highly demanding due to current ineffective clinical treatment for it. Previous studies proposed that hydrogen sulfide (H2S) was vital for fate determination of stem cells, suggesting a potential role in the regulation of tHO development. In the current study, We found that expression of metabolic enzyme within sulfur conversion pathway was enhanced after tendon injury, leading to H2S accumulation within the tHO region. Increased production of endogenous H2S was shown to promote aberrant osteogenic activity of tendon-derived stem cells (TDSCs), which accelerated tHO formation. Neither inhibition of metabolic enzyme of H2S production nor directly absorption of H2S abolished osteogenic induction of TDSCs and tHO. Mechanistically, through RNA sequencing combined with rescue experiments, we demonstrated that activation of Ca2+/ERK pathway was the downstream molecular event of H2S-induced osteogenic commitment of TDSCs and tHO. For treatment strategy exploration, zine oxide nanoparticles (ZnO) as an effective H2S elimination material was validated to ideally halt the tHO formation in this study. Furthermore, in terms of chirality of nanoparticles, D-ZnO or L-ZnO nanoparticles showed superiority over R-ZnO nanoparticles in both clearing of H2S and inhibition of tHO. Our study not only revealed the mechanism of tHO through the endogenous gas signaling event from a new perspective, but also presented a applicable platform for elimination of the inordinate gas production, thus aiding the development of clinical treatment for tHO.

Keywords: Trauma-induced heterotopic ossification, Hydrogen sulfide, Sulfur metabolic enzyme, Ca2+/ERK pathway, Chirality

Suggested Citation

Yuan, Zhengqiang and Wang, Hui and He, Kuangyu and Li, Juehong and Sun, Ziyang and Fan, Cunyi and Zhou, Chao and Cui, Haomin, Sulfur Conversion Pathway-Dependent Production of Endogenous Hydrogen Sulfide Accelerated Trauma-Induced Heterotopic Ossification Through the Ca2+/Erk Pathway-Enhanced Aberrant Osteogenic Activity. Available at SSRN: https://ssrn.com/abstract=4745967 or http://dx.doi.org/10.2139/ssrn.4745967

Zhengqiang Yuan

Shanghai Jiao Tong University (SJTU) - Department of Orthopaedic Surgery ( email )

Hui Wang

affiliation not provided to SSRN ( email )

No Address Available

Kuangyu He

affiliation not provided to SSRN ( email )

No Address Available

Juehong Li

Shanghai Jiao Tong University (SJTU) - Department of Orthopaedic Surgery ( email )

Ziyang Sun

affiliation not provided to SSRN ( email )

No Address Available

Cunyi Fan (Contact Author)

Shanghai Jiao Tong University (SJTU) - Department of Orthopaedic Surgery ( email )

Chao Zhou

affiliation not provided to SSRN ( email )

No Address Available

Haomin Cui

affiliation not provided to SSRN ( email )

No Address Available

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