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Unraveling the electrochemical properties of lanthanum cobaltite decorated halloysite nanotube nanocomposite: An advanced electrocatalyst for determination of flutamide in environmental samples.

揭示钴酸镧修饰埃洛石纳米管纳米复合材料的电化学性能: 一种用于环境样品中氟他胺测定的高级电催化剂。

  • 影响因子:4.88
  • DOI:10.1016/j.ecoenv.2019.110098
  • 作者列表:"Suvina V","Kokulnathan T","Wang TJ","Balakrishna RG
  • 发表时间:2020-03-01
Abstract

:Prostate cancer is one of the primary causes of death around the world. As an important drug, flutamide has been used in the clinical diagnosis of prostate cancer. However, the over dosage and improper discharge of flutamide could affect the living organism. Thus, it necessary to develop the sensor for detection of flutamide with highly sensitivity. In this paper, we report the synthesis of lanthanum cobaltite decorated halloysite nanotube (LCO/HNT) nanocomposite prepared by a facile method and evaluated for selective reduction of flutamide. The as-prepared LCO/HNT nanocomposite shows the best catalytic performance towards detection of flutamide, when compared to other bare and modified electrodes. The good electrochemical performance of the LCO/HNT nanocomposite modified electrode is ascribed to abundant active sites, large specific surface area and their synergetic effects. Furthermore, the LCO/HNT modified electrode exhibits low detection limit (0.002 μM), wide working range (0.009-145 μM) and excellent selectivity with remarkable stability. Meaningfully, the developed electrochemical sensor was applied in real environmental samples with an acceptable recovery range.

摘要

: 前列腺癌是世界各地死亡的主要原因之一。作为一种重要的药物,氟他胺已用于前列腺癌的临床诊断。然而,氟他胺的过量和不当排放会影响活体。因此,有必要开发高灵敏度的氟他胺检测传感器。本文报道了用一种简单的方法合成钴酸镧修饰的埃洛石纳米管 (LCO/HNT) 纳米复合材料,并评价了氟他胺的选择性还原。与其他裸电极和修饰电极相比,制备的 LCO/HNT 纳米复合材料对氟他胺的检测表现出最佳的催化性能。LCO/HNT 纳米复合修饰电极的良好电化学性能归因于丰富的活性位点、大的比表面积及其协同效应。此外,LCO/HNT 修饰电极具有低检出限 (0.002 μ m) 、宽工作范围 (0.009-145 μ m) 和优异的选择性,具有显著的稳定性。有意义的是,所开发的电化学传感器应用于实际环境样品中,回收率在可接受的范围内。

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影响因子:6.93
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DOI:10.1002/ijc.32847
作者列表:["Abrahamsson H","Jensen BV","Berven LL","Nielsen DL","Šaltytė Benth J","Johansen JS","Larsen FO","Johansen JS","Ree AH"]

METHODS::In colorectal cancer (CRC), hepatic arterial infusion (HAI) chemotherapy may convert primarily unresectable CRC liver metastases (CLM) into resectability, although the risk of metastatic recurrence remains high after CLM ablation. We investigated the role of antitumour immunity invoked by first-line oxaliplatin-HAI for long-term CLM outcome. In a prospective study cohort of primarily unresectable CLM, we assessed patients' fms-related tyrosine kinase 3 ligand (FLT3LG) in serum, reflecting opportune intratumoural immune activity, at baseline and following 1-3 sequences of oxaliplatin-HAI. The end points were CLM resectability and overall survival. Patients who presented an immediate twofold increment of circulating FLT3LG during the treatment and at its completion were scored as CLM resectable (16.4% with both features), were alive at final follow-up 8-12 years later. All patients experienced FLT3LG increase during the treatment course, but those who remained unresectable or had the disease converted but presented a slow and gradual FLT3LG accretion, later died of the metastatic disease. These data provide further support to our previous findings that tumour-directed immunity invoked by oxaliplatin-containing therapy predicts excellent outcome of early advanced CRC if macroscopic tumour ablation is rendered possible by the 'classic' tumour response to the cytotoxic treatment.

翻译标题与摘要 下载文献
影响因子:4.88
发表时间:2020-03-01
DOI:10.1016/j.ecoenv.2019.110098
作者列表:["Suvina V","Kokulnathan T","Wang TJ","Balakrishna RG"]

METHODS::Prostate cancer is one of the primary causes of death around the world. As an important drug, flutamide has been used in the clinical diagnosis of prostate cancer. However, the over dosage and improper discharge of flutamide could affect the living organism. Thus, it necessary to develop the sensor for detection of flutamide with highly sensitivity. In this paper, we report the synthesis of lanthanum cobaltite decorated halloysite nanotube (LCO/HNT) nanocomposite prepared by a facile method and evaluated for selective reduction of flutamide. The as-prepared LCO/HNT nanocomposite shows the best catalytic performance towards detection of flutamide, when compared to other bare and modified electrodes. The good electrochemical performance of the LCO/HNT nanocomposite modified electrode is ascribed to abundant active sites, large specific surface area and their synergetic effects. Furthermore, the LCO/HNT modified electrode exhibits low detection limit (0.002 μM), wide working range (0.009-145 μM) and excellent selectivity with remarkable stability. Meaningfully, the developed electrochemical sensor was applied in real environmental samples with an acceptable recovery range.

翻译标题与摘要 下载文献
影响因子:6.50
发表时间:2020-03-31
来源期刊:Cancer letters
DOI:10.1016/j.canlet.2019.12.039
作者列表:["Zhou Z","Zhou Q","Wu X","Xu S","Hu X","Tao X","Li B","Peng J","Li D","Shen L","Cao Y","Yang L"]

METHODS::Several studies have indicated that cancer-associated fibroblasts (CAFs) could promote cancer progression in many malignancies. However, the mechanism by which CAFs promote the growth and metastasis of lung cancer remains poorly defined. In the present study, CAFs and normal fibroblasts (NFs) were isolated from human lung cancer and adjacent tissue. The data showed that the conditional medium (CM) of CAFs could increase the proliferation, migration and invasion of lung cancer cells. Vascular cell adhesion molecule-1 (VCAM-1) showed a higher expression in CAF-CM than NF-CM, and blocking VCAM-1 in CAF-CM attenuated the proliferation and invasion of cancer cells. Further, the results showed that VCAM-1 secreted from CAFs activated AKT and MAPK signaling via receptor α4β1 integrin (very-late antigen (VLA)-4) in lung cancer cells. Moreover, CAFs promoted VCAM-1 expression and tumor growth in vivo. Additionally, bioinformatics analysis indicated a positive correlation on the CAF marker protein alpha-smooth muscle actin (α-SMA) and VCAM-1 expression, which was associated with a poor prognosis in lung cancer patients. These findings demonstrate that the VCAM-1 secreted from CAFs enhances growth and invasion by activating the AKT and MAPK signaling of lung cancer cells.

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