Ahmad Nafees, Sultana Saima, Faisal Syed Mohd, Ahmed Anees, Sabir Suhail, Khan Mohammad Zain
Environmental Research Laboratory, Department of Chemistry, Aligarh Muslim University Aligarh 202002 India
Molecular Immunology Laboratory, Interdisciplinary Biotechnology Unit, Aligarh Muslim University Aligarh 202002 India.
RSC Adv. 2019 Dec 12;9(70):41135-41150. doi: 10.1039/c9ra06493a. eCollection 2019 Dec 9.
A bio-nanocomposite matrix of polypyrrole grafted ZnO/chitosan (Ppy/C/Z) was synthesized the polymerization of pyrrole with different weight fractions of ZnO. Incorporation of ZnO nanoparticles with polypyrrole enhances the photocatalytic, antibacterial as well as cytotoxic properties of the resultant composite. Characterizations of the synthesized product were performed by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR) and thermal analysis (TGA and DTA). Surface morphology and particle size were determined by SEM and TEM. The elemental composition of the material was studied by EDX coupled with SEM. Electrochemical surface area was calculated from electrochemical double layer capacitance (EDLC) measurements using cyclic voltammetry. The photocatalytic activity of the composite material was tested by monitoring the degradation of reactive orange-16 (RO-16), Coomassie Brilliant Blue R-250 (CBB-R-250) and Methylene Blue (MB) dyes and the composite was found to be an effective catalyst in the presence of a UV light source. Various scavengers were used to detect the reactive species involved in the photocatalytic process. Furthermore, the stability of the photocatalyst was assessed by recycling experiments. Moreover, the Ppy/C/Z bio-nanocomposite shows potential application with anti-bacterial and anti-cancer activity against Gram-positive and Gram-negative bacterial pathogens and human cancer cell lines (HeLa and MCF-7). The experimental data confirm that the bio-nanocomposite of Ppy/C/Z showed excellent anti-bacterial and anti-cancer activity as compared to a pristine polypyrrole and chitosan formulation (Ppy/C). The apoptosis data with varying concentrations of Ppy/C/Z reveal the remarkable activity against these cancer cell lines.
通过吡咯与不同重量分数的氧化锌聚合反应,合成了聚吡咯接枝氧化锌/壳聚糖(Ppy/C/Z)生物纳米复合基质。将氧化锌纳米颗粒与聚吡咯结合,可增强所得复合材料的光催化、抗菌以及细胞毒性。通过X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和热分析(TGA和DTA)对合成产物进行表征。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)确定表面形态和粒径。使用能谱仪(EDX)结合扫描电子显微镜研究材料的元素组成。通过循环伏安法测量电化学双层电容(EDLC)来计算电化学表面积。通过监测活性橙16(RO-16)、考马斯亮蓝R-250(CBB-R-250)和亚甲基蓝(MB)染料的降解情况,测试了复合材料的光催化活性,发现在紫外光源存在下该复合材料是一种有效的催化剂。使用各种清除剂检测光催化过程中涉及的活性物种。此外,通过循环实验评估了光催化剂的稳定性。此外,Ppy/C/Z生物纳米复合材料对革兰氏阳性和革兰氏阴性细菌病原体以及人类癌细胞系(HeLa和MCF-7)具有抗菌和抗癌活性,显示出潜在的应用价值。实验数据证实,与原始聚吡咯和壳聚糖制剂(Ppy/C)相比,Ppy/C/Z生物纳米复合材料具有优异的抗菌和抗癌活性。不同浓度Ppy/C/Z的凋亡数据揭示了其对这些癌细胞系的显著活性。