A Biomimetic Nanoparticle to “Lure and Kill” Phospholipase A2

Abstract

Inhibition of phospholipase A2 (PLA2) has long been considered for treating various diseases associated with an elevated PLA2 activity. However, safe and effective PLA2 inhibitors remain unavailable. Herein, we report a biomimetic nanoparticle design that enables a “lure and kill” mechanism designed for PLA2 inhibition (denoted “L&K‐NP”). The L&K‐NPs are made of polymeric cores wrapped with modified red blood cell membrane with two inserted key components: melittin and oleyloxyethyl phosphorylcholine (OOPC). Melittin acts as a PLA2 attractant that works together with the membrane lipids to “lure” in‐coming PLA2 for attack. Meanwhile, OOPC acts as inhibitor that “kills” PLA2 upon enzymatic attack. Both compounds are integrated into the L&K‐NP structure, which voids toxicity associated with free molecules. In the study, L&K‐NPs effectively inhibit PLA2‐induced hemolysis. In mice administered with a lethal dose of venomous PLA2, L&K‐NPs also inhibit hemolysis and confer a significant survival benefit. Furthermore, L&K‐NPs show no obvious toxicity in mice. and the design provides a platform technology for a safe and effective anti‐PLA2 approach.

Document Details

Document Type
Pub Defense Publication
Publication Date
Apr 15, 2020
Source ID
10.1002/ange.202002782

Entities

People

  • Liangfang Zhang
  • Qiangzhe Zhang
  • Ronnie H Fang
  • Weiwei Gao

Organizations

  • Defense Threat Reduction Agency
  • National Science Foundation
  • University of California, San Diego

Tags

Readers

  • Breast cancer cell signaling and growth regulation.
  • Toxicology/Environmental Toxicology
  • Vector-Borne Disease and Entomology

Technology Areas

  • Biotechnology
  • Biotechnology - Cancer Biotech