Ahmad Mashaal, Sun Yandi, Jia Xueyao, Li Jingjia, Zhang Lihong, Yang Ze, Lin Yindan, Zhang Xueyun, Khan Zara Ahmad, Qian Jin, Luo Yan
Department of Biochemistry and Cancer Institute of the Second Affiliated Hospital, Key Laboratory of Cancer Prevention and Intervention of China National MOE, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310058, PR China.
State Key Laboratory of Oncogenes and Related Genes, Institute for Personalized Medicine, School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai 200240, PR China.
Genes Dis. 2021 Mar 22;9(5):1345-1356. doi: 10.1016/j.gendis.2021.03.003. eCollection 2022 Sep.
Inflammatory, proliferative and remodeling phases constitute a cutaneous wound healing program. Therapeutic applications and medication are available; however, they commonly are comprised of fortified preservatives that might prolong the healing process. Chick early amniotic fluids (ceAF) contain native therapeutic factors with balanced chemokines, cytokines and growth-related factors; their origins in principle dictate no existence of harmful agents that would otherwise hamper embryo development. Instead, they possess a spectrum of molecules driving expeditious mitotic divisions and possibly exerting other functions. Employing both and models, we examined ceAF's therapeutic potentials in wound healing and found intriguing involvement of transient senescence, known to be intimately intermingled with Senescence Associated Secretory Phenotypes (SASP) that function in addition to or in conjunction with ceAF to facilitate wound healing. In our cutaneous wound healing models, a low dose of ceAF exhibited the best efficacies; however, higher doses attenuated the wound healing presumably by inducing p16 expression over a threshold. Our studies thus link an INK4/ARF locus-mediated signaling cascade to cutaneous wound healing, suggesting therapeutic potentials of ceAF exerting functions likely by driving transient senescence, expediting cellular proliferation, migration, and describing a homeostatic and balanced dosage strategy in medical intervention.
炎症、增殖和重塑阶段构成了皮肤伤口愈合程序。有多种治疗方法和药物可供使用;然而,它们通常含有强化防腐剂,这可能会延长愈合过程。鸡早期羊水(ceAF)含有天然治疗因子,其趋化因子、细胞因子和生长相关因子保持平衡;其来源原则上表明不存在会妨碍胚胎发育的有害物质。相反,它们拥有一系列驱动快速有丝分裂的分子,并可能发挥其他功能。利用两种模型,我们研究了ceAF在伤口愈合中的治疗潜力,发现短暂衰老与之密切相关,已知短暂衰老与衰老相关分泌表型(SASP)密切相关,SASP除了与ceAF协同作用外,还能促进伤口愈合。在我们的皮肤伤口愈合模型中,低剂量的ceAF表现出最佳疗效;然而,高剂量可能通过诱导p16表达超过阈值而减弱伤口愈合。因此,我们的研究将INK4/ARF基因座介导的信号级联与皮肤伤口愈合联系起来,表明ceAF的治疗潜力可能是通过驱动短暂衰老、加速细胞增殖和迁移来发挥作用,并描述了医疗干预中的一种稳态和平衡剂量策略。