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氧化锌-姜黄素纳米共轭物的全面表征及其生物学和安全性评价:揭示增强治疗应用的协同效应

Comprehensive Characterization and Biological and Safety Evaluation of Zinc Oxide-Curcumin Nanoconjugates: Unraveling Synergistic Effects for Enhanced Therapeutic Applications.

作者信息

Rajendran Duraisamy, Shobha Muniswamy, Mohana Sriramulu, Gopi Marappan, Ramachandran Natesan, Franklin Magdaline Eljeeva Emerald, Manimaran Ayyasamy, Huliyurdurga Shameeulla Heena, Selvaraju Sellappan, Sahoo Artabandhu

机构信息

ICAR - National Institute of Animal Nutrition and Physiology, Adugodi, Bangalore 560030, India.

National Dairy Research Institute, Southern Regional Station, Adugodi, Bangalore 560030, India.

出版信息

ACS Omega. 2025 Jun 14;10(25):27045-27057. doi: 10.1021/acsomega.5c02224. eCollection 2025 Jul 1.

Abstract

Nanoparticles have been widely synthesized and used in various biological applications. Among the minerals, zinc (Zn) alters numerous biological pathways, and curcumin (Cur) functions mainly as the antimicrobial, anti-inflammatory, and anticancerous agent. In this study, nano-zinc oxide (nZnO), nano-curcumin (nCur), and its conjugate (nZnOcur) were synthesized through the chemical reduction method. The particles were characterized using UV-visible (UV-visible) spectroscopy, Fourier transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD), scanning electron microscopy-energy-dispersive X-ray spectroscopy (SEM-EDS), high-resolution transmission electron microscopy (HR-TEM), dynamic light scattering (DLS), and ζ-potential measurements. The UV-visible spectrum revealed that nZnO had an absorbance peak at 370 nm, while nCur had peaks at 400-600 nm, and the nZnOcur conjugate had peaks at 550-650 nm and a smaller peak in the 300-400 nm range. The key functional groups identified by FTIR confirm the successful conjugation of nZnOcur nanoparticles. XRD patterns indicated the crystalline wurtzite phase of nZnO with variations in peak intensity, suggesting structural changes upon curcumin incorporation. SEM-EDS and DLS analyses provided average particle sizes of 88.41 and 122 nm; 53.81 and 98 nm; 43.41 and 102 nm for nZnO, nCur, and nZnOcur conjugate, respectively. HR-TEM images showed that nZnO (∼70 nm, spherical) transformed into rod-like nZnOcur (∼105 nm) upon conjugation with curcumin. nZnOcur had higher antibacterial activity against bacterial strains, demonstrating synergistic effects. The antioxidant capacity was greater in both nCur and nZnOcur conjugates, while anti-inflammatory assays indicated significant protein denaturation inhibition with all three nanoparticles. Cytotoxicity tests revealed that nZnO had higher toxicity, and the acute oral toxicity study indicated nZnOcur conjugate as least toxic, with LD value of 425.4 mg/kg. Overall, the findings underscore the nZnOcur conjugate as a promising and safer nanoparticle for antimicrobial, anti-inflammatory, and antioxidant applications with least side effects.

摘要

纳米颗粒已被广泛合成并应用于各种生物领域。在矿物质中,锌(Zn)会改变众多生物途径,而姜黄素(Cur)主要发挥抗菌、抗炎和抗癌作用。在本研究中,通过化学还原法合成了纳米氧化锌(nZnO)、纳米姜黄素(nCur)及其共轭物(nZnOcur)。使用紫外可见光谱(UV-visible)、傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、扫描电子显微镜-能量色散X射线光谱(SEM-EDS)、高分辨率透射电子显微镜(HR-TEM)、动态光散射(DLS)和ζ电位测量对颗粒进行了表征。紫外可见光谱显示,nZnO在370 nm处有一个吸收峰,而nCur在400 - 600 nm处有峰,nZnOcur共轭物在550 - 650 nm处有峰,在300 - 400 nm范围内有一个较小的峰。FTIR鉴定出的关键官能团证实了nZnOcur纳米颗粒的成功共轭。XRD图谱表明nZnO的晶体纤锌矿相,峰强度有所变化,表明加入姜黄素后结构发生了变化。SEM-EDS和DLS分析给出nZnO、nCur和nZnOcur共轭物的平均粒径分别为88.41和122 nm、53.81和98 nm、43.41和102 nm。HR-TEM图像显示,nZnO(约70 nm,球形)与姜黄素共轭后转变为棒状的nZnOcur(约105 nm)。nZnOcur对细菌菌株具有更高的抗菌活性,显示出协同效应。nCur和nZnOcur共轭物的抗氧化能力更强,而抗炎试验表明所有三种纳米颗粒对蛋白质变性均有显著抑制作用。细胞毒性试验表明nZnO毒性更高,急性口服毒性研究表明nZnOcur共轭物毒性最低,LD值为425.4 mg/kg。总体而言,研究结果强调nZnOcur共轭物是一种有前景且更安全的纳米颗粒,用于抗菌、抗炎和抗氧化应用,副作用最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2e6/12223860/85a45883efb2/ao5c02224_0001.jpg

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