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MYC Oncogene: A Druggable Target for Treating Cancers with Natural Products

Aging and Disease, ISSN: 2152-5250, Vol: 15, Issue: 2, Page: 640-697
2024
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Most Recent News

New Findings from University of Macau in the Area of Cancer Reported (Myc Oncogene: a Druggable Target for Treating Cancers With Natural Products)

2023 SEP 22 (NewsRx) -- By a News Reporter-Staff News Editor at Clinical Trials Daily -- A new study on Cancer is now available. According

Review Description

Various diseases, including cancers, age-associated disorders, and acute liver failure, have been linked to the oncogene, MYC. Animal testing and clinical trials have shown that sustained tumor volume reduction can be achieved when MYC is inactivated, and different combinations of therapeutic agents including MYC inhibitors are currently being developed. In this review, we first provide a summary of the multiple biological functions of the MYC oncoprotein in cancer treatment, highlighting that the equilibrium points of the MYC/MAX, MIZ1/MYC/MAX, and MAD (MNT)/MAX complexes have further potential in cancer treatment that could be used to restrain MYC oncogene expression and its functions in tumorigenesis. We also discuss the multifunctional capacity of MYC in various cellular cancer processes, including its influences on immune response, metabolism, cell cycle, apoptosis, autophagy, pyroptosis, metastasis, angiogenesis, multidrug resistance, and intestinal flora. Moreover, we summarize the MYC therapy patent landscape and emphasize the potential of MYC as a druggable target, using herbal medicine modulators. Finally, we describe pending challenges and future perspectives in biomedical research, involving the development of therapeutic approaches to modulate MYC or its targeted genes. Patients with cancers driven by MYC signaling may benefit from therapies targeting these pathways, which could delay cancerous growth and recover antitumor immune responses.

Bibliographic Details

Chan, Ka Iong; Zhang, Siyuan; Li, Guodong; Xu, Yida; Cui, Liao; Wang, Yitao; Su, Huanxing; Tan, Wen; Zhong, Zhangfeng

Aging and Disease

Medicine; Biochemistry, Genetics and Molecular Biology

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