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Synthesis, Characterization and Applications of a Novel Platinum-Based Nanoparticles: Catalytic, Antibacterial and Cytotoxic Studies

机译:新型铂纳米粒子的合成,表征和应用:催化,抗菌和细胞毒性研究

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The facile one-pot synthesis method was used to synthesize platinum nanoparticles (Doxy-Pt (0) NPs) by reduction method with doxycycline drug as reducing and capping agent. The combined platinum nanoparticles were carefully chosen for catalytic reduction of paracetamol as well as used against antimicrobial and anticancer actions with the well diffusion process and by measuring the zone of inhibition in mm against Gram-positive (S. aureusandS. pyogenes) andGram-negative(E. coliandS. typhimurium). The Ultraviolet-Visible-absorption spectroscopy technique was used to endorse accumulation of (Doxy-Pt (0) NPs) using the distinctive Plasmon absorption maxima at 264 nm. Another technique of X-ray powder diffraction (XRD) pattern was used to confirm the crystalline nature of the prepared Pt (0) NPs. Transmission electron microscopy (TEM) was used to study the particle size of the prepared Pt (0) NPs with a size range of 10-20 nm. The catalytic study showed that the reduction is ~ 99.9% of paracetamol that was consummate in a small period of reaction time (60 s) by competent doxycycline based platinum nanoparticles. The value of K is calculated (rate constant) value for paracetamol catalytic reduction was achieved 7 x 10(-2)by drawing InC versus time (s) and the results showed that the reaction is of the first command kinetics. Furthermore, the reduction in breast cancer cell viability and proliferation via PtNPs was found higher as compare to the normal breast cells (CRL-4010). Therefore, the newly prepared Doxy-Pt (0) NPs had a marvelous catalytic, antibacterial and anticancerous action as a catalyst and drug material. The recent discoveries are similarly extendable for the preservation of the aquatic situation in contradiction of the pollution produced by paracetamol, microbial and cancerous actions via a superficial, highly inexpensive, quick and effectual technique. Graphic
机译:通过用催化剂药物作为还原和封盖剂,使用嵌合纳米粒子合成方法通过还原方法合成铂纳米颗粒(DOXY-PT(0)NPS)。仔细选择合并的铂纳米颗粒用于催化还原扑热氨基酚,并用孔扩散过程使用抗菌和抗癌动作,并通过测量MM的抑制区免受革兰氏阳性(S. aureusands。活性)andgram-负(大肠杆菌。刺血轮。使用紫外 - 可见吸收光谱技术在264nm处使用独特的等离子体吸收最大值来认可(doxy-pt(0)nps)的积累。 X射线粉末衍射(XRD)图案的另一种技术用于确认制备的PT(0)NPS的结晶性质。透射电子显微镜(TEM)用于研究制备的Pt(0)NP的粒径,尺寸范围为10-20nm。催化研究表明,减少〜99.9%的扑热氨基醇,通过称职的催生物基铂纳米颗粒在较小的反应时间(60s)中完善。计算k的值(速率常数)通过拉伸Inc与时间达到7×10(-2)的扑热胺催化还原的值,结果表明该反应是第一命令动力学。此外,与正常乳腺细胞(CRL-4010)相比,发现通过PTNP的乳腺癌细胞活力和增殖降低。因此,新制备的DOXY-PT(0)NPS具有奇妙的催化,抗菌和抗癌的作用,作为催化剂和药物。最近的发现类似地延伸,以保存水生局势,以通过浅表,高度廉价,快速有效的技术矛盾,微生物和癌症作用的污染矛盾。形象的

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