CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Liposomal-Based Nanoarchitectonics as Bispecific T Cell Engagers in Neuroblastoma Therapy.
Liposomal-Based Nanoarchitectonics as Bispecific T Cell Engagers in Neuroblastoma Therapy.
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神经母细胞瘤(NB)是一种侵袭性儿童实体肿瘤,目前缺乏有效治疗方法。近年来,利用携带嵌合抗原受体(CAR-T)的工程化淋巴细胞,增强其对肿瘤细胞的自然搜寻与杀伤能力,已成为一种高度有价值的策略,能够以特异且安全的方式根除肿瘤。遗憾的是,尽管这些细胞疗法在液体肿瘤中取得了优异成果,但在实体恶性肿瘤治疗中,其疗效通常有限,原因在于存在多种生物学屏障削弱其效力。本文提出了一种基于纳米级双特异性T细胞衔接器(NBTEs)引导CAR-T 靶向NB细胞的策略。这些新型双特异性纳米平台基于脂质体和原细胞,双重功能化修饰有合成靶向部分(对氨基苄基胍和荧光素),能够分别选择性结合NB细胞膜受体和抗FITC CAR-T。通过共聚焦荧光显微镜监测NBTEs与NB细胞的结合过程,显示这些纳米器件在恶性细胞表面放置荧光标记的卓越能力。随后,预先在NBTEs存在下孵育的NB细胞被抗FITC CAR-T 快速检测并摧毁,证实了这些纳米平台增强CAR-T 自然根除恶性细胞能力的卓越性能。
最后,NBTE设计的高度通用性和易于调节的特性,将使其能够快速应用于不同类型的实体肿瘤。
Neuroblastoma (NB) is an aggressive pediatric solid tumor that lacks efficient treatment. In the past few years, the use of engineered lymphocytes endowed with chimeric antigen receptors (CAR T), which improve their natural search and destroy skills against tumoral cells, has provided a highly valuable strategy to eradicate tumors in a specific and safe manner.
Unfortunately, despite the excellent results achieved by these cell-based therapies in liquid tumors, their efficacy in the treatment of solid malignancies is usually modest due to the existence of several biological barriers which compromise their efficacy.
Herein, a strategy to guide CAR T toward NB cells based on the use of nanometric bispecific T engagers (NBTEs) is presented. These novel bispecific nanoplatforms are based on liposomes and protocells doubly functionalized with synthetic targeting moieties ( para -aminobenzylguanidine and fluorescein) able to selectively bind to membrane cell receptors of NB and anti-FITC CAR T, respectively.
The binding process of NBTEs to NB cells was monitored by confocal fluorescence microscopy showing the excellent capacity of these nanodevices to place fluorescence labels on the surface of the malignant cells. Then, NB cells previously incubated in the presence of NBTEs were rapidly detected and destroyed by anti-FITC CAR T, which confirmed the excellent capacity of these nanoplatforms to improve the natural capacity of CAR T to eradicate malignant cells.
Finally, the high versatility of the NBTE design and its easy-to-tune nature would allow their rapid application to different types of solid tumors.
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