Metabotissugenic citrate biomaterials orchestrate bone regeneration via citrate-mediated signaling pathways.

代谢组织生成柠檬酸盐生物材料通过柠檬酸盐介导的信号通路调控骨再生

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作者:Xu Hui, Tan Xinyu, Gerhard Ethan, Zhang Hao, Ray Rohitraj, Wang Yuqi, Kothapalli Sri-Rajasekhar, Rizk Elias B, Armstrong April D, Yan Su, Yang Jian
Bone regeneration requires coordinated anabolic and catabolic signaling, yet the interplay between mammalian target of rapamycin complex 1 (mTORC1) and adenosine monophosphate-activated protein kinase (AMPK) pathways remains unclear. This study reveals that citrate, glutamine, and magnesium synergistically activate both pathways via calcium/calmodulin-dependent protein kinase kinase 2 (CaMKK2)- and protein kinase B (Akt)-dependent signaling, bypassing the traditional adenosine monophosphate (AMP)/adenosine triphosphate (ATP) sensing mechanism. This dual activation supports sustained energy metabolism during osteogenesis and challenges the canonical antagonism between mTORC1 and AMPK. We developed CitraBoneQMg, a citrate-based biomaterial incorporating these components via one-pot synthesis. CitraBoneQMg provides sustained release, photoluminescent and photoacoustic imaging capabilities, and tunable mechanical properties. In vitro, it promotes osteogenesis by enhancing alkaline phosphatase (ALP) activity, osteogenic gene expression, and calcium deposition. In vivo, it accelerates bone regeneration in a rat calvarial defect model while promoting anti-inflammatory and neuroregenerative responses. We define this integrated effect as "metabotissugenesis," offering a metabolically optimized approach to orthopedic biomaterial design.

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