Water channel

水通道
  • 文章类型: Journal Article
    水通道蛋白(AQP)通道能够调节水和溶质的运输,这是流体稳态所必需的。但它们作为抗癌疗法的靶点正受到关注。通过系统评价(PubMed和Embase)和RNAseq数据的转录组学分析(人蛋白质图谱数据库)评估患者的AQP表达和存活率的模式。荟萃分析证实AQP蛋白和RNA表达水平与患者生存时间之间主要呈负相关。最值得注意的是肺中的AQP1,乳腺癌和前列腺癌;AQP3在食管癌,肝癌和乳腺癌;AQP9在肝癌中的作用。AQP的表达模式聚集在癌症组中,并与死亡风险相关。在人类癌症活组织检查中AQP1-10的定量转录组分析类似地显示,AQP1、3、5和9的转录水平增加最常见地与低存活率相关。出乎意料的是,AQP7和AQP8水平升高与神经胶质瘤更好的生存时间相关,卵巢癌和子宫内膜癌,并增加AQP11,在结直肠癌和乳腺癌中具有更好的生存率。尽管水通道蛋白在病理或保护中的分子机制仍有待完全定义,此处的结果支持以下假设:选定AQPs类别的过表达差异增强了癌症进展.除了液体稳态,AQPs在癌症中的潜在作用(从对其在正常组织中的功能的扩大认识中提出)包括细胞运动性,膜过程扩展,信号分子的运输,增殖和凋亡的控制,增加机械合规性,和气体交换。AQP的表达也与化疗敏感性的差异有关。提示作为个性化治疗的生物标志物的可能作用。AQP药物调节剂的发展,以癌症特异性组合施用,可能会激发新的干预措施来控制恶性肿瘤。
    Aquaporin (AQP) channels enable regulated transport of water and solutes essential for fluid homeostasis, but they are gaining attention as targets for anticancer therapies. Patterns of AQP expression and survival rates for patients were evaluated by systematic review (PubMed and Embase) and transcriptomic analyses of RNAseq data (Human Protein Atlas database). Meta-analyses confirmed predominantly negative associations between AQP protein and RNA expression levels and patient survival times, most notably for AQP1 in lung, breast and prostate cancers; AQP3 in esophageal, liver and breast cancers; and AQP9 in liver cancer. Patterns of AQP expression were clustered for groups of cancers and associated with risk of death. A quantitative transcriptomic analysis of AQP1-10 in human cancer biopsies similarly showed that increased transcript levels of AQPs 1, 3, 5 and 9 were most frequently associated with poor survival. Unexpectedly, increased AQP7 and AQP8 levels were associated with better survival times in glioma, ovarian and endometrial cancers, and increased AQP11 with better survival in colorectal and breast cancers. Although molecular mechanisms of aquaporins in pathology or protection remain to be fully defined, results here support the hypothesis that overexpression of selected classes of AQPs differentially augments cancer progression. Beyond fluid homeostasis, potential roles for AQPs in cancers (suggested from an expanding appreciation of their functions in normal tissues) include cell motility, membrane process extension, transport of signaling molecules, control of proliferation and apoptosis, increased mechanical compliance, and gas exchange. AQP expression also has been linked to differences in sensitivity to chemotherapy treatments, suggesting possible roles as biomarkers for personalized treatments. Development of AQP pharmacological modulators, administered in cancer-specific combinations, might inspire new interventions for controlling malignant carcinomas.
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  • 文章类型: Journal Article
    中耳炎(OM)是指中耳(ME)的炎症性疾病,不论病因或病理机制。在评估OM病理学的分子生物学研究中,有研究水通道蛋白(AQP)在ME和咽鼓管(ET)中的表达。迄今为止,15项研究评估了AQPs在ME和ET中的表达。尽管各个AQPs的表达因物种和模型而异,11种AQP,发现AQP1至AQP11在哺乳动物ME和ET中表达。综述显示:(1)不同类型的AQPs在ME和ET中表达;(2)AQP的表达可能因物种而异;(3)AQPs的分布和表达水平可能取决于炎症的存在与否。即使在同一物种和同一组织中也存在差异。ME和ET中的液体积聚是所有类型OM的共同病理机制,引起组织水肿和炎症,因此可能涉及各种AQP。几种AQP的表达模式,特别是AQP1,4和5,被发现在响应炎症刺激时发生改变,包括脂多糖(LPS),表明AQPs在OM中可能具有免疫功能。
    Otitis media (OM) refers to inflammatory diseases of the middle ear (ME), regardless of cause or pathological mechanism. Among the molecular biological studies assessing the pathology of OM are investigations of the expression of aquaporins (AQPs) in the ME and Eustachian tube (ET). To date, fifteen studies have evaluated AQPs expression in the ME and ET. Although the expression of individual AQPs varies by species and model, eleven types of AQP, AQP1 to AQP11, were found to be expressed in mammalian ME and ET. The review showed that: (1) various types of AQPs are expressed in the ME and ET; (2) AQP expression may vary by species; and (3) the distribution and levels of expression of AQPs may depend on the presence or absence of inflammation, with variations even in the same species and same tissue. Fluid accumulation in the ME and ET is a common pathological mechanism for all types of OM, causing edema in the tissue and inducing inflammation, thereby possibly involving various AQPs. The expression patterns of several AQPs, especially AQP1, 4 and 5, were found to be altered in response to inflammatory stimuli, including lipopolysaccharide (LPS), suggesting that AQPs may have immunological functions in OM.
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