| Literature DB >> 33894781 |
Liu Sun1, Li Zhao2, Rui-Yun Peng3.
Abstract
With the rapid development of terahertz technologies, basic research and applications of terahertz waves in biomedicine have attracted increasing attention. The rotation and vibrational energy levels of biomacromolecules fall in the energy range of terahertz waves; thus, terahertz waves might interact with biomacromolecules. Therefore, terahertz waves have been widely applied to explore features of the terahertz spectrum of biomacromolecules. However, the effects of terahertz waves on biomacromolecules are largely unexplored. Although some progress has been reported, there are still numerous technical barriers to clarifying the relation between terahertz waves and biomacromolecules and to realizing the accurate regulation of biological macromolecules by terahertz waves. Therefore, further investigations should be conducted in the future. In this paper, we reviewed terahertz waves and their biomedical research advantages, applications of terahertz waves on biomacromolecules and the effects of terahertz waves on biomacromolecules. These findings will provide novel ideas and methods for the research and application of terahertz waves in the biomedical field.Entities:
Keywords: Biomacromolecules; Effect; Review; Terahertz waves
Mesh:
Substances:
Year: 2021 PMID: 33894781 PMCID: PMC8070290 DOI: 10.1186/s40779-021-00321-8
Source DB: PubMed Journal: Mil Med Res ISSN: 2054-9369
Fig. 1Terahertz band in the electromagnetic spectrum and corresponding molecular transitions. Infrared bands include far-infrared, Mid-infrared and near-infrared. Mid-infrared spectroscopy measures the vibration patterns of bending and stretching motions (such as C-O, C=O). Some molecular rotations, skeleton vibrations of macromolecules, weak intermolecular interaction and crystalline phonon vibrations etc correspond to terahertz bands. IR. Infrared