Search results

Search for "permeation" in Full Text gives 53 result(s) in Beilstein Journal of Nanotechnology.

Near-infrared dye loaded polymeric nanoparticles for cancer imaging and therapy and cellular response after laser-induced heating

  • Tingjun Lei,
  • Alicia Fernandez-Fernandez,
  • Romila Manchanda,
  • Yen-Chih Huang and
  • Anthony J. McGoron

Beilstein J. Nanotechnol. 2014, 5, 313–322, doi:10.3762/bjnano.5.35

Graphical Abstract
  • control the degree of hydrophilicity and in turn the glass transition temperature (Tg). Characterization was performed by differential scanning calorimetry (for glass transition temperature) and gel permeation chromatography (for molecular weight, based on a calibration curve of polysterene standards
PDF
Album
Supp Info
Full Research Paper
Published 18 Mar 2014

Magnetic-Fe/Fe3O4-nanoparticle-bound SN38 as carboxylesterase-cleavable prodrug for the delivery to tumors within monocytes/macrophages

  • Hongwang Wang,
  • Tej B. Shrestha,
  • Matthew T. Basel,
  • Raj K. Dani,
  • Gwi-Moon Seo,
  • Sivasai Balivada,
  • Marla M. Pyle,
  • Heidy Prock,
  • Olga B. Koper,
  • Prem S. Thapa,
  • David Moore,
  • Ping Li,
  • Viktor Chikan,
  • Deryl L. Troyer and
  • Stefan H. Bossmann

Beilstein J. Nanotechnol. 2012, 3, 444–455, doi:10.3762/bjnano.3.51

Graphical Abstract
  • ][22][23][24][25][26]. SN38-loaded polymeric micelles (NK012) have been used in preclinical and clinical studies against various types of cancer. Specific accumulation of this formulation to the tumor site by the EPR effect (enhanced permeation and retention), and sustained release of SN38 in tumor
PDF
Album
Supp Info
Full Research Paper
Published 13 Jun 2012

Self-assembly of octadecyltrichlorosilane: Surface structures formed using different protocols of particle lithography

  • ChaMarra K. Saner,
  • Kathie L. Lusker,
  • Zorabel M. LeJeune,
  • Wilson K. Serem and
  • Jayne C. Garno

Beilstein J. Nanotechnol. 2012, 3, 114–122, doi:10.3762/bjnano.3.12

Graphical Abstract
  • the Si(111) substrate by liquid permeation through the latex mask. Particle lithography by immersion of latex-masked substrates in silane solutions A completely different morphology other than rings or nanopores was observed for OTS nanostructures produced by the immersion of particle masks. Dot
  • deposited and spread evenly over the PDMS block, then quickly dried in a stream of ultra-high-purity argon. The PDMS block coated with OTS was placed on top of the masked substrate. The film of OTS was transferred from the PDMS block through the latex mask to the substrate by permeation. The areas of the Si
PDF
Album
Full Research Paper
Published 09 Feb 2012
Other Beilstein-Institut Open Science Activities