Polyethyleneimine coated nanogels for the intracellular delivery of RNase A for cancer therapy

Publication date

2018-05-15

Authors

Kordalivand, NedaISNI 0000000436416403
Li, D.ISNI 0000000524044742
Beztsinna, NataliiaISNI 0000000505885108
Toraño, Javier SastreORCID 0000-0002-0607-1892ISNI 0000000394140225
Mastrobattista, EnricoORCID 0000-0002-6745-2015ISNI 000000035187179X
van Nostrum, ReneISNI 0000000396379707
Hennink, Wim EISNI 0000000390382745
Vermonden, TinaISNI 0000000357250265

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

The aim of this study was to deliver ribonuclease A (RNase A) intracellularly using dextran nanogels for cancer treatment. To this end, positively charged RNase A was electrostatically loaded in anionic dextran nanogels with an average size of 205 nm, which were prepared by an inverse mini-emulsion technique. To chemically immobilize the loaded protein in the nanogels and prevent its unwanted release in the extracellular environment, the protein was covalently linked to the nanogel network via disulfide bonds, which are cleavable in the reductive cytosolic environment. A high loading efficiency and loading content of RNase A (75% and 20%, respectively) were obtained. Coating of the nanogels with the cationic polymer polyethyleneimine reversed the zeta potential of nanogels from -31.6 mV to +7.6 mV. The nanogels showed a fast and triggered release of RNase in the presence of glutathione. Negatively charged RNase A loaded nanogels did not show cytotoxicity, likely due to their limited cellular uptake. In contrast, PEI coated RNase A loaded nanogels showed high uptake by MDA-MB 231 breast cancer cells and exhibited a concentration-dependent cytotoxic effect by apoptosis. The results demonstrate that PEI coated nanogels are promising nano-carriers for intracellular protein delivery, encouraging further evaluation of this formulation in preclinical models.

Keywords

Apoptosis, Dextran, Drug delivery, Nanogels, Polyethyleneimine, Ribonuclease A, Triggered release, Taverne, General Chemistry, Environmental Chemistry, General Chemical Engineering, Industrial and Manufacturing Engineering, SDG 3 - Good Health and Well-being

Citation

Kordalivand, N, Li, D, Beztsinna, N, Sastre Torano, J, Mastrobattista, E, van Nostrum, C F, Hennink, W E & Vermonden, T 2018, 'Polyethyleneimine coated nanogels for the intracellular delivery of RNase A for cancer therapy', Chemical Engineering Journal, vol. 340, pp. 32-41. https://doi.org/10.1016/j.cej.2017.12.071