1.Effective therapeutic targeting of tumor lineage plasticity in neuroendocrine prostate cancer by BRD4 inhibitors.
Xiong ZHANG ; Yatian YANG ; Hongye ZOU ; Yang YANG ; Xingling ZHENG ; Eva COREY ; Amina ZOUBEIDI ; Nicolas MITSIADES ; Ai-Ming YU ; Yuanpei LI ; Hong-Wu CHEN
Acta Pharmaceutica Sinica B 2025;15(3):1415-1429
Tumor lineage plasticity (LP) is an emerging hallmark of cancer progression. Through pharmacologically probing the function of epigenetic regulators in prostate cancer cells and organoids, we identified bromodomain protein BRD4 as a crucial player. Integrated ChIP-seq and RNA-seq analysis of tumors revealed, for the first time, that BRD4 directly activates hundreds of genes in the LP programs which include neurogenesis, axonogenesis, EMT and stem cells and key drivers such as POU3F2 (BRN2), ASCL1/2, NeuroD1, SOX2/9, RUNX1/2 and DLL3. Interestingly, BRD4 genome occupancy is reprogrammed by anti-AR drugs from facilitating AR function in CRPC cells to activating the LP programs and is facilitated by pioneer factor FOXA1. Significantly, we demonstrated that BRD4 inhibitor AZD5153, currently at clinical development, possesses potent activities in complete blockade of tumor growth of both de novo neuroendocrine prostate cancer (NEPC) and treatment-induced NEPC PDXs and that suppression of tumor expression of LP programs through reduction of local chromatin accessibility is the primary mechanism of action (MOA) by AZD5153. Together, our study revealed that BRD4 plays a fundamental role in direct activation of tumor LP programs and that its inhibitor AZD5153 is highly promising in effective treatment of the lethal forms of the diseases.
2.A mitochondria-targeting lipid-small molecule hybrid nanoparticle for imaging and therapy in an orthotopic glioma model.
Menghuan TANG ; Kai LIN ; Mythili RAMACHANDRAN ; Longmeng LI ; Hongye ZOU ; Huzhi ZHENG ; Zhao MA ; Yuanpei LI
Acta Pharmaceutica Sinica B 2022;12(6):2672-2682
Hybrid lipid‒nanoparticle complexes have shown attractive characteristics as drug carriers due to their integrated advantages from liposomes and nanoparticles. Here we developed a kind of lipid-small molecule hybrid nanoparticles (LPHNPs) for imaging and treatment in an orthotopic glioma model. LPHNPs were prepared by engineering the co-assembly of lipids and an amphiphilic pheophorbide a‒quinolinium conjugate (PQC), a mitochondria-targeting small molecule. Compared with the pure nanofiber self-assembled by PQC, LPHNPs not only preserve the comparable antiproliferative potency, but also possess a spherical nanostructure that allows the PQC molecules to be administrated through intravenous injection. Also, this co-assembly remarkably improved the drug-loading capacity and formulation stability against the physical encapsulation using conventional liposomes. By integrating the advantages from liposome and PQC molecule, LPHNPs have minimal system toxicity, enhanced potency of photodynamic therapy (PDT) and visualization capacities of drug biodistribution and tumor imaging. The hybrid nanoparticle demonstrates excellent curative effects to significantly prolong the survival of mice with the orthotopic glioma. The unique co-assembly of lipid and small molecule provides new potential for constructing new liposome-derived nanoformulations and improving cancer treatment.
3.Targeting castration-resistant prostate cancer with a novel ROR
Jianwei ZHENG ; Junfeng WANG ; Qian WANG ; Hongye ZOU ; Hong WANG ; Zhenhua ZHANG ; Jianghe CHEN ; Qianqian WANG ; Panxia WANG ; Yueshan ZHAO ; Jing LU ; Xiaolei ZHANG ; Songtao XIANG ; Haibin WANG ; Jinping LEI ; Hong-Wu CHEN ; Peiqing LIU ; Yonghong LIU ; Fanghai HAN ; Junjian WANG
Acta Pharmaceutica Sinica B 2020;10(12):2313-2322
Prostate cancer (PCa) patients who progress to metastatic castration-resistant PCa (mCRPC) mostly have poor outcomes due to the lack of effective therapies. Our recent study established the orphan nuclear receptor ROR

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