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绿色纳米颗粒作为多功能纳米药物:在癌症中的抗炎作用、生长信号和细胞凋亡机制的研究进展。

Green nanoparticles as multifunctional nanomedicines: Insights into anti-inflammatory effects, growth signaling and apoptosis mechanism in cancer.

机构信息

Shifa College of Pharmaceutical Sciences, Shifa Tameer-e-Millat University, Islamabad, Pakistan; Industrial Biotechnology, Atta-ur-Rahman School of Applied Biosciences, NUST, Islamabad, Pakistan.

Shifa College of Pharmaceutical Sciences, Shifa Tameer-e-Millat University, Islamabad, Pakistan.

出版信息

Semin Cancer Biol. 2022 Nov;86(Pt 2):310-324. doi: 10.1016/j.semcancer.2022.06.014. Epub 2022 Jul 3.

Abstract

Recently, green nanotechnology got great attention due to their reliable, sustainable, and eco-friendly synthesis protocols. The green nanoparticles (GNPs) are preferred over chemically synthesized nanoparticles owing to less destructive effects associated with the synthesis procedures as well as therapeutic involvement. In this review, we have discussed the applications of GNPs in inflammation-mediated disorders, with special emphasis on cancer, initiated due to oxidative stress and inflammatory cascade. Real-time mechanism based studies on GNPs have suggested their anticancer effects through inducing apoptosis, inhibiting angiogenesis, tissue invasion metastasis, reduced replicative capabilities in addition to target specific different signaling molecules and cascades involved in the development or progression of cancer. Moreover, the association of GNPs with the inhibition or induction of autophagy for the management of cancer has also been discussed. A large number of studies showed the GNPs have multifunctional biomedical properties of theranostic prominence. Therefore, the development of GNPs with naturally established systems could upsurge their definite applications as biomedicines including target specific destruction of the cancerous cells.

摘要

近年来,由于其可靠、可持续和环保的合成方案,绿色纳米技术受到了极大的关注。与化学合成的纳米颗粒相比,绿色纳米颗粒(GNPs)更受欢迎,因为它们的合成过程与治疗相关的破坏性较小。在这篇综述中,我们讨论了 GNPs 在炎症介导的疾病中的应用,特别是由于氧化应激和炎症级联反应而引发的癌症。基于实时机制的 GNPs 研究表明,它们通过诱导细胞凋亡、抑制血管生成、组织侵袭转移、降低复制能力以及靶向特定的不同信号分子和级联反应来发挥抗癌作用,这些信号分子和级联反应涉及癌症的发生或进展。此外,还讨论了 GNPs 与自噬的抑制或诱导联合用于癌症的治疗。大量研究表明,GNPs 具有治疗诊断学方面的多功能生物医学特性。因此,开发具有天然建立系统的 GNPs 可以提高它们作为生物医学的明确应用,包括针对癌细胞的特异性破坏。

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