Impact of glycerol solution on myocardium tissue – Ex vivo deep-UV Raman spectroscopy study

in: Frontiers of Optoelectronics (2026)
Jaafar, Ali; Vaczi, Tamas; Tarcea, Nicolae; Akimov, Denis; Meyer-Zedler, Tobias; Schmitt, Michael; Popp, Jürgen; Tuchin, Valery V.; Veres, Miklos
Cardiomyopathies are often characterized by significant fibrotic remodelling of the heart, marked by an abnormal accumulation of collagen type I. Label free Raman spectroscopy, a non-invasive diagnostic technique, holds promise for monitoring biochemical changes throughout the initiation and progression of different diseases, including cardiomyopathies. This study demonstrates the effectiveness of 70% glycerol as a hyperosmotic immersion liquid for in-depth controlling the optical properties of ex vivo myocardium tissue during deep-UV Raman spectroscopy with 244 nm excitation. The results revealed a considerable enhancement in the intensities of Raman peak, particularly the amide I region after glycerol treatment. This occurred across all depths (0−120 μm) and glycerol treatment durations (30 and 60 min). A noticeable enhancement of the Raman peak at 1647 cm−1 was also observed that is attributable to structural transformations of the collagen due to the dehydration induced by glycerol. This finding suggest that deep-UV Raman can be employed as a specific probe of the collagen environment. As the amide I region reflects structural changes in collagen type I, these findings propose the potential of deep-UV Raman spectroscopy in combination with glycerol as optical clearing agent for monitoring collagen modifications.

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