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.
肿瘤细胞治疗研究
英文原题:An Innovative PTD-IVT-mRNA Delivery Platform for CAR Immunotherapy of ErbB(+) Solid Tumor Neoplastic Cells.
An Innovative PTD-IVT-mRNA Delivery Platform for CAR Immunotherapy of ErbB(+) Solid Tumor Neoplastic Cells.
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嵌合抗原受体(CAR)免疫治疗通过对免疫细胞进行基因修饰,使其表达CAR并识别癌细胞表面抗原。目前首选方法为病毒转染,但存在脱靶诱变风险。
因此,人们提出了其他转染平台,例如体外转录(IVT)信使RNA。本研究利用创新的专利递送平台制备蛋白转导结构域(PTD)-IVT-mRNA,使NK-92细胞表达CAR。研究制备了经CAR-T1E工程化的NK-92细胞,这些细胞携带可识别ErbB受体的T1E单链可变片段(scFv)序列,并分别具有CD28或4-1BB共刺激信号结构域;随后在两种不同ErbB阳性癌细胞系中评估其疗效。
结果显示,CAR的PTD-IVT-mRNA可安全转导至NK-92细胞并表达。共培养实验中,CAR-T1E工程化NK-92细胞作为效应细胞,对HSC-3(口腔鳞状细胞癌)和MCF-7(乳腺转移性腺癌)人细胞均诱导较高水平的细胞死亡(25%–33%)。
总之,将新型PTD-IVT-mRNA递送平台应用于NK-92细胞取得了有前景的结果,有望推动未来CAR免疫治疗策略发展。
Chimeric antigen receptor (CAR) immunotherapy includes the genetic modification of immune cells to carry such a receptor and, thus, recognize cancer cell surface antigens. Viral transfection is currently the preferred method, but it carries the risk of off -target mutagenicity. Other transfection platforms have thus been proposed, such the in vitro transcribed (IVT)-mRNAs.
In this study, we exploited our innovative, patented delivery platform to produce protein transduction domain (PTD)-IVT-mRNAs for the expression of CAR on NK-92 cells. CAR T1E-engineered NK-92 cells, harboring the sequence of T1E single-chain fragment variant (scFv) to recognize the ErbB receptor, bearing either CD28 or 4-1BB as co-stimulatory signaling domains, were prepared and assessed for their effectiveness in two different ErbB(+) cancer cell lines.
Our results showed that the PTD-IVT-mRNA of CAR was safely transduced and expressed into NK-92 cells. CAR T1E-engineered NK-92 cells provoked high levels of cell death (25-33%) as effector cells against both HSC-3 (oral squamous carcinoma) and MCF-7 (breast metastatic adenocarcinoma) human cells in the co-incubation assays.
In conclusion, the application of our novel PTD-IVT-mRNA delivery platform to NK-92 cells gave promising results towards future CAR immunotherapy approaches.
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