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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Preparation, characterization and evaluation of the zinc titanate and silver nitrate incorporated wipes for topical chemical and biological decontamination
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Preparation, characterization and evaluation of the zinc titanate and silver nitrate incorporated wipes for topical chemical and biological decontamination

机译:钛酸锌和硝酸银掺入局部化学和生物去污的制备,表征和评价

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Chemical and biological warfare agents have detrimental effects on biological systems. These agents are rapidly absorbed through skin and hence warrant immediate decontamination. Zinc titanate (ZnTiO3), is a well-proven moiety used for neutralizing chemical warfare agents (CWA) and silver is widely used as an antibacterial agent. Spacer fabric sheet, due to its ability to hold large amount of agents, was hydrothermally treated with silver nitrate (AgNO3) and incorporated with nano ZnTiO3 to prepare decontamination (deconwipes). Prepared deconwipe was characterized using X-ray diffraction (XRD) and Scanning Electron Microscopy (SEM). Uniform deposition of nano ZnTiO3 and AgNO3 in the wipe was demonstrated by SEM and XRD. In-vivo dermal decontamination efficacy of the prepared deconwipe was evaluated against nerve agent simulant (diethylchlorophosphate; DCP) and sulfur mustard simulant (2-chloroethyl ethyl sulfide; CEES) on rat model using SEM, Flow Cytometry, Comet Acetylcholinesterase (AChE) inhibition assay and Organ Histopathology. In-vitro antibacterial and antifungal efficacy of the prepared deconwipe was evaluated using growth inhibitory efficacy techniques followed by SEM analysis. SEM and histopathology at dermal level revealed the decontamination efficacy of the prepared deconwipe. Nearly 90% decrease in AChE inhibition was observed in decontaminated rat in place of rate model as compared to the DCP contaminated rats. No significant attenuation was observed in DCP and CEES-induced cell cycle distribution and DNA damage analysis in decontaminated group. Furthermore, 95% inhibition of bacterial and fungal growth, proved its antibacterial and antifungal activity respectively. Thus, prepared deconwipes exhibit promising skin decontamination property against Chemical and biological contaminants.
机译:化学和生物战争试剂对生物系统有不利影响。这些药剂迅速通过皮肤吸收,因此不准确进行净化。钛酸锌(ZnTiO3),是用于中和化学战剂(CWA)和银广泛用作抗菌剂的经过精力化的部分。垫片织物片由于其保持大量剂的能力,用硝酸银(AgNO 3)水热处理并掺入纳米ZnTiO3以制备净化(解屑)。使用X射线衍射(XRD)和扫描电子显微镜(SEM)表征制备的Deconwipe。通过SEM和XRD对晶片中的纳米ZnTiO3和AgNO 3的均匀沉积。使用SEM,流式细胞术,彗星乙酰胆碱酯酶(ACHE)抑制测定,对药物模拟剂(二乙基氯磷酸盐; DCP)和硫芥末模拟剂(2-氯乙基硫醚; CEE)进行硫磺芥子模拟剂(2-氯乙基硫醚; CEES)评价制备的脱诺瓦的体内皮肤净化效果。和器官组织病理学。使用生长抑制疗效技术评估制备的脱屑骨的体外抗菌和抗真菌效果,然后进行SEM分析。皮肤水平的SEM和组织病理学揭示了制备的废弃物的去污功效。与DCP受污染的大鼠相比,在净化的大鼠中观察到近90%的疼痛抑制降低。在DCP和CEES诱导的细胞周期分布和DNA损伤分析中未观察到显着衰减,在净化群中的DNA损伤分析。此外,&细菌和真菌生长的95%抑制,证明了其抗菌和抗真菌活性。因此,制备的解屑表现出对化学和生物污染物的有前途的皮肤去污性。

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