基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Current status and future prospective of breast cancer immunotherapy.
Current status and future prospective of breast cancer immunotherapy.
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免疫系统复杂且相互关联,提供了强大的防御系统,保护宿主免受外来病原体的侵害。免疫疗法涉及增强免疫系统以杀死癌细胞,如今已成为癌症的主要新兴治疗方法。随着我们对癌症免疫学理解的进步,研究和评估利用免疫系统对抗癌症的疗法出现了爆炸性增长。
然而,传统疗法在减少肿瘤负荷和延长患者生命方面是有效的,但这些治疗方案的总体疗效有些参差不齐,且常伴有严重副作用。一个常见原因是导致抗肿瘤效应细胞凋亡的分子机制被激活。完全阻断肿瘤逃逸的能力取决于我们对肿瘤微环境中运行的细胞和分子通路的理解。已经开发了许多策略来激活免疫系统以杀死肿瘤细胞。乳腺癌是女性癌症死亡的主要原因之一,其特征是与宿主免疫系统密切交织的复杂分子和细胞事件。在这方面,免疫疗法的预测性生物标志物、纳米技术的应用、个性化癌症疫苗、检查点抑制剂抗体、工程化嵌合抗原受体-T细胞以及与其他治疗方式的联合已经改变了癌症治疗并优化了治疗效果。在本章中,我们将提供不同治疗方式和免疫疗法最新进展的整体观点。
此外,我们将以乳腺癌免疫疗法为例,总结其最新进展和未来前景。
The immune system is complicated, interconnected, and offers a powerful defense system that protects its host from foreign pathogens. Immunotherapy involves boosting the immune system to kill cancer cells, and nowadays, is a major emerging treatment for cancer. With the advances in our understanding of the immunology of cancer, there has been an explosion of studies to develop and evaluate therapies that engage the immune system in the fight against cancer. Nevertheless, conventional therapies have been effective in reducing tumor burden and prolonging patient life, but the overall efficacy of these treatment regimens has been somewhat mixed and often with severe side effects. A common reason for this is the activation of molecular mechanisms that lead to apoptosis of anti-tumor effector cells.
The competency to block tumor escape entirely depends on our understanding of the cellular and molecular pathways which operate in the tumor microenvironment. Numerous strategies have been developed for activating the immune system to kill tumor cells. Breast cancer is one of the major causes of cancer death in women, and is characterized by complex molecular and cellular events that closely intertwine with the host immune system.
In this regard, predictive biomarkers of immunotherapy, use of nanotechnology, personalized cancer vaccines, antibodies to checkpoint inhibitors, engineered chimeric antigen receptor-T cells, and the combination with other therapeutic modalities have transformed cancer therapy and optimized the therapeutic effect. In this chapter, we will offer a holistic view of the different therapeutic modalities and recent advances in immunotherapy.
Additionally, we will summarize the recent advances and future prospective of breast cancer immunotherapies, as a case study.
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