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Mapping the pharyngeal and intestinal pH of Caenorhabditis elegans and real-time luminal pH oscillations using extended dynamic range pH-sensitive nanosensors

机译:使用扩展的动态范围pH敏感纳米传感器绘制秀丽隐杆线虫的咽部和肠道pH值以及实时腔内pH振荡

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Extended dynamic range pH-sensitive ratiometric nanosensors, capable of accurately mapping the full physiological pH range, have been developed and used to characterize the pH of the pharyngeal and intestinal lumen of Caenorhabditis elegans in real-time. Nanosensors, 40 nm in diameter, were prepared by conjugating pH-sensitive fluorophores, carboxyfluorescein (FAM) and Oregon Green (OG) in a 1:1 ratio, and a reference fluorophore, 5-(and-6)- carboxytetramethylrhodamine (TAMRA) to an inert polyacrylamide matrix. Accurate ratiometric pH measurements were calculated through determination of the fluorescence ratio between the pH-sensitive and reference fluorophores. Nanosensors were calibrated with an automated image analysis system and validated to demonstrate a pH measurement resolution of ±0.17 pH units. The motility of C. elegans populations, as an indicator for viability, showed nematodes treated with nanosensors, for concentrations ranging from 50.00 to 3.13 mg/mL, were not statistically different to nematodes not challenged with nanosensors up to a period of 4 days (p < 0.05). The nanosensors were also found to remain in the C. elegans lumen >24 h after nanosensor challenge was removed. The pH of viable C. elegans lumen was found to range from 5.96 ± 0.31 in the anterior pharynx to 3.59 ± 0.09 in the posterior intestine. The pharyngeal pumping rate, which dictates the transfer of ingested material from the pharynx to the intestine, was found to be temperature dependent. Imaging C. elegans at 4 C reduced the pharyngeal pumping rate to 7 contractions/min and enabled the reconstruction of rhythmic pH oscillations in the intestinal lumen in real-time with fluorescence microscopy.
机译:已开发出能够精确映射整个生理pH范围的扩展动态范围pH敏感比例纳米传感器,并用于实时表征秀丽隐杆线虫的咽和肠腔的pH。通过将pH敏感的荧光团,羧基荧光素(FAM)和俄勒冈绿色(OG)以1:1的比例以及参比荧光团5-(和-6)-羧基四甲基罗丹明(TAMRA)偶联制备直径为40 nm的纳米传感器惰性聚丙烯酰胺基质。通过确定pH敏感荧光团和参考荧光团之间的荧光比率,可以计算出精确的比例pH测量值。纳米传感器已通过自动图像分析系统进行了校准,并经过验证可显示±0.17 pH单位的pH测量分辨率。秀丽隐杆线虫种群的活力,作为生存力的指标,显示了用纳米传感器处理的线虫的浓度范围为50.00至3.13 mg / mL,与未经纳米传感器攻击的线虫在长达4天的时间里没有统计学差异(p <0.05)。在去除纳米传感器攻击后,也发现纳米传感器保留在秀丽隐杆线虫腔中> 24 h。发现线虫的内腔的pH值范围在咽前部为5.96±0.31至后肠中为3.59±0.09。发现咽的抽速与温度有关,该抽速决定了摄入的物质从咽部转移到肠道。在4 C下对秀丽隐杆线虫进行成像可将咽部抽血速率降低至7个收缩/分钟,并通过荧光显微镜实时重建肠腔内的节律性pH振荡。

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