肿瘤细胞治疗研究
英文原题:Targeting tumor microenvironment using tumor-infiltrating lymphocytes as therapeutics against tumorigenesis.
Targeting tumor microenvironment using tumor-infiltrating lymphocytes as therapeutics against tumorigenesis.
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免疫系统可抑制肿瘤进展。肿瘤微环境中的TIL(肿瘤浸润淋巴细胞)已被广泛研究,并被认为与癌症预后密切相关。TIL是浸润肿瘤组织、对肿瘤具有较强特异性免疫反应的淋巴细胞群,可防御多种恶性肿瘤。TIL群体具有异质性,按病理生理作用可分为不同免疫亚群,主要包括B细胞、T细胞和NK细胞,表型与功能各异。TIL可通过形成多种T细胞受体克隆识别广泛的异质性肿瘤抗原,其特点被认为优于TCR-T和CAR-T 等治疗。随着基因工程技术发展,TIL成为具有前景的肿瘤治疗选择,但免疫微环境障碍和抗原突变阻碍了其发展。本文探讨TIL作为治疗手段的多个方面,特别是限制临床应用的因素。
The immune system plays a vital role in suppressing tumor cell progression. The tumor microenvironment augmented with significant levels of tumor-infiltrating lymphocytes has been widely investigated and it is suggested that tumor-infiltrating lymphocytes have shown a significant role in the prognosis of cancer patients. Compared to ordinary non-infiltrating lymphocytes, tumor-infiltrating lymphocytes (TILs) are a significant population of lymphocytes that infiltrate tumor tissue and have a higher level of specific immunological reactivity against tumor cells. They serve as an effective immunological defense against various malignancies. TILs are a diverse group of immune cells that are divided into immune subsets based on the pathological and physiological impact they have on the immune system.
TILs mainly consist of B-cells, T-cells, or natural killer cells with diverse phenotypic and functional properties. TILs are known to be superior to other immune cells in that they can recognize a wide range of heterogeneous tumor antigens by producing many clones of T cell receptors (TCRs), outperforming treatments like TCR-T cell and CAR-T therapy.
With the introduction of genetic engineering technologies, tumor-infiltrating lymphocytes (TILs) have become a ground-breaking therapeutic option for malignancies, but because of the hindrances opposed by the immune microenvironment and the mutation of antigens, the development of TILs as therapeutic has been hindered. By giving some insight into the many variables, such as the various barriers inhibiting its usage as a potential therapeutic agent, we have examined various aspects of TILs in this work.
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