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Phthalocyanine incorporated alginate hydrogel with near infrared fluorescence for non-invasive imaging monitoring in vivo

机译:酞菁结合藻酸盐水凝胶与近红外荧光,用于体内无创成像监测

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In vivo fates of alginate compounds are crucial for developing their biomedical applications. Near infrared fluorescence imaging in vivo can non-invasively monitor and reveal the process of the implants. Herein, a near infrared fluorescent alginate conjugated PEG was prepared by labeling zinc phthalocyanine, and then a dual fluorescent drug delivery system was designed with a rhodamine-loaded zinc phthalocyanine conjugated hydrogel. The hydrogel erosion and drug delivery in vivo were non-invasively tracked by a multispectral fluorescence imaging system with nude mice as models. The in vivo near infrared fluorescence imaging results revealed the real time process of the visible drug delivery system based on the alginate hydrogel. A multispectral fluorescence imaging technique can separate the fluorescence signals of the drug and the carrier from the drug-loaded hydrogel. The phthalocyanine-incorporated alginate hydrogel is a potential visible implant system.
机译:海藻酸盐化合物的体内命运对于发展其生物医学应用至关重要。体内近红外荧光成像 可以无创地监测和揭示植入物的过程。在此,通过标记酞菁锌制备了近红外荧光藻酸盐缀合的PEG,然后设计了具有罗丹明的锌酞菁缀合水凝胶的双荧光药物递送系统。通过以裸鼠为模型的多光谱荧光成像系统非侵入性地追踪水凝胶的侵蚀和体内的药物传递。 体内近红外荧光成像结果揭示了基于藻酸盐水凝胶的可见药物递送系统的实时过程。多光谱荧光成像技术可以从载有药物的水凝胶中分离出药物和载体的荧光信号。并入酞菁的藻酸盐水凝胶是潜在的可见植入系统。

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