Journal of Jilin University Science Edition ›› 2021, Vol. 59 ›› Issue (1): 168-174.

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siRNA Delivery System Based on HSP-Tat Protein Nanoparticles

WANG Hao,  LIU Ning,  CHEN Li,  CUI Meiying,  WANG Dongmei,  LIU Yuxuan,  GUAN Xingang   

  1. Key Laboratory of Targeting Tumor Therapy, College of Medical Technology,  Beihua University,  Jilin 132013,  Jilin Province,  China
  • Received:2020-02-25 Online:2021-01-26 Published:2021-01-26

Abstract: Hsp-Tat fusion protein was expressed in BL21 (DE3) E.coli cells and purified by using affinity chromatography method. The size and morphology of Hsp-Tat nanoparticles were analyzed by dynamic light scattering and transmission electron microscopy. MTT analysis and live/dead cell staining were used to study the biocompatibility of Hsp-Tat nanoparticles. The siRNA complex properties of Hsp-Tat nanoparticles were detected by gel retardation assay. The siRNA transfection activity was studied by laser confocal fluorescence microscopy imaging. The experimental results show that Hsp-Tat fusion protein with high purity is obtained by affinity chromatography. Hsp-Tat nanoparticles can self-assemble into  spherical nanostructures with a mean diameter of 40.2 nm. The protein nanoparticles show good biocompatibility on HEK\|293T cells. The  complexes formed by Hsp-Tat NP and siRNA can prevent the migration of siRNA in agarose gel. Hsp-Tat nanoparticles can  transport Cy3-siRNA into HEK-293T cells, and can  be used as  a  safe and efficient non-viral nucleic acid delivery vector.

Key words: heat shock protein; , cell-penetrating peptide; , protein nanoparticle; , siRNA delivery; , cell transfection

CLC Number: 

  • R94