Scinovex
article Open AccessTop 10% cited

Development of the iLiNP Device: Fine Tuning the Lipid Nanoparticle Size within 10 nm for Drug Delivery

ACS Omega · 2018 · Vol. 3(5) · pp. 5044–5051
Niko KimuraMasatoshi MaekiYusuke SatoYusuke NoteAkihiko IshidaHirofumi TaniHideyoshi HarashimaManabu Tokeshi

Abstract

The precise size control of the lipid nanoparticle (LNP)-based nanodrug delivery system (DDS) carriers, such as 10 nm size tuning of LNPs, is one major challenge for the development of next-generation nanomedicines. Size-controlled LNPs would realize size-selective tumor targeting and deliver DNA and RNA to target tumor tissues effectively by passing through the stromal cells. Herein, we developed a baffle mixer device named the invasive lipid nanoparticle production device, or iLiNP device for short, which has a simple two-dimensional microchannel and mixer structure, and we achieved the first reported LNP size tuning at 10 nm intervals in the size range from 20 to 100 nm. In comparison with the conventional LNP preparation methods and reported micromixer devices, our iLiNP device showed better LNP size controllability, robustness of device design, and LNP productivity. Furthermore, we prepared 80 nm sized LNPs with encapsulated small interfering RNA (siRNA) using the iLiNP device; these LNPs effectively performed as nano-DDS carriers in an <i>in vivo</i> experiment. We expect iLiNP devices will become novel apparatuses for LNP production in nano-DDS applications.

RNA Interference and Gene DeliveryNanopore and Nanochannel Transport StudiesAdvanced biosensing and bioanalysis techniquesNanotechnologyNanoparticleRobustness (evolution)Materials scienceDrug deliveryParticle sizeDispersityChemistry

Funding

  • Hokkaido University
  • Core Research for Evolutional Science and Technology
Citations
214
FWCI
4.64
field-weighted impact
References
34
Percentile
96%
vs. same field & year
Citations per year
References
Nanocarriers as an emerging platform for cancer therapy
Nature Nanotechnology · 2007 · 8,478 citations
Poly(dimethylsiloxane) as a Material for Fabricating Microfluidic Devices
Accounts of Chemical Research · 2002 · 2,405 citations
New progress and prospects: The application of nanogel in drug delivery
Materials Science and Engineering C · 2015 · 329 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.