Sangeetha B, Leroy K I, Udaya Kumar B
Department of Biotechnology, St Joseph's College of Engineering, Chennai, Tamilnadu, India.
Cell Biochem Funct. 2024 Dec;42(8):e70020. doi: 10.1002/cbf.70020.
The technique of using naturally occurring light-emitting reactants (photoproteins and luciferases] that have been extracted from a wide range of animals is known as bioluminescence imaging, or BLI. This imaging offers important details on the location and functional state of regenerative cells inserted into various disease-modeling animals. Reports on gene expression patterns, cell motions, and even the actions of individual biomolecules in whole tissues and live animals have all been made possible by bioluminescence. Generally speaking, bioluminescent light in animals may be found down to a few centimetres, while the precise limit depends on the signal's brightness and the detector's sensitivity. We can now spatiotemporally visualize cell behaviors in any body region of a living animal in a time frame process, including proliferation, apoptosis, migration, and immunological responses, thanks to BLI. The biological applications of in vivo BLI in nondestructively monitoring biological processes in intact small animal models are reviewed in this work, along with some of the advancements that will make BLI a more versatile molecular imaging tool.
利用从多种动物中提取的天然发光反应物(光蛋白和荧光素酶)的技术被称为生物发光成像,即BLI。这种成像提供了关于植入各种疾病建模动物体内的再生细胞的位置和功能状态的重要细节。生物发光使得关于基因表达模式、细胞运动,甚至全组织和活体动物中单个生物分子的行为的报告成为可能。一般来说,动物体内的生物发光在几厘米深处都能被检测到,而精确的限度取决于信号的亮度和探测器的灵敏度。借助BLI,我们现在能够在一个时间框架过程中时空可视化活体动物任何身体区域内的细胞行为,包括增殖、凋亡、迁移和免疫反应。本文综述了体内BLI在无损监测完整小动物模型中的生物过程的生物学应用,以及一些将使BLI成为更通用分子成像工具的进展。