| Literature DB >> 31646056 |
Jang Hyuk Lee1,2, Jose J Rico-Jimenez1,2, Chi Zhang1, Aneesh Alex3, Eric J Chaney1, Ronit Barkalifa1, Darold R Spillman1, Marina Marjanovic1, Zane Arp3, Steve R Hood4, Stephen A Boppart1,5,6,7.
Abstract
Simultaneous quantification of multifarious cellular metabolites and the extracellular matrix in vivo has been long sought. Simultaneous label-free autofluorescence and multi-harmonic (SLAM) microscopy has achieved simultaneous four-channel nonlinear imaging to study tissue structure and metabolism. In this study, we implemented two laser systems and directly compared SLAM microscopy with conventional two-photon microscopy for in vivo imaging. We found that three-photon imaging of adenine dinucleotide (phosphate) (NAD(P)H) in SLAM microscopy using our tailored laser source provided better resolution, contrast, and background suppression than conventional two-photon imaging of NAD(P)H. We also integrated fluorescence lifetime imaging with SLAM microscopy, and enabled differentiation of free and bound NAD(P)H. We imaged murine skin in vivo and showed that changes in tissue structure, cell dynamics, and metabolism can be monitored simultaneously in real-time. We also discovered an increase in metabolism and protein-bound NAD(P)H in skin cells during the early stages of wound healing.Entities:
Year: 2019 PMID: 31646056 PMCID: PMC6788598 DOI: 10.1364/BOE.10.005431
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732