Photoactivation of Endogenous Latent Transforming Growth Factor–β1 Directs Dental Stem Cell Differentiation for Regeneration

内生 干细胞 再生(生物学) 细胞生物学 转化生长因子 细胞分化 生物 细胞生长 生长因子 生物化学 基因 受体
作者
Praveen Arany,Andrew Cho,Tristan Hunt,Gursimran Sidhu,Kyungsup Shin,Eason Hahm,George Huang,James C. Weaver,Aaron Chen,Bonnie L. Padwa,Michael R. Hamblin,Mary Helen Barcellos‐Hoff,Ashok B. Kulkarni,David Mooney
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:6 (238): 238ra69-238ra69 被引量:268
标识
DOI:10.1126/scitranslmed.3008234
摘要

Rapid advancements in the field of stem cell biology have led to many current efforts to exploit stem cells as therapeutic agents in regenerative medicine. However, current ex vivo cell manipulations common to most regenerative approaches create a variety of technical and regulatory hurdles to their clinical translation, and even simpler approaches that use exogenous factors to differentiate tissue-resident stem cells carry significant off-target side effects. We show that non-ionizing, low-power laser (LPL) treatment can instead be used as a minimally invasive tool to activate an endogenous latent growth factor complex, transforming growth factor-β1 (TGF-β1), that subsequently differentiates host stem cells to promote tissue regeneration. LPL treatment induced reactive oxygen species (ROS) in a dose-dependent manner, which, in turn, activated latent TGF-β1 (LTGF-β1) via a specific methionine residue (at position 253 on LAP). Laser-activated TGF-β1 was capable of differentiating human dental stem cells in vitro. Further, an in vivo pulp capping model in rat teeth demonstrated significant increase in dentin regeneration after LPL treatment. These in vivo effects were abrogated in TGF-β receptor II (TGF-βRII) conditional knockout (DSPP(Cre)TGF-βRII(fl/fl)) mice or when wild-type mice were given a TGF-βRI inhibitor. These findings indicate a pivotal role for TGF-β in mediating LPL-induced dental tissue regeneration. More broadly, this work outlines a mechanistic basis for harnessing resident stem cells with a light-activated endogenous cue for clinical regenerative applications.
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