Label-free metabolic imaging of non-alcoholic-fatty-liver-disease (NAFLD) liver by volumetric dynamic optical coherence tomography

Author:

Mukherjee Pradipta1ORCID,Fukuda Shinichi1,Lukmanto Donny1,Yamashita Toshiharu1,Okada Kosuke1,Makita Shuichi1ORCID,Abd El-Sadek Ibrahim12ORCID,Miyazawa Arata3,Zhu Lida1ORCID,Morishita Rion1ORCID,Lichtenegger Antonia14,Oshika Tetsuro1,Yasuno Yoshiaki1ORCID

Affiliation:

1. University of Tsukuba

2. Damietta University

3. Sky Technology Inc.

4. Medical University of Vienna

Abstract

Label-free metabolic imaging of non-alcoholic fatty liver disease (NAFLD) mouse liver is demonstrated ex vivo by dynamic optical coherence tomography (OCT). The NAFLD mouse is a methionine choline-deficient (MCD)-diet model, and two mice fed the MCD diet for 1 and 2 weeks are involved in addition to a normal-diet mouse. The dynamic OCT is based on repeating raster scan and logarithmic intensity variance (LIV) analysis that enables volumetric metabolic imaging with a standard-speed (50,000 A-lines/s) OCT system. Metabolic domains associated with lipid droplet accumulation and inflammation are clearly visualized three-dimensionally. Particularly, the normal-diet liver exhibits highly metabolic vessel-like structures of peri-vascular hepatic zones. The 1-week MCD-diet liver shows ring-shaped highly metabolic structures formed with lipid droplets. The 2-week MCD-diet liver exhibits fragmented vessel-like structures associated with inflammation. These results imply that volumetric LIV imaging is useful for visualizing and assessing NAFLD abnormalities.

Funder

Core Research for Evolutional Science and Technology

Japan Science and Technology Agency

Austrian Science Fund

Japan Society for the Promotion of Science

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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