关键词: Anticancer activity Biogenic nanoparticles Cytotoxicity FTIR Green synthesis Nanotechnology SEM

Mesh : Antineoplastic Agents / chemical synthesis chemistry therapeutic use Gold / chemistry therapeutic use Green Chemistry Technology Humans Metal Nanoparticles / chemistry therapeutic use Neoplasms / drug therapy Silver / chemistry therapeutic use Theranostic Nanomedicine

来  源:   DOI:10.1007/s12010-021-03598-6   PDF(Sci-hub)

Abstract:
Cancer is one of the leading causes of death worldwide and also the main obstacle of accelerating anticipation. It is globally recognized as overwhelmingly challenging in terms of clinical management. Cancer is taken into account because a prime lethal disease affects different organs of the body. Even with the rapid improvements in the medical sciences, there are no proper medicines to treat specific kinds of cancer. One of the fundamental issues within the malignant growth treatment is the side effect because of conventional treatment systems. Nanotechnology might be an extremely encouraging field for the therapeutic and drug areas; thus, it assumes a crucial part in improving humankind\'s satisfaction. In the infield of nanotechnology, a plant-mediated fusion of metal nanoparticles has been developed as a substitute to defeat the limitations of traditional synthesis approaches similar to physical and synthetic strategies. These tunable properties of nanomaterials make them progressed apparatuses in the biomedical platform particularly for the improvement of new diagnostics and focused on therapeutics for malignancy.This review incorporates the characterization of nanoparticles with size and shape and features critical uses of biosynthesized green nanomaterials in cancer theranostics.
摘要:
癌症是世界范围内死亡的主要原因之一,也是加速预期的主要障碍。就临床管理而言,它在全球范围内被认为是极具挑战性的。考虑到癌症,因为主要的致命疾病会影响身体的不同器官。即使医学科学的快速发展,没有合适的药物来治疗特定种类的癌症。恶性生长治疗中的一个基本问题是由于常规治疗系统的副作用。纳米技术对于治疗和药物领域来说可能是一个非常令人鼓舞的领域;因此,它是提高人类满意度的关键部分。在纳米技术的内部,植物介导的金属纳米粒子融合已被开发为一种替代品,以克服传统合成方法的局限性,类似于物理和合成策略。纳米材料的这些可调特性使它们在生物医学平台中取得了进展,特别是用于改进新的诊断方法,并专注于恶性肿瘤的治疗。这篇综述结合了具有大小和形状的纳米颗粒的表征,以及生物合成绿色纳米材料在癌症治疗中的关键用途。
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