| Literature DB >> 32029585 |
Jaya Prakash1,2, Mir Mehdi Seyedebrahimi1, Ara Ghazaryan1, Jaber Malekzadeh-Najafabadi1, Vipul Gujrati1, Vasilis Ntziachristos3,4.
Abstract
Infrared (IR) optoacoustic spectroscopy can separate a multitude of molecules based on their absorption spectra. However, the technique is limited when measuring target molecules in aqueous solution by strong water absorption at IR wavelengths, which reduces detection sensitivity. Based on the dependence of optoacoustic signal on the temperature of the probed medium, we introduce cooled IR optoacoustic spectroscopy (CIROAS) to mute water contributions in optoacoustic spectroscopy. We showcase that spectral measurements of proteins, lipids, and glucose in the short-wavelength IR region, performed at 4 °C, lead to marked sensitivity improvements over conventional optoacoustic or IR spectroscopy. We elaborate on the dependence of optoacoustic signals on water temperature and demonstrate polarity changes in the recorded signal at temperatures below 4 °C. We further elucidate the dependence of the optoacoustic signal and the muting temperature on sample concentration and demonstrate that changes in these dependences enable quantification of the solute concentration. We discuss how CIROAS may enhance abilities for molecular sensing in the IR.Entities:
Keywords: near infrared; photoacoustics; sensing; spectroscopy; temperature
Year: 2020 PMID: 32029585 PMCID: PMC7049157 DOI: 10.1073/pnas.1910597117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205