Biological and Pharmaceutical Nanomaterials by Challa S. S. R. Kumar

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By Challa S. S. R. Kumar

This primary accomplished but concise evaluate of all vital periods of organic and pharmaceutical nanomaterials offers in a single quantity the several different types of common organic compounds that shape nanomaterials or that could be used to purposefully create them. This precise unmarried resource of data brings jointly the numerous articles released in really good journals, which frequently stay unseen by way of participants of different, comparable disciplines. protecting pharmaceutical, nucleic acid, peptide and DNA-Chitosan nanoparticles, the publication makes a speciality of these leading edge fabrics and applied sciences wanted for the ongoing progress of drugs, healthcare, prescribed drugs and human wellness.For chemists, biochemists, mobile biologists, fabrics scientists, biologists, and people operating within the pharmaceutical and chemical industries.

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1996, 6, 334–341. , Gene transfer with synthetic cationic amphiphiles; prospects for gene therapy, Bioconjug. Chem. 1994, 5, 382–389. , Thomas, T. , DNA nanoparticles and development of DNA delivery vehicles for gene therapy, Biochemistry 2002, 41, 14085–14094. Dunlap, D. , Soria, M. , Nanoscopic structure of DNA condensed for gene delivery, Nucleic Acids Res. 1997, 25, 3095–3101. , Thomas, T. , Formation of DNA nanoparticles in the presence of novel polyamine analogues: a laser light scattering and atomic force microscopic study, Nucleic Acids Res.

Nanoscopic structure of DNA condensed for gene delivery, Nucleic Acids Res. 1997, 25, 3095–3101. , Thomas, T. , Formation of DNA nanoparticles in the presence of novel polyamine analogues: a laser light scattering and atomic force microscopic study, Nucleic Acids Res. 2004, 32, 127–134. , Conwell, C. , Harvey, L. , Santai, C. , Hud, N. , Condensation of oligonucleotides assembled into nicked and gapped duplexes: potential structures for oligonucleotide delivery, Nucleic Acids Res. 2005, 33, 143–151.

Soc. 2000, 122, 1848–1860. , Park, S. , Reif, J. , LaBean, T. , DNAtemplated self-assembly of protein arrays and highly conductive nanowires, Science 2003, 301, 1882– 1884. , Seeman, N. , Six-helix bundles designed from DNA, Nano Lett. 2005, 5, 661–665. Dresselhaus, M. , Eklund, P. , Science of Fullerenes and Carbon Nanotubes, Academic Press, New York, 1996. , Volkov, V. , Klinov, D. , Proximityinduced superconductivity in DNA, Science 2001, 291, 280–282. , Direct measurement of electrical transport through DNA molecules, Nature 2000, 403, 635–638.

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