Phenothiazine-Driven Autophagic Response in Macrophages as an Anti-cutaneous Tuberculosis Approach
Siqi Lin, Qianqian Zhang, Sijia Tan, Liang Lou, Ruixian Chen, Bojie Lin, Juan Liu, Daina Zhao, Yanguang Cong, Liqian Gao, Qicai Xiao, Fen YangAbstract
Cutaneous tuberculosis (CTB), caused by Mycobacterium tuberculosis (Mtb) infection of the skin, remains a global health burden, underscoring the urgent need for more effective drugs and therapeutic strategies. In this study, we discovered a phenothiazine-based derivative, pyridine-embedded phenothiazinium (PEP), as a promising anti-cutaneous tuberculosis agent with potent efficacy both in vitro and in vivo. Upon light illumination, PEP produces abundant reactive oxygen species (ROS), including type I and type II species, enabling direct mycobacterial killing. Beyond its photodynamic bactericidal activity, PEP also functions as a host-directed therapeutic agent by suppressing mTOR signaling and subsequently inducing autophagy in infected host cells. This dual mechanism synergistically enhances intracellular Mtb clearance, integrating ROS-mediated eradication with autophagy-dependent bacterial elimination. Notably, PEP markedly reduces bacterial burden in a murine CTB model and mitigates infection-associated skin pathology. Collectively, our findings unveil the potential of PEP as a promising dual-action therapeutic approach for the efficient treatment of CTB.