Carolyn Bingham Howard, William K Johnson, Shehla Pervin, Ernest B Izevbigie
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Therefore, there is an urgent need for the discovery of molecular markers for early detection of this disease and discovery of targets for the development of novel, less toxic therapeutics. A botanical plant <i>Vernonia amygdalina</i> has been widely used in Nigerian and other Central and West African cultures for centuries as an herbal medicine. Mounting evidence suggests that treatment with low concentrations of aqueous leaf extracts of the edible Nigerian <i>V. amygdalina</i> plant (Niger-VA) arrests the proliferative activities and induces apoptosis in estrogen receptor-positive, estrogen receptor-negative, and triple-negative human breast cancerous cells and in androgen-independent human PC-3. Also, in athymic mice, Niger-VA potentiates increased efficacies and optimizes treatment outcomes when given as a cotreatment with conventional chemotherapy drugs. Evidence of its noticeable cytostatic activities ranging from changes in DNA synthesis to growth inhibition, mechanisms of inducing apoptosis in different cancer cell lines, and in vivo antitumorigenic activities and chemopreventive efficacy reinforce the idea that Niger-VA deserves increased attention for further development as a phytoceutical, anticancer drug entity. Hence, the present review article highlights impactful published literature on the anticancer effects of Niger-VA in multiple cancerous cell lines and in a nude mouse model, supporting its potential usefulness as a natural product, chemotherapeutic medicine for treatment of both BC and PC.</p>","PeriodicalId":91458,"journal":{"name":"Botanics : targets and therapy","volume":"5 ","pages":"65-76"},"PeriodicalIF":0.0000,"publicationDate":"2015-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://ftp.ncbi.nlm.nih.gov/pub/pmc/oa_pdf/97/0c/nihms756587.PMC4876981.pdf","citationCount":"0","resultStr":"{\"title\":\"Recent perspectives on the anticancer properties of aqueous extracts of Nigerian <i>Vernonia amygdalina</i>.\",\"authors\":\"Carolyn Bingham Howard, William K Johnson, Shehla Pervin, Ernest B Izevbigie\",\"doi\":\"10.2147/BTAT.S62984\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Innovative developments are necessary for treating and defeating cancer, an oftentimes deadly group of diseases characterized by the uncontrolled growth and spread of abnormal cells. 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Mounting evidence suggests that treatment with low concentrations of aqueous leaf extracts of the edible Nigerian <i>V. amygdalina</i> plant (Niger-VA) arrests the proliferative activities and induces apoptosis in estrogen receptor-positive, estrogen receptor-negative, and triple-negative human breast cancerous cells and in androgen-independent human PC-3. Also, in athymic mice, Niger-VA potentiates increased efficacies and optimizes treatment outcomes when given as a cotreatment with conventional chemotherapy drugs. Evidence of its noticeable cytostatic activities ranging from changes in DNA synthesis to growth inhibition, mechanisms of inducing apoptosis in different cancer cell lines, and in vivo antitumorigenic activities and chemopreventive efficacy reinforce the idea that Niger-VA deserves increased attention for further development as a phytoceutical, anticancer drug entity. 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引用次数: 0
摘要
癌症是一类常常致命的疾病,其特点是异常细胞不受控制地生长和扩散。乳腺癌(BC)是美国女性癌症相关死亡的第二大原因,而前列腺癌(PC)则是美国男性癌症相关死亡的第二大原因。虽然一些有效的乳腺癌药物已在市场上销售,但它们影响了一些患者的生活质量,因为这些药物具有毒性,使用时会出现中风、血栓形成、心率减慢、癫痫发作、血压升高、恶心、呕吐等副作用。因此,迫切需要发现早期检测这种疾病的分子标记,并发现开发新型、低毒性治疗药物的靶点。几个世纪以来,一种植物 Vernonia amygdalina 作为草药在尼日利亚及其他中非和西非文化中被广泛使用。越来越多的证据表明,用低浓度的可食用的尼日利亚 V. amygdalina 植物(尼日尔-VA)水叶提取物处理雌激素受体阳性、雌激素受体阴性和三阴性人类乳腺癌细胞以及雄激素依赖性人类 PC-3 细胞,可阻止其增殖活动并诱导其凋亡。此外,在无胸腺小鼠体内,尼日尔-VA 与传统化疗药物共同治疗时,可增强疗效并优化治疗结果。尼日尔-VA明显的细胞抑制活性(从DNA合成变化到生长抑制)、诱导不同癌细胞株凋亡的机制、体内抗肿瘤活性和化学预防功效,这些证据强化了尼日尔-VA作为一种植物抗癌药物实体值得进一步开发的观点。因此,本综述文章重点介绍了已发表的有关尼日尔-VA 在多种癌细胞系和裸鼠模型中的抗癌作用的重要文献,支持尼日尔-VA 作为一种天然产品和化疗药物在治疗 BC 和 PC 方面的潜在用途。
Recent perspectives on the anticancer properties of aqueous extracts of Nigerian Vernonia amygdalina.
Innovative developments are necessary for treating and defeating cancer, an oftentimes deadly group of diseases characterized by the uncontrolled growth and spread of abnormal cells. Breast cancer (BC) is the second leading cause of cancer-related deaths of women in the USA, and prostate cancer (PC) is the second leading cause of cancer-related deaths of American men. Although some efficacious BC drugs are pharmaceutically marketed, they affect the quality of life for some patients because they are toxic in that their usages have been accompanied by side effects such as stroke, thrombosis, slow heart rate, seizure, increased blood pressure, nausea, emesis, and more. Therefore, there is an urgent need for the discovery of molecular markers for early detection of this disease and discovery of targets for the development of novel, less toxic therapeutics. A botanical plant Vernonia amygdalina has been widely used in Nigerian and other Central and West African cultures for centuries as an herbal medicine. Mounting evidence suggests that treatment with low concentrations of aqueous leaf extracts of the edible Nigerian V. amygdalina plant (Niger-VA) arrests the proliferative activities and induces apoptosis in estrogen receptor-positive, estrogen receptor-negative, and triple-negative human breast cancerous cells and in androgen-independent human PC-3. Also, in athymic mice, Niger-VA potentiates increased efficacies and optimizes treatment outcomes when given as a cotreatment with conventional chemotherapy drugs. Evidence of its noticeable cytostatic activities ranging from changes in DNA synthesis to growth inhibition, mechanisms of inducing apoptosis in different cancer cell lines, and in vivo antitumorigenic activities and chemopreventive efficacy reinforce the idea that Niger-VA deserves increased attention for further development as a phytoceutical, anticancer drug entity. Hence, the present review article highlights impactful published literature on the anticancer effects of Niger-VA in multiple cancerous cell lines and in a nude mouse model, supporting its potential usefulness as a natural product, chemotherapeutic medicine for treatment of both BC and PC.