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Two-photon fluorescent probe for hypoxic cancer stem cells by responding to endogenous nitroreductase

机译:响应内源性硝基还原酶的缺氧癌干细胞的双光子荧光探针

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Hypoxia is a fundamental feature of tumor formation, and it plays an important role in the maintenance of cancer cell growth. It has been proven that cancer stem cells (CSC) initiate tumor formation, recurrence, and metastasis. CSCs reside in a hypoxic microenvironment with high biological nitroreductase (NTR) levels, which are closely related to biological hypoxia status. Therefore, it is important to develop probes for detecting the levels of NTR in the tumor microenvironment of CSCs and destruction of the ‘soil’ of CSCs. Traditional NTR detection fluorescent probes are one-photon excited and need ultraviolet or visible light, which limits the application of probes in biomedical science because of poor tissue penetration. However, two-photon excited probes are more suitable for bioimaging due to the extended wavelength to near-infrared. In this study, we developed a two-photon fluorescent probe to detect NTR in 3D cultured-CSCs and monitor the hypoxic microenvironment in vitro. The two-photon fluorescent molecular probe with a hypoxic specific response group can be reduced by NTR under hypoxic conditions. This probe exhibited desirable characteristics such as high selectivity, no cytotoxicity, and a hypoxic fluorescence response. The probe can be applied for the detection of hypoxia status of tumour cells and tumour sphere cells. This novel probe has the potential to be applied to disease-relevant hypoxia detection in biomedical research.
机译:缺氧是肿瘤形成的基本特征,并且在维持癌细胞生长中起重要作用。业已证明,癌症干细胞(CSC)会引发肿瘤的形成,复发和转移。 CSC处于具有高生物硝化还原酶(NTR)水平的低氧微环境中,这与生物低氧状态密切相关。因此,开发用于检测CSCs肿瘤微环境中NTR水平和CSCs“土壤”破坏的探针非常重要。传统的NTR检测荧光探针是单光子激发的,需要紫外线或可见光,由于组织穿透力差,限制了探针在生物医学领域的应用。但是,由于将波长扩展到近红外,因此双光子激发的探针更适合于生物成像。在这项研究中,我们开发了一种双光子荧光探针,可检测3D培养的CSC中的NTR并在体外监测缺氧的微环境。具有低氧特异性反应基团的双光子荧光分子探针可以在低氧条件下被NTR还原。该探针表现出合乎需要的特性,例如高选择性,无细胞毒性和低氧荧光反应。该探针可用于检测肿瘤细胞和肿瘤球细胞的缺氧状态。这种新颖的探针有潜力应用于生物医学研究中与疾病相关的缺氧检测。

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