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Potential of nano-phytochemicals in cervical cancer therapy

机译:宫颈癌治疗中纳米植物化学潜力的潜力

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摘要

Cervical cancer is common among women with a recurrence rate of 35% despite surgery, radiation, and chemotherapy. Patients receiving chemotherapy or radiotherapy routinely experience several side effects including toxicity, non-targeted damage of tissues, hair loss, neurotoxicity, multidrug resistance (MDR), nausea, anemia and neutropenia. Phytochemicals can interfere with almost every stage of carcinogenesis to prevent cancer development. Many natural compounds are known to activate/deactivate multiple redox-sensitive transcription factors that modulate tumor signaling pathways. Polyphenols have been found to be promising agents against cervical cancer. However, applications of phytochemicals as a therapeutic drug are limited due to low oral bioavailability, poor aqueous solubility and requirement of high doses. Nano-sized phytochemicals (NPCs) are promising anti-cancer agents as they are required in minute quantities which lowers overall treatment costs. Several phytochemicals, including quercetin, lycopene, leutin, curcumin, green tea polyphenols and others have been packaged as nanoparticles and proven to be useful in nano-chemoprevention and nano-chemotherapy. Nanoparticles have high biocompatibility, biodegradability and stability in biological environment. Nano-scale drug delivery systems are excellent source for enhanced drug specificity, improved absorption rates, reduced drug degradation and systemic toxicity. The present review discusses current knowledge in the involvement of phytochemical nanoparticles in cervical cancer therapy over conventional chemotherapy.
机译:尽管手术,辐射和化疗,宫颈癌患有复发率为35%的女性常见。接受化疗或放疗的患者经常经历几种副作用,包括毒性,非靶向损伤的组织,脱发,神经毒性,多药耐药性(MDR),恶心,贫血和中性粒细胞。植物化学物质可以干扰几乎所有致癌物的阶段,以预防癌症发展。已知许多天然化合物激活/去激活多种氧化还原敏感转录因子,调节肿瘤信号传导途径。已发现多酚是针对宫颈癌的有前途的药剂。然而,由于低口服生物利用度,差的水溶性和高剂量要求,植物化学物种作为治疗药的应用受到限制。纳米型植物化学物质(NPCs)是有前途的抗癌剂,因为它们是在微量的数量中需要的,这降低了整体治疗费用。几种植物化学物质,包括槲皮素,番茄红素,乳酪,姜黄素,绿茶多酚等已包装为纳米颗粒,并被证明可用于纳米化学预防和纳米化疗。纳米颗粒具有高生物相容性,生物化性和生物环境中的稳定性。纳米规模的药物递送系统是增强药物特异性,提高吸收率,降低药物降解和全身毒性的优异来源。本综述讨论了目前在常规化疗宫颈癌治疗中植物化学纳米颗粒参与的现有知识。

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