Selective RNA delivery is required for the broad implementation of RNA clinical applications, including prophylactic and therapeutic vaccinations, immunotherapies for cancer, and genome editing. Current polyanion delivery relies heavily on cationic amines, while cationic guanidinium systems have received limited attention due in part to their strong polyanion association, which impedes intracellular polyanion release. Here, we disclose a general solution to this problem in which cationic guanidinium groups are used to form stable RNA complexes upon formulation but at physiological pH undergo a novel charge-neutralization process, resulting in RNA release. This new delivery system consists of guanidinylated serinol moieties incorporated into a charge-altering releasable transporter (GSer-CARTs). Significantly, systematic variations in structure and formulation resulted in GSer-CARTs that exhibit highly selective mRNA delivery to the lung (â¼97%) and spleen (â¼98%) without targeting ligands. Illustrative of their breadth and translational potential, GSer-CARTs deliver circRNA, providing the basis for a cancer vaccination strategy, which in a murine model resulted in antigen-specific immune responses and effective suppression of established tumors.
Organ- and Cell-Selective Delivery of mRNA In Vivo Using Guanidinylated Serinol Charge-Altering Releasable Transporters.
利用胍基化丝氨醇电荷改变可释放转运体在体内进行器官和细胞选择性mRNA递送
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作者:Li Zhijian, Amaya Laura, Ee Aloysius, Wang Sean K, Ranjan Alok, Waymouth Robert M, Chang Howard Y, Wender Paul A
| 期刊: | Journal of the American Chemical Society | 影响因子: | 15.600 |
| 时间: | 2024 | 起止号: | 2024 May 29; 146(21):14785-14798 |
| doi: | 10.1021/jacs.4c02704 | 研究方向: | 细胞生物学 |
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