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Deciphering the modulatory role of apigenin targeting oncogenic pathways in human cancers

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CHEMICAL BIOLOGY & DRUG DESIGN
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WILEY
DOI: 10.1111/cbdd.14206

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apigenin; bioavailability; cancer therapeutics; cell signaling pathways; flavonoid

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Cancer, a complex malignancy controlled by various pathways, has prompted growing interest in natural extracts for cancer treatment due to their reduced side effects. Apigenin, a flavonoid derived from plants, has shown potential as an anticancer agent in experimental and biological studies. It can induce cell growth arrest and apoptosis in a wide range of human tumors. This review focuses on summarizing the modulation of oncogenic pathways by apigenin, which could lead to the development of alternative therapies for various cancers.
Cancer is a complicated malignancy controlled by numerous intrinsic and extrinsic pathways. There has been a significant increase in interest in recent years in the elucidation of cancer treatments based on natural extracts that have fewer side effects. Numerous natural product-derived chemicals have been investigated for their anticancer effects in the search for an efficient chemotherapeutic method. Therefore, the rationale behind this review is to provide a detailed insights about the anticancerous potential of apigenin via modulating numerous cell signaling pathways. An ingestible plant-derived flavonoid called apigenin has been linked to numerous anticancerous potential in numerous experimental and biological studies. Apigenin has been reported to induce cell growth arrest and apoptotic induction by modulating multiple cell signaling pathways in a wider range of human tumors including those of the breast, lung, liver, skin, blood, colon, prostate, pancreatic, cervical, oral, and stomach. Oncogenic protein networks, abnormal cell signaling, and modulation of the apoptotic machinery are only a few examples of diverse molecular interactions and processes that have not yet been thoroughly addressed by scientific research. Thus, keeping this fact in mind, we tried to focus our review towards summarizing the apigenin-mediated modulation of oncogenic pathways in various malignancies that can be further utilized to develop a potent therapeutic alternative for the treatment of various cancers.

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