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苯甲酸及其合成衍生物在缓解癌症方面的潜在作用:最新综述。

Potential Role of Benzoic Acid and its Synthetic Derivatives to Alleviate Cancer: An Up-to-Date Review.

作者信息

Kumar Arvind, Koya Kamal Yoonus Kunju Thajuddin, Mishra Arun K, Singh Mhaveer, Singh Harpreet, Kaushik Niranjan, Mishra Amrita

机构信息

Drug Design Laboratory, School of Pharmaceutical Sciences, IFTM University, Moradabad, 244002, Uttar Pradesh, India.

Department of Pharmacognosy, College of Pharmacy, King Khalid University, Abha 611441, Saudi Arabia.

出版信息

Curr Drug Discov Technol. 2025;22(4):e15701638311865. doi: 10.2174/0115701638311865240904054111.

Abstract

Unregulated cell division is one of the main causes of cancer. These cancerous cells negatively impact nearby healthy cells. Cancer can occur anywhere in the body. Normal cell division occurs when cells grow, reproduce, and divide as the body needs. As a normal cascade of cell growth and division, when the cells get damaged, they undergo death, and normal cells develop. However, sometimes, this process is not followed, and abnormal or damaged cells start to grow and multiply several times more than normal. This particular process may form the basis of cancer. There is a research gap in terms of identifying personalized synthetic anticancer therapy, which may be based on individual patient characteristics with an aim to optimize treatment efficacy and minimize adverse effects. While searching for new bioactive compounds, it has been observed that organic molecules with benzoic acid (BA) moiety possess significant anticancer potential. Several works of literature reported the use of BA from natural or synthetic sources to synthesize bioactive chemicals. It has been observed that several natural products also contain BA moiety, and the presence of this moiety is considered responsible for several important biological activities. Therefore, in order to chemically synthesize a wide variety of potent biologically active compounds, benzoic acid as a basic moiety in the form of a scaffold can be employed. Other synthetic compounds with BA scaffolds include furosemide, tetracaine, and bumetanide. The current article aims to focus on past and present work done on BA derivatives and to emphasize the molecular pathways involved in cancer treatment. The future prospects for research in this area are encouraging as researchers are striving to advance synthetic BA derivatives. This could possibly contribute to more efficient treatments and better results for cancer patients.

摘要

不受调控的细胞分裂是癌症的主要成因之一。这些癌细胞会对附近的健康细胞产生负面影响。癌症可发生于身体的任何部位。正常的细胞分裂发生在细胞随着身体需要生长、繁殖和分裂时。作为正常的细胞生长和分裂级联反应,当细胞受损时,它们会死亡,正常细胞得以发育。然而,有时这个过程并未遵循,异常或受损的细胞开始生长并大量增殖,其增殖倍数远超正常情况。这个特定过程可能构成了癌症的基础。在确定个性化的合成抗癌疗法方面存在研究空白,这种疗法可能基于个体患者的特征,旨在优化治疗效果并将副作用降至最低。在寻找新的生物活性化合物时,人们观察到含有苯甲酸(BA)部分的有机分子具有显著的抗癌潜力。几篇文献报道了使用天然或合成来源的BA来合成生物活性化学物质。据观察,几种天然产物也含有BA部分,并且认为该部分的存在与几种重要的生物活性有关。因此,为了化学合成多种有效的生物活性化合物,可以采用苯甲酸作为支架形式的基本部分。其他具有BA支架的合成化合物包括速尿、丁卡因和布美他尼。本文旨在关注过去和现在关于BA衍生物的研究工作,并强调癌症治疗中涉及的分子途径。随着研究人员努力推进合成BA衍生物,该领域的未来研究前景令人鼓舞。这可能会为癌症患者带来更有效的治疗和更好的治疗效果。

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