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Quantitative Monitoring of Hypoxia-Induced Intracellular Acidification in Lung Tumor Cells and Tissues Using Activatable Surface-Enhanced Raman Scattering Nanoprobes

机译:使用可活化的表面增强拉曼散射纳米探针对缺氧诱导的肺肿瘤细胞和组织内细胞内酸化的定量监测

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摘要

Hypoxia is considered to contribute to pathophysiology in various cells and tissues, and a clear understanding about the relationship between hypoxia and intracellular acidification will help to elucidate the complex mechanism of glycolysis under hypoxia. However, current studies are mainly focused on overexpression of intracellular reductases accelerated by hypoxia, and the investigations focusing on the relationship between hypoxic degree and intracellular acidification remain to be explored. For this vacuity, we report herein a new activatable nanoprobe for sensing pH change under different degrees of hypoxia by surface-enhanced Raman spectroscopy (SERS). The monitoring was based on the SERS spectra changes of 4-nitrothiophenol (4-NTP)-functionalized gold nanorods (AuNR@4-NTP) resulting from the nitroreductase (NTR)-triggered reduction under hypoxic conditions while the as-generated 4-aminothiophenol (4-ATP) is a pH-sensitive molecule. This unique property can ensure the SERS monitoring of intracellular acidification in living cells and tissues under hypoxic conditions. Dynamic pH analysis indicated that the pH decreased from 7.1 to 6.5 as a function of different degrees of hypoxia (from 15 to 1%) due to excessive glycolytic activity triggered by hypoxia. Given the known advantages of SERS sensing, these findings hold promise in studies of pathophysiological pathways involving hypoxia.
机译:低氧被认为有助于各种细胞和组织的病理生理,而对低氧与细胞内酸化之间关系的清晰理解将有助于阐明低氧条件下糖酵解的复杂机制。但是,目前的研究主要集中在缺氧促进的细胞内还原酶的过表达,而关于低氧程度与细胞内酸化之间关系的研究尚待探索。对于这种真空,我们在此报告了一种新的可激活的纳米探针,用于通过表面增强拉曼光谱(SERS)感测不同程度缺氧情况下的pH变化。监测基于缺氧条件下硝基还原酶(NTR)触发还原而导致的4-硝基硫酚(4-NTP)-官能化的金纳米棒(AuNR @ 4-NTP)的SERS光谱变化,而生成的4-氨基硫酚(4-ATP)是pH敏感分子。这种独特的特性可以确保在缺氧条件下对活细胞和组织中细胞内酸化的SERS监测。动态pH分析表明,由于缺氧引起的过度糖酵解活性,pH值从不同程度的缺氧(从15%降至1%)从7.1降至6.5。鉴于SERS传感的已知优势,这些发现在涉及缺氧的病理生理途径研究中具有希望。

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