工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The Intra-Tumoral T Cell Receptor Repertoire: Steps Towards a Useful Clinical Biomarker.
The Intra-Tumoral T Cell Receptor Repertoire: Steps Towards a Useful Clinical Biomarker.
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适应性免疫能够识别并响应肿瘤,尽管肿瘤属于免疫学意义上的“自身”。CD4+和CD8+ T细胞在这一过程中发挥关键作用,因此识别肿瘤抗原的特异性受体集合有潜力提供预后生物标志物,用于追踪癌症治疗(包括免疫治疗)后肿瘤的生长情况。大多数已发表的关于T细胞库的数据仍依赖于商业专有方法,这些方法通常不允许获取原始数据,且难以验证。
我们描述了一种用于扩增、测序和分析T细胞受体的开源方案,该方案经济、稳健、灵敏且通用。关键的实验步骤是将单链寡核苷酸连接至T细胞受体cDNA的3'端,这使得仅需每个基因座一套引物即可轻松扩增所有可能的重排,同时引入独特分子标识符以标记每个起始cDNA分子。测序后,该分子标识符可用于校正序列错误和差异PCR扩增效率的影响,从而更准确地测量样本中真实的T细胞受体频率。随后,样本被标记以独特的索引对,便于机器人规模化操作并显著减少因索引跳跃导致的跨样本污染。该方法已应用于分析多种实体瘤患者的TIL(肿瘤浸润淋巴细胞)及匹配的外周血样本。
Adaptive immunity recognizes and responds to tumors, although they are part of the immunological "self." T cells, both CD4+ and CD8+, play a key role in the process, and the specific set of receptors which recognize tumor antigens therefore has the potential to provide prognostic biomarkers for tracking tumor growth after cancer therapy, including immunotherapy. Most published data on the T cell repertoire continue to rely on commercial proprietary methods, which often do not allow access to the raw data, and are difficult to validate.
We describe an open-source protocol for amplifying, sequencing, and analyzing T cell receptors which is economical, robust, sensitive, and versatile. The key experimental step is the ligation of a single-stranded oligonucleotide to the 3' end of the T cell receptor cDNA, which allows easy amplification of all possible rearrangements using only a single set of primers per locus, while simultaneously introducing a unique molecular identifier to label each starting cDNA molecule.
After sequencing, this molecular identifier can be used to correct both sequence errors and the effects of differential PCR amplification efficiency, thus producing a more accurate measure of the true T cell receptor frequency within the sample.
Samples are then tagged with unique pairs of indices, facilitating robotic scale-up and significantly reducing cross-sample contamination from index hopping. This method has been applied to the analysis of tumor-infiltrating lymphocytes and matched peripheral blood samples from patients with a variety of solid tumors.
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