Strontium-Incorporated Carbon Nitride Nanosheets Modulate Intracellular Tension for Reinforced Bone Regeneration.

Liu, Lijun; Zhang, Zhiying; Aimaijiang, Maierhaba; Liu, Manxuan; Huang, Lei; Pan, Ziyi; Liu, Shuchen; Qi, Shuangyan et al. · Nano Lett · 2022

basic_science · Level V

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Abstract

Strontium-containing agents have been demonstrated to elicit both bone anabolic and antiosteoporotic effects, showing great potential for the treatment of bone loss. However, an increased incidence of strontium-induced side effects restricts their clinical applications. Herein, oxidized carbon nitride nanosheets (CN) are delicately used to incorporate Sr<sup>2+</sup> for the first time to achieve high osteogenic efficacy. The lamellar structure and enriched nitrogen species of CN provide them with a high surface area-to-volume ratio and abundant anchoring sites for Sr<sup>2+</sup> incorporation. Importantly, Sr<sup>2+</sup>-incorporated CN (CNS) could synergistically promote osteoblast differentiation and bone regeneration at a single, very low Sr<sup>2+</sup> dose. Mechanically, CNS could activate the FAK/RhoA signaling pathway to modulate the intracellular tension that stimulates osteoblasts differentiation. The present study will provide a new paradigm to enhance the efficacy of osteogenic metal ions by using lamellar nanocarriers.

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