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胡椒碱:一种具有抗癌功效和治疗潜力的新兴生物因子。

Piperine: an emerging biofactor with anticancer efficacy and therapeutic potential.

作者信息

Wiraswati Hesti Lina, Ma'ruf Ilma Fauziah, Sharifi-Rad Javad, Calina Daniela

机构信息

Department of Biomedical Sciences, Faculty of Medicine, Universitas Padjadjaran, Sumedang, Indonesia.

Oncology and Stem Cell Working Group, Faculty of Medicine, Universitas Padjadjaran, Bandung, Indonesia.

出版信息

Biofactors. 2025 Jan-Feb;51(1):e2134. doi: 10.1002/biof.2134. Epub 2024 Oct 28.


DOI:10.1002/biof.2134
PMID:39467259
Abstract

Anticancer drug discovery needs serious attention to overcome the high mortality rate caused by cancer. There are still many obstacles to treating this disease, such as the high cost of chemotherapeutic drugs, the resulting side effects from the drug, and the occurrence of multidrug resistance. Herbaceous plants are a reservoir of natural compounds that can be anticancer drugs with novel mechanisms of action. Piperine, a bioactive compound derived from Piper species, is gaining attention due to its unique dual role in directly inhibiting tumor growth and enhancing the bioavailability of chemotherapeutic drugs. Unlike conventional treatments, Piperine exhibits a novel mechanism of action by modulating multiple signaling pathways, including apoptosis and autophagy, with low toxicity. Additionally, Piperine acts as a bioenhancer by improving the absorption and effectiveness of other anticancer agents, reducing the required dosage, and minimizing side effects. Therefore, this review aims to visualize a summary of Piperine sources, phytochemistry, chemical structure-anticancer activity relationship, anticancer activities of semi-synthetic derivatives, pharmacokinetic and bioavailability, in vitro and in vivo preclinical studies, mechanism of antitumor action, human clinical trials, toxicity, side effects, and safety of Piperine. References were collected from the Pubmed/MedLine database (https://pubmed.ncbi.nlm.nih.gov/) with the following keywords: "Piperine anticancer," "Piperine derivatives," "Piperine antitumor mechanism" and "Piperine pharmacokinetic and bioavailability," after filter process by inclusion and exclusion criteria, 101 were selected from 444 articles. From 2013 to 2023, there were numerous studies regarding preclinical studies of Piperine of various cell lines, including breast cancer, prostate cancer, lung cancer, melanoma, cervical cancer, gastric cancer, osteosarcoma, colon cancer, hepatocellular carcinoma, ovarian cancer, leukemia, colorectal cancer, and hypopharyngeal carcinoma. In vivo, the anticancer study has also been conducted on some animal models, such as Ehrlich carcinoma-bearing mice, Ehrlich ascites carcinoma cells-bearing Balbc mice, hepatocellular carcinoma-bearing Wistar rat, A375SM cells-bearing mice, A375P cells-bearing mice, SNU-16 cells-bearing BalbC mice, and HGC-27-bearing baby mice. Treatment with this compound leads to cell proliferation inhibition and induction of apoptosis. Piperine has been used for clinical trials of diseases, but no cancer patient report exists. Various semi-synthetic derivatives of Piperine show efficacy as an anticancer drug across multiple cell lines. Piperine shows promise for use in cancer clinical trials, either as a standalone treatment or as a bioenhancer. Its bioenhancer properties may enhance the efficacy of existing chemotherapeutic agents, providing a valuable foundation for developing new anticancer therapies.

摘要

抗癌药物的研发需要得到高度重视,以克服癌症导致的高死亡率。治疗这种疾病仍然存在许多障碍,例如化疗药物成本高昂、药物产生的副作用以及多药耐药性的出现。草本植物是天然化合物的宝库,这些化合物可以成为具有新颖作用机制的抗癌药物。胡椒碱是一种从胡椒属植物中提取的生物活性化合物,因其在直接抑制肿瘤生长和提高化疗药物生物利用度方面具有独特的双重作用而受到关注。与传统治疗方法不同,胡椒碱通过调节包括凋亡和自噬在内的多种信号通路,展现出一种新颖的作用机制,且毒性较低。此外,胡椒碱通过提高其他抗癌药物的吸收和疗效、减少所需剂量并将副作用降至最低,起到生物增强剂的作用。因此,本综述旨在概述胡椒碱的来源、植物化学、化学结构 - 抗癌活性关系、半合成衍生物的抗癌活性、药代动力学和生物利用度、体外和体内临床前研究、抗肿瘤作用机制、人体临床试验、毒性、副作用以及安全性。参考文献从Pubmed/MedLine数据库(https://pubmed.ncbi.nlm.nih.gov/)收集,关键词如下:“胡椒碱抗癌”、“胡椒碱衍生物”、“胡椒碱抗肿瘤机制”和“胡椒碱药代动力学和生物利用度”,经过纳入和排除标准的筛选过程后,从444篇文章中选出了101篇。从2013年到2023年,有许多关于胡椒碱对各种细胞系进行临床前研究的报道,这些细胞系包括乳腺癌、前列腺癌、肺癌、黑色素瘤、宫颈癌、胃癌、骨肉瘤、结肠癌、肝细胞癌、卵巢癌、白血病、结直肠癌和下咽癌。在体内,也对一些动物模型进行了抗癌研究,如荷艾氏腹水癌小鼠、荷艾氏腹水癌细胞的Balbc小鼠、荷肝细胞癌的Wistar大鼠、荷A375SM细胞的小鼠、荷A375P细胞的小鼠、荷SNU - 16细胞的BalbC小鼠和荷HGC - 27的幼鼠。用这种化合物进行治疗会导致细胞增殖抑制和凋亡诱导。胡椒碱已用于疾病的临床试验,但尚无癌症患者报告。胡椒碱的各种半合成衍生物在多种细胞系中均显示出作为抗癌药物的疗效。胡椒碱有望用于癌症临床试验,既可以作为单一治疗药物,也可以作为生物增强剂。其生物增强特性可能会提高现有化疗药物的疗效,为开发新的抗癌疗法提供有价值的基础。

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[3]
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[1]
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ACS Omega. 2025-8-6

[2]
Medicinal effects of Ephedra foeminea aqueous extracts: Metabolomic characterization, biological evaluation, and molecular docking.

PLoS One. 2025-7-24

[3]
Unveiling the Antioxidant Role of Hemp Oils in Cancer Prevention and Treatment.

Cancers (Basel). 2025-6-25

[4]
Target identification of natural products in cancer with chemical proteomics and artificial intelligence approaches.

Cancer Biol Med. 2025-7-9

[5]
The Hidden Power of Black Pepper: Exploring Piperine's Role in Cancer.

Plant Foods Hum Nutr. 2025-5-29

[6]
Maytansinoids in cancer therapy: advancements in antibody-drug conjugates and nanotechnology-enhanced drug delivery systems.

Discov Oncol. 2025-1-21

[7]
Harnessing the anticancer potential of Piper nigrum: a synergistic approach to chemotherapy enhancement and reduced side effects.

Discov Oncol. 2025-1-6

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