靶向溶酶体作为癌症治疗靶点。

Biyu Liu, Chengsheng Yang, Jiayi Liu, Minzhi Peng, Junquan Mao, Sanyuan Tang, Weiguo Huang
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引用次数: 0

摘要

溶酶体是细胞内重要的细胞器,参与降解代谢、维持体内平衡、调节细胞存活和程序性死亡,并在免疫中发挥重要作用。一些研究表明,溶酶体与肿瘤的发展密切相关。肿瘤细胞内溶酶体的大小和活性增加,以适应快速增殖。癌细胞通过精确调节溶酶体的数量、组成和功能活性,为其不受限制的生长和增殖提供了强有力的支持,也为癌细胞的生存、迁移、侵袭、转移扩散等恶性行为创造了有利条件。溶酶体在肿瘤进展中起着重要的作用,近年来,通过干扰溶酶体的功能或调节相关信号通路来抑制肿瘤已成为抗癌策略的重要靶点。目前的抗癌策略包括以下五个方面:(1)靶向肿瘤细胞能量代谢和溶酶体抑制生长;(2)抑制溶酶体组蛋白蛋白酶阻断降解代谢;(3)破坏溶酶体膜的稳定性,引发肿瘤细胞死亡;(4)调节溶酶体钙信号,影响肿瘤细胞功能;(5)干扰mTOR信号通路抑制肿瘤生长和增殖。这些溶酶体靶向抗癌策略为开发新的抗癌药物和治疗方法提供了广阔的前景和潜力,有望为癌症患者带来更有效、更安全的治疗选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Targeting of Lysosomes as a Therapeutic Target in Cancer.

Lysosomes are important intracellular organelles involved in degradation metabolism, maintenance of homeostasis, cell survival and programmed death regulation, and play an important role in immunity. Some studies have shown that lysosomes are closely linked to tumor development. Lysosomes in tumor cells increase in size and activity to adapt to rapid proliferation. Cancer cells provide strong support for their unrestricted growth and proliferation by precisely regulating the number, composition and functional activities of lysosomes and also create favorable conditions for malignant behaviors such as survival, migration, invasion, and metastatic spread of cancer cells. Lysosomes play a central role in tumor progression, and in recent years, lysosomes have become an important target for anticancer strategies aimed at interfering with their function or modulating related signaling pathways to inhibit tumors. Current anti-cancer strategies include the following five aspects: (1) targeting tumor cell energy metabolism and lysosomes to inhibit growth; (2) inhibiting lysosomal histone proteases to block degradation metabolism; (3) destabilizing lysosomal membranes to trigger tumor cell death; (4) modulating lysosomal calcium signaling to affect tumor cell function; and (5) interfering with the mTOR signaling pathway to inhibit tumor growth and proliferation. These lysosome-targeted anticancer strategies offer broad prospects and potential for the development of novel anticancer drugs and therapies and are expected to bring more effective and safer therapeutic options for cancer patients.

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