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Fabrication and surface characterisation of c-ZnO loaded TTDMM dendrimer nanocomposites for biological applications

机译:用于生物应用的C-ZnO负载TTDMM树突纳米复合材料的制造和表面表征

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The paper reports synthesis, characterisation and biological assessment of c-ZnO NP loaded TTDMM nanocomposites (cZTNCs) using c-ZnO NP and trimesoyl 1,3,5-trimethyl malonate ester (TTDMM) in 3:1 ratio in ethanol at 35 degrees C for 24 h. UV absorption and FTIR stretching frequency (SF) both infer a development of cZTNCs. TTDMM hydrophobicity facilitated the c-ZnO NP 1: 1 dispersion and its size reduction, well supported by DLS and TEM studies having zeta-potential (27.04 mV) and size (17.76 nm) respectively. The NCs size was slightly lower than c-ZnO NP (20 nm) without structural conformation depicted via bond length (0.19660 nm) retrieved from XRD. The structural and morphology behaviour of c-ZnO NP accumulated inside the void spaces of TTDMM depends on their lone pair electron (LPE), pi-electron (PE), delocalisation energy (DLE) and hydrophobicity were investigated using SEM, AFM and TGA. The NCs have revealed highest DPPH. scavenging (84.74%) at 160 mu g/mL than c-ZnO NPs. Antimicrobial activity was assessed that displays both cZTNCs and c-ZnO NPs have significant bactericidal efficacy against gram positive (Bacillus subtilis; Staphylococcus aureus and gram negative bacteria (Klebsiella pneumoniae; Proteus vulgaris) but no effect against fungus (Candida albicans). Although, anticancer potency against HeLa cells line was performed where cZTNCs proved to be more active than c-ZnO NPs. Moreover, anticancer activity depicted a direct dose dependent correlation with antioxidant assessment.
机译:本文在35摄氏度下,在3:1的比例下,在3:1的比例下,在3:1的比例下,将C-ZNO NP和TTDMM纳米复合材料(CZTNC)的合成,表征和生物学评估报告合成,表征和生物学评估为3:1的比例24小时。 UV吸收和FTIR拉伸频率(SF)推断CZTNC的发展。 TTDMM疏水性促进C-ZnO NP 1:1分散和其尺寸减少,通过分别具有Zeta-posity(27.04mV)和尺寸(17.76nm)的DLS和TEM研究的良好支持。 NCS尺寸略低于C-ZnO NP(20nm),没有通过从XRD检索的粘合长度(0.19660nm)所示的结构构象。在TTDMM的空隙空间内累积的C-ZnO NP的结构和形貌行为取决于它们的孤立电子(LPE),使用SEM,AFM和TGA研究了PI-电子(PE),疏水化能量(DLE)和疏水性。 NCS揭示了最高的DPPH。清除(84.74%)比C-ZnO NPS为160 mu g / ml。评估抗微生物活性,表现出CZTNC和C-ZnO NPS具有显着的杀菌效果,对克阳性(芽孢杆菌花金黄色葡萄球菌和克肾阴性细菌(Klebsiella肺炎;蛋白质),但对真菌(念珠菌蛋白质)没有影响(念珠菌)。虽然,抗癌对HeLa细胞系的效力进行了效力,其中CZTNC被证明比C-ZnO NP更活跃。此外,抗癌活性描绘了与抗氧化剂评估的直接剂量依赖性相关性。

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