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Review
. 2024 Sep;38(9):4353-4385.
doi: 10.1002/ptr.8283. Epub 2024 Jul 3.

Phytochemical-mediated modulation of autophagy and endoplasmic reticulum stress as a cancer therapeutic approach

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Review

Phytochemical-mediated modulation of autophagy and endoplasmic reticulum stress as a cancer therapeutic approach

Mazoun Al Azzani et al. Phytother Res. 2024 Sep.

Abstract

Autophagy and endoplasmic reticulum (ER) stress are conserved processes that generally promote survival, but can induce cell death when physiological thresholds are crossed. The pro-survival aspects of these processes are exploited by cancer cells for tumor development and progression. Therefore, anticancer drugs targeting autophagy or ER stress to induce cell death and/or block the pro-survival aspects are being investigated extensively. Consistently, several phytochemicals have been reported to exert their anticancer effects by modulating autophagy and/or ER stress. Various phytochemicals (e.g., celastrol, curcumin, emodin, resveratrol, among others) activate the unfolded protein response to induce ER stress-mediated apoptosis through different pathways. Similarly, various phytochemicals induce autophagy through different mechanisms (namely mechanistic target of Rapamycin [mTOR] inhibition). However, phytochemical-induced autophagy can function either as a cytoprotective mechanism or as programmed cell death type II. Interestingly, at times, the same phytochemical (e.g., 6-gingerol, emodin, shikonin, among others) can induce cytoprotective autophagy or programmed cell death type II depending on cellular contexts, such as cancer type. Although there is well-documented mechanistic interplay between autophagy and ER stress, only a one-way modulation was noted with some phytochemicals (carnosol, capsaicin, cryptotanshinone, guangsangon E, kaempferol, and δ-tocotrienol): ER stress-dependent autophagy. Plant extracts are sources of potent phytochemicals and while numerous phytochemicals have been investigated in preclinical and clinical studies, the search for novel phytochemicals with anticancer effects is ongoing from plant extracts used in traditional medicine (e.g., Origanum majorana). Nonetheless, the clinical translation of phytochemicals, a promising avenue for cancer therapeutics, is hindered by several limitations that need to be addressed in future studies.

Keywords: ER stress; anticancer drugs; autophagy; phytochemicals; plant extracts; unfolded protein response.

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REFERENCES

    1. Abu, N., Ho, W. Y., Yeap, S. K., Akhtar, M. N., Abdullah, M. P., Omar, A. R., & Alitheen, N. B. (2013). The flavokawains: Uprising medicinal chalcones. Cancer Cell International, 13(1), 102. https://doi.org/10.1186/1475-2867-13-102
    1. Adetunji, T. L., Olawale, F., Olisah, C., Adetunji, A. E., & Aremu, A. O. (2022). Capsaicin: A two‐decade systematic review of global research output and recent advances against human cancer. Frontiers in Oncology, 12, 908487. https://doi.org/10.3389/fonc.2022.908487
    1. Afolabi, S. O., Olorundare, O. E., Babatunde, A., Albrecht, R. M., Koketsu, M., Syed, D. N., & Mukhtar, H. (2019). Polyalthia longifolia extract triggers ER stress in prostate cancer cells concomitant with induction of apoptosis: Insights from in vitro and in vivo studies. Oxidative Medicine and Cellular Longevity, 2019, 1–14. https://doi.org/10.1155/2019/6726312
    1. Akin, D., Wang, S. K., Habibzadegah‐Tari, P., Law, B., Ostrov, D., Li, M., Yin, X.‐M., Kim, J.‐S., Horenstein, N., & Dunn, W. A. (2014). A novel ATG4B antagonist inhibits autophagy and has a negative impact on osteosarcoma tumors. Autophagy, 10(11), 2021–2035. https://doi.org/10.4161/auto.32229
    1. Akkoç, Y., Berrak, Ö., Arısan, E. D., Obakan, P., Çoker‐Gürkan, A., & Palavan‐Ünsal, N. (2015). Inhibition of PI3K signaling triggered apoptotic potential of curcumin which is hindered by Bcl‐2 through activation of autophagy in MCF‐7 cells. Biomedicine & Pharmacotherapy, 71, 161–171. https://doi.org/10.1016/j.biopha.2015.02.029

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