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Developing Genetically Engineered Encapsulin Protein Cage Nanoparticles as a Targeted Delivery Nanoplatform

机译:开发基因工程化的胶囊蛋白笼子纳米颗粒作为靶向递送纳米平台。

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摘要

Protein cage nanoparticles are excellent candidates for use as multifunctional delivery nanoplatforms because they are built from biomaterials and have, a well-defined structure. A novel protein cage nanoparticle, encapsulin, isolated from thermophilic bacteria Thermotoga maritima, is prepared and developed as a versatile template for targeted delivery nanoplatforms through both chemical and genetic engineering. It is pivotal for multifunctional delivery nanoplatforms to have functional plasticity and versatility to acquire targeting ligands, diagnostic probes, and drugs simultaneously. Encapsulin is genetically engineered to have unusual heat stability and to acquire multiple functionalities in a precisely controlled manner. Hepatocellular carcinoma (HCC) cell binding peptide (SP94-peptide, SFSIIHTPILPL) is chosen as a targeting ligand and displayed on the surface of engineered encapsulin (Encap_loo- phis42C123) through either chemical conjugation or genetic insertion. The effective and selective targeted delivery of SP94-peptide displaying encapsulin (SP94-Encap_loophis42C123) to HepG2 cells is confirmed by fluorescent microscopy imaging. Aldoxorubicin (AlDox), an anticancer prodrug, is chemically loaded to SP94-Encap_loophis42C123 via thiol-maleimide Michael-type addition, and the efficacy of the delivered drugs is evaluated with a cell viability assay. SP94-Encap_loophis42C123-AlDox shows comparable killing efficacy with diat of free drugs without the platform's own cytotoxicity. Functional plasticity and versatility of the engineered encapsulin allow us to introduce targeting ligands, diagnostic probes, and therapeutic reagents simultaneously, providing opportunities to develop multifunctional delivery nanoplatforms.
机译:蛋白质笼纳米颗粒是用作多功能递送纳米平台的极佳候选者,因为它们是由生物材料制成的,并且结构明确。制备并开发了一种新的蛋白笼纳米颗粒,壳糖蛋白,该蛋白是从嗜热细菌滨海嗜热菌中分离出来的,并开发为通过化学和基因工程靶向递送纳米平台的通用模板。多功能递送纳米平台具有功能可塑性和多功能性以同时获取靶向配体,诊断探针和药物,这至关重要。胶囊蛋白经过基因工程改造,具有异常的热稳定性,并可以精确控制的方式获得多种功能。选择肝细胞癌(HCC)细胞结合肽(SP94肽,SFSIIHTPILPL)作为靶向配体,并通过化学缀合或基因插入将其展示在工程化的胶囊蛋白(Encap_loophis42C123)的表面上。通过荧光显微镜成像证实了将展示荚膜蛋白的SP94-肽(SP94-Encap_loophis42C123)有效和选择性靶向递送至HepG2细胞。抗癌前药Aldoxorubicin(AlDox)通过硫醇-马来酰亚胺Michael型加成物化学负载至SP94-Encap_loophis42C123,并通过细胞生存力分析评估了所递送药物的功效。 SP94-Encap_loophis42C123-AlDox表现出与游离药物一样的杀伤力,而没有平台自身的细胞毒性。工程化的胶囊蛋白的功能可塑性和多功能性使我们能够同时引入靶向配体,诊断探针和治疗试剂,从而为开发多功能递送纳米平台提供了机会。

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