Single-Component Dual-Functional Autoboost Strategy by Dual Photodynamic and Cyclooxygenase-2 Inhibition for Lung Cancer and Spinal Metastasis.
Ben WangZhen-Ni LuMeng-Xiong SongXiao-Wen HeZhi-Chao HuHai-Feng LiangHong-Wei LuQing ChenBing LiangTao YiPeng WeiLi-Bo JiangJian DongPublished in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2024)
Coloading adjuvant drugs or biomacromolecules with photosensitizers into nanoparticles to enhance the efficiency of photodynamic therapy (PDT) is a common strategy. However, it is difficult to load positively charged photosensitizers and negatively charged adjuvants into the same nanomaterial and further regulate drug release simultaneously. Herein, a single-component dual-functional prodrug strategy is reported for tumor treatment specifically activated by tumor microenvironment (TME)-generated HOCl. A representative prodrug (DHU-CBA2) is constructed using indomethacin grafted with methylene blue (MB). DHU-CBA2 exhibited high sensitivity toward HOCl and achieved simultaneous release of dual drugs in vitro and in vivo. DHU-CBA2 shows effective antitumor activity against lung cancer and spinal metastases via PDT and cyclooxygenase-2 (COX-2) inhibition. Mechanistically, PDT induces immunogenic cell death but stimulates the gene encoding COX-2. Downstream prostaglandins E 2 and Indoleamine 2,3 dioxygenase 1 (IDO1) mediate immune escape in the TME, which is rescued by the simultaneous release of indomethacin. DHU-CBA2 promotes infiltration and function of CD8 + T cells, thus inducing a robust antitumor immune response. This work provides an autoboost strategy for a single-component dual-functional prodrug activated by TME-specific HOCl, thereby achieving favorable tumor treatment via the synergistic therapy of PDT and a COX-2 inhibitor.
Keyphrases
- photodynamic therapy
- drug release
- cancer therapy
- fluorescence imaging
- cell death
- immune response
- spinal cord
- stem cells
- spinal cord injury
- dendritic cells
- nitric oxide
- transcription factor
- bone marrow
- wastewater treatment
- cross sectional
- copy number
- nitric oxide synthase
- cell therapy
- dna methylation
- genome wide
- replacement therapy