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A nondenaturing solid phase pharmaceutical carrier comprised of surface-modified nanocrystalline materials

✍ Scribed by Nir Kossovsky; Rointan F. Bunshah; Andrew Gelman; Edward Sponsler; Dheerendra M. Umarjee; Tae-Gyo Suh; Shiva Prakash; Hans J. Doerr; Chandra V. Deshpandey


Publisher
Wiley (John Wiley & Sons)
Year
1990
Tongue
English
Weight
733 KB
Volume
1
Category
Article
ISSN
1045-4861

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✦ Synopsis


Numerous carrier systems have been developed for the controlled delivery of biologically active molecules such as drugs and diagnostic agents. The biophysical interactions between the biologically active molecules and their carriers, however, may denature the former and lead to reduced biological activity. In this study, a model nondenaturing carrier comprised of a nanocrystalline (lo-' m) tin oxide core and a surface-charge-reducing organic bonding layer (GF292) was synthesized. A subsequently bound protein (human transferrin) showed significant retained conformation by immunoelectron microscopy. In the synthesis of targeted drug systems and vaccines, nanocrystalline cores treated with appropriate surface-modifying agents may be suitable carriers.