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  • Wende Deng, Ting Li
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2795-2797.
  • Mingxia Zhao, Wenjie Guo, Yuanyuan Wu, Chenxi Yang, Liang Zhong, Guoliang Deng, Yuyu Zhu, Wen Liu, Yanhong Gu, Yin Lu, Lingdong Kong, Xiangbao Meng, Qiang Xu, Yang Sun
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2810-2812.
  • Shaoqing Du, Xueping Hu, Xinyong Liu, Peng Zhan
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2801-2804.
  • Caizhi Zhao, Liping Xie, Ming-Wei Wang, Youjia Hu
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2778-2782.
  • Junlin Yu, Guobo Li
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2805-2807.
  • Wei Wang, Chunquan Sheng
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2798-2800.
  • Yizhan Zhai, Jianfeng Cai
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2808-2809.
  • Ling Lin, Zaixiang Fang, Guohao Liu, Yiwei Liu, Zhiqian Li, Dayi Pan, Yunkun Li, Hemi Kang, Xiaoding Shen, Jingyao Zhang, Qiyong Gong, Kui Luo, Jing Jing
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2746-2763.

    Ferroptosis is a form of programmed cell death characterized by overwhelmed lipid oxidation, and it has emerged as a promising strategy for cancer therapy. Enhanced ferroptosis could overcome the limitations of conventional therapeutic modalities, particularly in difficult-to-treat tumors. In this study, we developed a dual-modality therapy in nanomedicine by combining paclitaxel (PTX) chemotherapy and pyropheophorbide-a (Ppa) phototherapy. Heparin (HP) was grafted with poly(N-(2′-hydroxy) propyl methacrylamide) (pHPMA) using reversible addition–fragmentation chain transfer polymerization to form HP-pHPMA (HH), which was utilized to deliver Ppa and PTX, yielding HP-pHPMA-Ppa (HH-Ppa) and HP-pHPMA-PTX (HH-PTX), respectively. The prodrug-based combinational nanomedicine (HH-PP) was formed by co-assembly of HH-PTX and HH-Ppa. It was found that HH-PP treatment significantly disrupted lipid metabolism in triple-negative breast cancer (TNBC) cells, induced extensive lipid oxidation, and promoted ferroptosis. In vivo, HH-PP intervention achieved a tumor growth inhibition rate of 86.63% and activated adaptive immunity with an elevated CD8+ cytotoxic T cell infiltration level. This combinational nanomedicine offers a promising platform for co-delivery of multiple therapeutic agents. It exerts a promising anti-tumor effect via enhanced ferroptosis and ferroptosis-induced immune activation by disrupting lipid metabolism in TNBC cancer cells.

  • Tianyue Xu, Dan Zheng, Meixu Chen, Linlin Song, Zhihui Liu, Yan Cheng, Yujie Zhao, Liwen Huang, Yixuan Li, Zhankun Yang, Cong Li, Biao Dong, Jing Jing, Hubing Shi
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2703-2722.

    Lacking therapeutic targets highlights the crucial roles of chemotherapy and radiotherapy in the clinical management of triple-negative breast cancer (TNBC). To relieve the side effects of the chemoradiotherapy combination regimen, we design and develop a self-assembled micelle nanosystem consisting of perfluorocarbon chain-modified cisplatin prodrug. By incorporating perfluorodecalin, this nanosystem can effectively carry ozone and promote irradiation-derived reactive oxygen species (ROS) production. By leveraging the perfluorocarbon sidechain, the nanosystem exhibits efficient internalization by TNBC cells and effectively escapes from lysosomal entrapment. Under X-ray irradiation, ozone-generated ROS disrupts the intracellular redox balance, thereby facilitating the release of cisplatin in a reduction-responsive manner mediated by reduced glutathione. Moreover, oxygen derived from ozone decomposition enhances the efficacy of radiotherapy by alleviating tumor hypoxia. Notably, the combination of irradiation with ozone-loaded cisplatin prodrug nano system synergistically prompts antitumor efficacy and reduces cellular/systemic toxicity in vitro and in vivo. Furthermore, the combo regimen remodels the tumor microenvironment into an immune-favored state by triggering immunogenic cell death and relieving hypoxia, which provides a promising foundation for a combination regimen of immunotherapy. In conclusion, our nanosystem presents a novel strategy for integrating chemotherapy and radiotherapy to optimize the efficacy and safety of TNBC clinical treatment.

  • Lin-jian Wang, Jianping Ye
    Acta Pharmaceutica Sinica B. 2025, 15(5): 2791-2794.