Therapeutic silencing of bcl-2 using nk cell-derived exosomes as a novel therapeutic approach in breast cancer

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Abstract

Overexpression of the anti-apoptotic protein BCL-2 is frequently observed in multiple malignancies, including about 85% of patients with estrogen receptor positive (ER+ ) breast cancer. Besides being studied as a prognostic marker, BCL-2 is investigated as a therapeutic target in ER+ breast cancer. Here, we introduce a new exosome-based strategy to target BCL-2 using genetically modified natural killer (NK) cells. The NK cell line NK92MI was lentivirally transduced to express and load BCL-2 siRNAs (siBCL-2) into exosomes (NKExos) and then evaluated for its potential to treat ER+ breast cancer. Transfected NK92MI cells produced substantial levels of BCL-2 siRNAs, without substantially affecting NK cell viability or effector function and led to loading of siBCL-2 in NKExos. Remarkably, targeting BCL-2 via siBCL-2 NKExos led to enhanced intrinsic apoptosis in breast cancer cells, without affecting non-malignant cells. Together, our prototypical results for BCL-2 in breast cancer provide proof of concept for a novel strategy to utilize NKExos as a natural delivery vector for siRNA targeting of oncogenes.

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Kaban, K., Hinterleitner, C., Zhou, Y., Salva, E., Kantarci, A. G., Salih, H. R., & Märklin, M. (2021). Therapeutic silencing of bcl-2 using nk cell-derived exosomes as a novel therapeutic approach in breast cancer. Cancers, 13(10). https://doi.org/10.3390/cancers13102397

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