Unlocking the potential of biocompatible chitosan-hyaluronic acid nanogels labeled with fluorochromes: A promising step toward enhanced FRET bioimaging

生物相容性材料 透明质酸 壳聚糖 化学 纳米技术 费斯特共振能量转移 纳米凝胶 荧光 材料科学 生物医学工程 药物输送 医学 生物化学 量子力学 解剖 物理
作者
Sorina Nicoleta Voicu,Maria Mernea,Juliette Moreau,Charles-Emmanuel Carteret,Maïté Callewaert,Françoise Chuburu,Hildegard Herman,Anca Hermenean,Dan Mihăilescu,Miruna S. Stan
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:282 (Pt 4): 137063-137063 被引量:6
标识
DOI:10.1016/j.ijbiomac.2024.137063
摘要

Chitosan is a natural polysaccharide widely used in medical formulations as nanoparticles due to their special properties. Our work aimed to assess the biocompatibility of chitosan-hyaluronic acid nanogels labeled with fluorochromes for use in biomedical applications, based on the FRET effect. The preparation method included the ionic gelation, grafting rhodamine or fluorescein isothiocyanate molecules onto the chitosan backbone. To assess the potential applications as fluorescence imaging tools of chitosan-fluorophores conjugates in diagnostics and therapies, SVEC4-10 cells (simian virus 40-transformed mouse microvascular endothelial cell line) and RAW264.7 murine macrophages were used within this study. Good biocompatibility was observed after 6 and 24 h of incubation with nanogels, with no increase in cell death or membrane damage for concentrations up to 120 μg/mL. Both types of fluorescent nanogels presented the tendency to agglomerate on the cell membrane's surface, and few cells were internalized, especially at the periphery of cells. Molecular dynamics simulations showed that distances between fluorophores fitted at values close to those calculated based on FRET experiments. These formulations can further incorporate gadolinium for better nanomedicine tools. • Chitosan nanogels with fluorochrome labeling are biocompatible for medical use. • Fluorescent nanogels showed good cell viability and membrane integrity. • Confocal microscopy revealed surface aggregation on cell membranes. • Molecular dynamics simulations supported the FRET effect. • These nanogels hold potential for improved MRI diagnostics with gadolinium.
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