PEGylated Carbon Nanocapsule: A Universal Reactor and Carrier for In Vivo Delivery of Hydrophobic and Hydrophilic Nanoparticles

  • ACS Appl Mater Interfaces. 2016 Jan 13;8(1):350-62. doi: 10.1021/acsami.5b08885.
Amritha Rammohan  1 Gargi Mishra  1 Binapani Mahaling  1 Lokesh Tayal  1 Ahana Mukhopadhyay  1 Sanjay Gambhir  2 Ashutosh Sharma  1 Sri Sivakumar  1  3
Affiliations
  • 1. Department of Chemical Engineering, Centre for Environmental Science & Engineering, Thematic Unit of Excellence in Soft Nanofabrication, Indian Institute of Technology , Kanpur, Uttar Pradesh-208016, India.
  • 2. Sanjay Gandhi Post Graduate Institute of Medical Sciences , Lucknow, Uttar Pradesh India.
  • 3. Materials Science Programme, Indian Institute of Technology , Kanpur, Uttar Pradesh-208016, India.
Abstract

We have developed PEGylated mesoporous carbon nanocapsule as a universal nanoreactor and carrier for the delivery of highly crystalline hydrophobic/hydrophilic nanoparticles (NPs) which shows superior biocompatibility, dispersion in body fluids, good biodistribution and NPs independent cellular uptake mechanism. The hydrophobic/hydrophilic NPs without surface modification were synthesized in situ inside the cavities of mesoporous carbon capsules (200-850 nm). Stable and inert nature of carbon capsules in a wide range of reaction conditions like high temperature and harsh Solvents, make it suitable for being used as nano/microreactors for the syntheses of a variety of NPs for bioimaging applications, such as NaYF4:Eu(3+)(5%), LaVO4:Eu(3+)(10%), GdVO4:Eu(3+)(10%), Y2O3:Eu(3+)(5%), GdF3:Tb(3+)(10%), Mo, Pt, Pd, Au, and Ag. Multiple types of NPs (Y2O3:Eu(3+)(5%) (hydrophobic) and GdF3:Tb(3+)(10%) (hydrophilic)) were coloaded inside the carbon capsules to create a multimodal agent for magneto-fluorescence imaging. Our in vivo study clearly suggests that carbon capsules have biodistribution in many organs including liver, heart, spleen, lungs, blood pool, and muscles.

Keywords
Ln3+-doped nanoparticles; biodistribution; carbon capsules; multimodal-imaging; nano/microreactor; theranostics.
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