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溶胶-凝胶共沉淀法合成铜掺杂镍锰氧化物纳米颗粒及其抗凝和抗血小板活性

Sol-Gel Co-Precipitation Synthesis, Anticoagulant and Anti-Platelet Activities of Copper-Doped Nickel Manganite Nanoparticles.

作者信息

H Shashidharagowda, Mathad Shridhar, Malladi Shridhar, Gubbiveeranna Vinod, G Kusuma C, S Nagaraju, Patil Arun Y, Khan Anish, Malik Abdul Rub, Asiri Abdullah M, Azum Naved

机构信息

Department of Physics, Tontadarya College of Engineering, Gadag 582101, India.

Department of Engineering Physics, KLE Institute of Technology, Hubballi 580027, India.

出版信息

Gels. 2021 Dec 16;7(4):269. doi: 10.3390/gels7040269.

Abstract

Copper-substituted nickel manganites NiCuMnO (Ni-TCE-NPs) were produced by co-precipitation route (sol-gel) at room temperature. NiCuxMnO-Bio (NCB) NPs were studied by powder X-ray diffraction technique, scanning electron microscopy and Raman spectroscopy. XRD spectra authenticated the copper-doped nickel manganites' formation with particle size 23-28 nm. A significant decrease in the lattice parameter confirmed the doping of copper ions into the nickel manganites. Microscopy (SEM) was used to estimate the grain size, shape and uniformity, revealing the non-uniform agglomerated polygon and plate-like microstructure. The NCB-NPs showed anticoagulant activity by enhancing the coagulation time of citrated plasma of human beings. NCB-NPs with x = 0.35 and 0.45 have increased clotting time from control 133 ± 4 s to 401 ± 7 s and 3554 ± 80 s, respectively, and others around 134 s. Additionally NCB-NPs with x = 0.35, 0.45 inhibited the platelet aggregation by 80% and 92%, while remaining inhibited with only 30%. NCB-NPs did not show hemolytic activity in RBC cells intimate its non-toxic nature. Finally, NCB-NPs were non-toxic and known to exhibit anti-blood-clotting and antiplatelet activities, which can be used in the field of biomedical applications, especially as antithrombotic agents.

摘要

通过室温下的共沉淀法(溶胶-凝胶法)制备了铜取代的镍锰氧化物NiCuMnO(Ni-TCE-NPs)。采用粉末X射线衍射技术、扫描电子显微镜和拉曼光谱对NiCuxMnO-Bio(NCB)纳米粒子进行了研究。XRD光谱证实了铜掺杂镍锰氧化物的形成,其粒径为23-28纳米。晶格参数的显著降低证实了铜离子掺杂到镍锰氧化物中。利用显微镜(SEM)估计晶粒尺寸、形状和均匀性,揭示了不均匀团聚的多边形和板状微观结构。NCB纳米粒子通过延长人柠檬酸血浆的凝血时间表现出抗凝活性。x = 0.35和0.45的NCB纳米粒子的凝血时间分别从对照的133±4秒增加到401±7秒和3554±80秒,其他的约为134秒。此外,x = 0.35、0.45的NCB纳米粒子分别抑制血小板聚集80%和92%,而其他的仅抑制30%。NCB纳米粒子在红细胞中未表现出溶血活性,表明其无毒性质。最后,NCB纳米粒子无毒,已知具有抗凝血和抗血小板活性,可用于生物医学应用领域,特别是作为抗血栓药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12a5/8701332/34f7351b5fe9/gels-07-00269-g001.jpg

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