Exosome engineering for efficient intracellular delivery of soluble proteins using optically reversible protein–protein interaction module

Инженерия экзосом для эффективной внутриклеточной доставки растворимых белков с использованием оптически обратимо регулируемого модуля взаимодействия белок–белок
Nambin Yim, Seung-Wook Ryu, Kyungsun Choi, Kwang Ryeol Lee, Seunghee Lee, Hojun Choi, Jeongjin Kim, Mohammed R. Shaker, Woong Sun, Ji Ho Park, Daesoo Kim, Won Do Heo, Chulhee Choi
2016-07-22

EXPLORsexosome engineeringintracellular protein deliveryoptically reversible protein–protein interactionsprotein-based therapeutics
Nanoparticle-mediated delivery of functional macromolecules is a promising method for treating a variety of human diseases. Among nanoparticles, cell-derived exosomes have recently been highlighted as a new therapeutic strategy for the in vivo delivery of nucleotides and chemical drugs. Here we describe a new tool for intracellular delivery of target proteins, named 'exosomes for protein loading via optically reversible protein-protein interactions' (EXPLORs). By integrating a reversible protein-protein interaction module controlled by blue light with the endogenous process of exosome biogenesis, we are able to successfully load cargo proteins into newly generated exosomes. Treatment with protein-loaded EXPLORs is shown to significantly increase intracellular levels of cargo proteins and their function in recipient cells in vitro and in vivo. These results clearly indicate the potential of EXPLORs as a mechanism for the efficient intracellular transfer of protein-based therapeutics into recipient cells and tissues.
1
EXPLORs integrate a blue-light-controlled, optically reversible protein–protein interaction module with endogenous exosome biogenesis to load cargo proteins.
2
Protein-loaded EXPLORs significantly increase intracellular cargo-protein levels and functional activity in recipient cells both in vitro and in vivo.
3
The findings support EXPLORs as a potential mechanism for efficient protein-therapeutic delivery to cells and tissues.
4
The platform successfully incorporates target proteins into newly generated exosomes.
5
The study introduces EXPLORs, an exosome-based platform for intracellular delivery of soluble therapeutic proteins.

EXPLORs (engineered exosomes loaded with cargo proteins for intracellular delivery)

Efficient loading and intracellular delivery of functional cargo proteins, including their effects on protein levels and function in recipient cells and tissues

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2016-07-22
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Nambin Yim
Seung-Wook Ryu
Kyungsun Choi
Kwang Ryeol Lee
Seunghee Lee
Hojun Choi
Jeongjin Kim
Mohammed R. Shaker
Woong Sun
Ji Ho Park
Daesoo Kim
Won Do Heo
Chulhee Choi
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