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金属纳米颗粒:它们通过激发训练免疫在乳腺癌免疫治疗中的潜在作用。

Metallic Nanoparticles: Their Potential Role in Breast Cancer Immunotherapy via Trained Immunity Provocation.

作者信息

Zarenezhad Elham, Kanaan Manal Hadi Ghaffoori, Abdollah Sura Saad, Vakil Mohammad Kazem, Marzi Mahrokh, Mazarzaei Abdulbaset, Ghasemian Abdolmajid

机构信息

Noncommunicable Diseases Research Center, Fasa University of Medical Sciences, Fasa 7461686688, Iran.

Department of Agriculture, Technical Institute of Suwaria, Middle Technical University, Baghdad 9768876516, Iraq.

出版信息

Biomedicines. 2023 Apr 23;11(5):1245. doi: 10.3390/biomedicines11051245.

Abstract

Owing to drawbacks in the current common cancer therapies including surgery, chemotherapy and radiotherapy, the development of more reliable, low toxic, cost-effective and specific approaches such as immunotherapy is crucial. Breast cancer is among the leading causes of morbidity and mortality with a developed anticancer resistance. Accordingly, we attempted to uncover the efficacy of metallic nanoparticles (MNPs)-based breast cancer immunotherapy emphasizing trained immunity provocation or innate immunity adaptation. Due to the immunosuppressive nature of the tumor microenvironment (TME) and the poor infiltration of immune cells, the potentiation of an immune response or direct combat is a goal employing NPs as a burgeoning field. During the recent decades, the adaptation of the innate immunity responses against infectious diseases and cancer has been recognized. Although the data is in a scarcity with regard to a trained immunity function in breast cancer cells' elimination, this study introduced the potential of this arm of immunity adaptation using MNPs.

摘要

由于当前常见癌症治疗方法(包括手术、化疗和放疗)存在缺陷,开发更可靠、低毒、经济高效且特异的方法(如免疫疗法)至关重要。乳腺癌是发病率和死亡率的主要原因之一,且具有抗药性。因此,我们试图揭示基于金属纳米颗粒(MNPs)的乳腺癌免疫疗法的疗效,重点是激发训练有素的免疫或适应性先天免疫。由于肿瘤微环境(TME)的免疫抑制性质以及免疫细胞浸润不足,增强免疫反应或直接对抗是将纳米颗粒作为一个新兴领域的目标。在最近几十年中,针对传染病和癌症的先天免疫反应的适应性已得到认可。尽管关于训练有素的免疫功能在消除乳腺癌细胞方面的数据稀缺,但本研究介绍了使用MNPs进行这种免疫适应性分支的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c111/10215451/197521e88ca7/biomedicines-11-01245-g001.jpg

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