Circulating MiRNA-21-enriched extracellular vesicles promote bone remodeling in traumatic brain injury patients

创伤性脑损伤 旁分泌信号 基因敲除 微泡 医学 细胞外小泡 骨愈合 胞外囊泡 细胞生物学 成骨细胞 癌症研究 骨重建 外体 神经炎症 小RNA 体外 生物信息学 内科学 炎症 生物 外科 基因 受体 精神科 生物化学
作者
Ze Lin,Yuan Xiong,Yun Sun,Ruiyin Zeng,Hang Xue,Yiqiang Hu,Lang Chen,Guodong Liu,Adriana C. Panayi,Wu Zhou,Faqi Cao,Fei Gao,Bobin Mi,Guohui Liu
出处
期刊:Experimental and Molecular Medicine [Springer Nature]
卷期号:55 (3): 587-596 被引量:16
标识
DOI:10.1038/s12276-023-00956-8
摘要

Abstract Fracture combined with traumatic brain injury (TBI) is one of the most common and serious types of compound trauma in the clinic and is characterized by dysfunction of cellular communication in injured organs. Our prior studies found that TBI was capable of enhancing fracture healing in a paracrine manner. Exosomes (Exos), as small extracellular vesicles, are important paracrine vehicles for noncell therapy. However, whether circulating Exos derived from TBI patients (TBI-Exos) regulate the prohealing effects of fractures remains unclear. Thus, the present study aimed to explore the biological effects of TBI-Exos on fracture healing and reveal the potential molecular mechanism. TBI-Exos were isolated by ultracentrifugation, and the enriched miR-21-5 p was identified by qRT‒PCR analysis. The beneficial effects of TBI-Exos on osteoblastic differentiation and bone remodeling were determined by a series of in vitro assays. Bioinformatics analyses were conducted to identify the potential downstream mechanisms of the regulatory effect of TBI-Exos on osteoblasts. Furthermore, the role of the potential signaling pathway of TBI-Exos in mediating the osteoblastic activity of osteoblasts was assessed. Subsequently, a murine fracture model was established, and the effect of TBI-Exos on bone modeling was demonstrated in vivo. TBI-Exos can be internalized by osteoblasts, and in vitro, suppression of SMAD7 promoted osteogenic differentiation, whereas knockdown of miR-21-5 p in TBI-Exos strongly inhibited this bone-beneficial effect. Similarly, our results confirmed that preinjection of TBI-Exos led to enhanced bone formation, whereas knockdown of exosomal miR-21-5 p substantially impaired this bone-beneficial effect in vivo.
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