Modular Lipid Nanoparticle Platform Technology for siRNA and Lipophilic Prodrug Delivery

Publication date

2021-09-16

Authors

van der Meel, RoyISNI 0000000419514423
Chen, Sam
Zaifman, Josh
Kulkarni, Jayesh A
Zhang, Xu Ran S
Tam, Ying K
Bally, Marcel B
Schiffelers, RaymondORCID 0000-0002-1012-9815ISNI 0000000045237985
Ciufolini, Marco A
Cullis, Pieter R

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

cc_by_nc_nd

Abstract

Successfully employing small interfering RNA (siRNA) therapeutics requires the use of nanotechnology for efficient intracellular delivery. Lipid nanoparticles (LNPs) have enabled the approval of various nucleic acid therapeutics. A major advantage of LNPs is the interchangeability of its building blocks and RNA payload, which allow it to be a highly modular system. In addition, drug derivatization approaches can be used to synthesize lipophilic small molecule prodrugs that stably incorporate in LNPs. This provides ample opportunities to develop combination therapies by co-encapsulating multiple therapeutic agents in a single formulation. Here, it is described how the modular LNP platform is applied for combined gene silencing and chemotherapy to induce additive anticancer effects. It is shown that various lipophilic taxane prodrug derivatives and siRNA against the androgen receptor, a prostate cancer driver, can be efficiently and stably co-encapsulated in LNPs without compromising physicochemical properties or gene-silencing ability. Moreover, it is demonstrated that the combination therapy induces additive therapeutic effects in vitro. Using a double-radiolabeling approach, the pharmacokinetic properties and biodistribution of LNPs and prodrugs following systemic administration in tumor-bearing mice are quantitatively determined. These results indicate that co-encapsulating siRNA and lipophilic prodrugs into LNPs is an attractive and straightforward plug-and-play approach for combination therapy development.

Keywords

androgen receptor, combination treatment, lipid nanoparticles, modularity, platform technology, prodrug, prostate cancer, siRNA, General Chemistry, General Materials Science, Biotechnology, Biomaterials, Journal Article

Citation

van der Meel, R, Chen, S, Zaifman, J, Kulkarni, J A, Zhang, X R S, Tam, Y K, Bally, M B, Schiffelers, R M, Ciufolini, M A, Cullis, P R & Tam, Y Y C 2021, 'Modular Lipid Nanoparticle Platform Technology for siRNA and Lipophilic Prodrug Delivery', Small GTPases, vol. 17, no. 37, 2103025, pp. 1-12. https://doi.org/10.1002/smll.202103025