Cell and Molecular Biology Laboratory, Department of Zoology, Cotton University, Pan Bazar, Guwahati, Assam 781001, India.
Cancer Biology Laboratory and DBT-AIST International Center for Translational and Environmental Research (DAICENTER), Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Assam 781039, India.
Life Sci. 2021 Feb 15;267:118814. doi: 10.1016/j.lfs.2020.118814. Epub 2020 Dec 30.
Despite the remarkable advances made in the diagnosis and treatment of cancer during the past couple of decades, it remains the second largest cause of mortality in the world, killing approximately 9.6 million people annually. The major challenges in the treatment of the advanced stage of this disease are the development of chemoresistance, severe adverse effects of the drugs, and high treatment cost. Therefore, the development of drugs that are safe, efficacious, and cost-effective remains a 'Holy Grail' in cancer research. However, the research over the past four decades shed light on the cancer-preventive and therapeutic potential of natural products and their underlying mechanism of action. Apigenin is one such compound, which is known to be safe and has significant potential in the prevention and therapy of this disease.
To assess the literature available on the potential of apigenin and its analogs in modulating the key molecular targets leading to the prevention and treatment of different types of cancer.
A comprehensive literature search has been carried out on PubMed for obtaining information related to the sources and analogs, chemistry and biosynthesis, physicochemical properties, biological activities, bioavailability and toxicity of apigenin.
The literature search resulted in many in vitro, in vivo and a few cohort studies that evidenced the effectiveness of apigenin and its analogs in modulating important molecular targets and signaling pathways such as PI3K/AKT/mTOR, JAK/STAT, NF-κB, MAPK/ERK, Wnt/β-catenin, etc., which play a crucial role in the development and progression of cancer. In addition, apigenin was also shown to inhibit chemoresistance and radioresistance and make cancer cells sensitive to these agents. Reports have further revealed the safety of the compound and the adaptation of nanotechnological approaches for improving its bioavailability.
Hence, the present review recapitulates the properties of apigenin and its pharmacological activities against different types of cancer, which warrant further investigation in clinical settings.
尽管在过去几十年中,癌症的诊断和治疗取得了显著进展,但它仍是全球第二大死亡原因,每年导致约 960 万人死亡。治疗这种疾病晚期的主要挑战是化学耐药性的发展、药物的严重不良反应以及高昂的治疗费用。因此,开发安全、有效且具有成本效益的药物仍然是癌症研究的“圣杯”。然而,过去四十年的研究揭示了天然产物在预防和治疗癌症方面的潜力及其作用机制。芹菜素就是这样一种化合物,它被认为是安全的,并且在预防和治疗这种疾病方面具有很大的潜力。
评估有关芹菜素及其类似物在调节导致预防和治疗不同类型癌症的关键分子靶标方面的潜力的现有文献。
对 PubMed 进行了全面的文献检索,以获取有关芹菜素的来源和类似物、化学和生物合成、物理化学性质、生物活性、生物利用度和毒性的信息。
文献检索产生了许多体外、体内和少数队列研究,这些研究证明了芹菜素及其类似物在调节重要分子靶标和信号通路方面的有效性,如 PI3K/AKT/mTOR、JAK/STAT、NF-κB、MAPK/ERK、Wnt/β-catenin 等,这些靶标和信号通路在癌症的发展和进展中起着至关重要的作用。此外,芹菜素还被证明可以抑制化学耐药性和放射耐药性,并使癌细胞对这些药物敏感。报告还进一步揭示了该化合物的安全性,并采用纳米技术方法来提高其生物利用度。
因此,本综述总结了芹菜素的特性及其对不同类型癌症的药理活性,这为在临床环境中进一步研究提供了依据。