4.8 Article

Single Step Reconstitution of Multifunctional High-Density Lipoprotein-Derived Nanomaterials Using Microfluidics

期刊

ACS NANO
卷 7, 期 11, 页码 9975-9983

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn4039063

关键词

HDL; multifunctional; nanoparticle; reconstitution; microfluidics; high-throughput

资金

  1. National Heart, Lung, and Blood Institute (NHLBI)
  2. National Institutes of Health (NIH) [HH5N268201000045C]
  3. National Cancer Institute [CA151884]
  4. David H. Koch-Prostate Cancer Foundation Award in Nanotherapeutics
  5. ROO [EB012165]
  6. American Heart Association [13PRE14350020, R01 CA155432]

向作者/读者索取更多资源

High-density lipoprotein (HDL) is a natural nanoparticle that transports peripheral cholesterol to the liver. Reconstituted high-density lipoprotein (rHDL) exhibits antiatherothrombotic properties and is being considered as a natural treatment for cardiovascular diseases. Furthermore, HDL nanoparticle platforms have been created for targeted delivery of therapeutic and diagnostic agents. The current methods for HDL reconstitution involve lengthy procedures that are challenging to scale up. A central need in the synthesis of rHDL, and multifunctional nanomaterials in general, is to establish large-scale production of reproducible and homogeneous batches in a simple and efficient fashion. Here, we present a large-scale microfluidics-based manufacturing method for single-step synthesis of HDL-mimicking nanomaterials (mu HDL). mu HDL is shown to have the same properties (e.g., size, morphology, bioactivity) as conventionally reconstituted HDL and native HDL. In addition, we were able to incorporate simvastatin (a hydrophobic drug) into mu HDL, as well as gold, iron oxide, quantum dot nanocrystals or fluorophores to enable its detection by computed tomography (CT), magnetic resonance imaging (MRI), or fluorescence microscopy, respectively. Our approach may contribute to effective development and optimization of lipoprotein-based nanomaterials for medical imaging and drug delivery.

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