Exploring molecular targets in cancer: Unveiling the anticancer potential of Paeoniflorin through a comprehensive analysis of diverse signaling pathways and recent advances

Kounser Jan, Neelofar Hassan, Antonisamy James, Ishraq Hussain, S. Rashid
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Abstract

Tumors have posed significant threats to human health for over 250 years, emerging as the foremost cause of death. While chemotherapeutic drugs are effective in treating tumors, their side effects can sometimes be challenging to manage during therapy. Nonetheless, there is growing interest in exploring natural compounds as alternatives, which potentially achieve therapeutic outcomes comparable to conventional chemotherapeutics with fewer adverse effects. Paeoniflorin (PF), a monoterpene glycoside derived from the root of Paeonia lactiflora, has garnered significant attention lately due to its promising anti-cancer properties. This review offers an updated outline of the molecular mechanisms underlying PF’s anti-tumor function, with a focus on its modulation of various signaling pathways. PF exerts its anti-tumor activity by regulating crucial cellular processes including apoptosis, angiogenesis, proliferation, and metastasis. We explored the multifaceted impact of PF while modulating through signaling pathways, encompassing nuclear factor kappa B, NOTCH, caspase cascade, transforming growth factor-β, NEDD4, P53/14-3-3, STAT 3, MAPK, MMP-9, and SKP2 signaling pathways, highlighting its versatility in targeting diverse malignancies. Furthermore, we discuss future research directions aimed at exploring innovative and targeted cancer therapies facilitated by PF.
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探索癌症分子靶点:通过全面分析各种信号通路和最新进展揭示芍药苷的抗癌潜力
250 多年来,肿瘤一直对人类健康构成重大威胁,是导致死亡的首要原因。虽然化疗药物能有效治疗肿瘤,但在治疗过程中,其副作用有时难以控制。尽管如此,人们对探索天然化合物替代品的兴趣与日俱增,因为天然化合物有可能达到与传统化疗药物相当的治疗效果,而且不良反应较少。芍药苷(PF)是一种从芍药根中提取的单萜烯苷,因其具有良好的抗癌特性,近来备受关注。本综述概述了 PF 抗肿瘤功能的最新分子机制,重点关注其对各种信号通路的调节。PF 通过调节包括凋亡、血管生成、增殖和转移在内的关键细胞过程来发挥其抗肿瘤活性。我们探讨了 PF 在通过信号通路(包括核因子卡巴 B、NOTCH、caspase 级联、转化生长因子-β、NEDD4、P53/14-3-3、STAT 3、MAPK、MMP-9 和 SKP2 信号通路)进行调节时产生的多方面影响,突出了它在靶向各种恶性肿瘤方面的多功能性。此外,我们还讨论了未来的研究方向,旨在探索由 PF 促进的创新性靶向癌症疗法。
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