• 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.
More