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A real-time ratiometric method for the determination of molecular oxygeninside living cells using sol-gel-based spherical optical nanosensors withapplications to rat C6 glioma

机译:基于溶胶-凝胶的球形光学纳米传感器实时定量测定体内氧分子的方法及其在大鼠C6神经胶质瘤中的应用

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摘要

The first sol-gel-based, ratiometric, optical nanosensors, or sol-gel probes encapsulated by biologically localized embedding (PEBBLEs), are made and demonstrated here to enable reliable, real-time measurements of subcellular molecular oxygen. Sensors were made using a modified Stober method, with poly(ethylene glycol) as a steric stabilizer. The radii of these spherical PEBBLE sensors range from about 50 to 300 mn. These sensors incorporate an oxygen-sensitive fluorescent indicator, Ru(Il)tris(4,7-diphenyl-1,10-phenanthroline) chloride ([Ru(dpp)(3)](2+)), and an oxygen-insensitive fluorescent dye, Oregon Green 488-dextran, as a reference for the purpose of ratiometric intensity measurements. The PEBBLE sensors have excellent reversibility, dynamic range, and stability to leaching and photobleaching. The small size and inert matrix of these sensors allow them to be inserted into living cells with minimal physical and chemical perturbations to their biological functions. Applications of sol-gel PEBBLEs inserted in rat C6 glioma cells for real-time intracellular oxygen analysis are demonstrated. Compared to using free dyes for intracellular measurements, the PEBBLE matrix protects the fluorescent dyes from interference by proteins in cells, enabling reliable in vivo chemical analysis. Conversely, the matrix also significantly reduces the toxicity of the indicator and reference dyes to the cells, so that a wide variety of dyes can be used in optimal fashion.
机译:制作并展示了首批通过生物局部包埋(PEBBLE)封装的基于溶胶-凝胶的,比例式光学纳米传感器或溶胶-凝胶探针,能够可靠,实时地测量亚细胞分子氧。使用改良的Stober方法,以聚(乙二醇)作为空间稳定剂来制作传感器。这些球形PEBBLE传感器的半径范围约为50到300 mn。这些传感器包含对氧气敏感的荧光指示剂,Ru(Il)tris(4,7-diphenyl-1,10-phenthrothline)chloride([Ru(dpp)(3)](2+))和对氧气不敏感的荧光染料Oregon Green 488-葡聚糖,作为比例强度测量的参考。 PEBBLE传感器具有出色的可逆性,动态范围以及对浸出和光漂白的稳定性。这些传感器的小尺寸和惰性矩阵使其可以插入到活细胞中,而对其生物学功能的物理和化学干扰最小。展示了在大鼠C6胶质瘤细胞中插入的溶胶-凝胶PEBBLE在实时细胞内氧分析中的应用。与使用游离染料进行细胞内测量相比,PEBBLE基质可保护荧光染料免受细胞蛋白质的干扰,从而实现可靠的体内化学分析。相反,基质也显着降低了指示剂和参考染料对细胞的毒性,因此可以以最佳方式使用多种染料。

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