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Optical and Structural Properties of Nanobiomaterials

Authors
Lee, Geon JoonAttri, PankajChoi, Eun HaKwon, Young-WanKrasnikov, IlyaSeteikin, Alexey
Issue Date
1월-2014
Publisher
AMER SCIENTIFIC PUBLISHERS
Keywords
Nanomaterials; DNA; Protein; Monte-Carlo Method; Raman Spectroscopy; Circular Dichroism Spectroscopy; Fluorescence Spectroscopy; Lasing; Plasma Treatment
Citation
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, v.14, no.1, pp.221 - 249
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY
Volume
14
Number
1
Start Page
221
End Page
249
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/99767
DOI
10.1166/jnn.2014.9105
ISSN
1533-4880
Abstract
In this review, the optical and structural properties of biomaterials are discussed. First, we demonstrate the optical and structural properties of natural and plasma-treated DNA, using UV-visible absorption, circular dichroism (CD), and Raman spectroscopy. Fluorescence and lasing action in the dye-doped DNA-surfactant complex are also explained. Additionally, nanomaterial-based DNA detection and DNA-templated nanomaterial growth are described. Next, we discuss protein folding studies utilizing fluorescence, CD, and nuclear magnetic resonance (NMR) spectroscopy. From the CD spectra of alpha-chymotrypsin (CT), we estimate the composition of alpha-helices and the beta-sheets, and random coils in the CT. H-1 NMR spectroscopy is used to investigate the thermal effect on the refolding of CT in the presence of an ionic liquid. Finally, we explain the numerical simulation method used for studying the optical properties of biomaterials. Applications of the Monte-Carlo method in photodynamic therapy, skin tissue optics, and bioimaging are described.
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