Mancier Valérie, Fattoum Sirine, Haguet Hélène, Laloy Julie, Maillet Christina, Gangloff Sophie C, Chopart Jean-Paul
Université de Reims Champagne-Ardenne (URCA), Institut de Thermique, Mécanique et Matériaux (ITheMM, UR 7548), BP 1039, 51687 Reims, France.
Université de Reims Champagne-Ardenne (URCA), MATériaux et Ingénierie Mécanique (MATIM, UR 3689), BP 1039, 51687 Reims, France.
Antibiotics (Basel). 2024 Mar 21;13(3):286. doi: 10.3390/antibiotics13030286.
Copper (I) oxide (cuprite) is a material widely used nowadays, and its versatility is further amplified when it is brought to the nanometric size. Among the possible applications of this nanomaterial, one of the most interesting is that in the medical field. This paper presents a cuprite nanopowder study with the aim of employing it in medical applications. With regards to the environmental context, the synthesis used is related to green chemistry since the technique (out-of-phase pulsed electrochemistry) uses few chemical products via electricity consumption and soft conditions of temperature and pressure. After different physico-chemical characterizations, the nanopowder was tested on the to determine its fungicide activity and on human blood to estimate its hemocompatibility. The results show that 2 mg of this nanopowder diluted in 30 µL Sabouraud broth was able to react with . The hemocompatibility tests indicate that for 25 to 100 µg/mL of nanopowder in an aqueous medium, the powder was not toxic for human blood (no hemolysis nor platelet aggregation) but promoted blood coagulation. It appears, therefore, as a potential candidate for the functionalization of matrices for medical applications (wound dressing or operating field, for example).
氧化亚铜(赤铜矿)是如今广泛使用的一种材料,当它被制成纳米尺寸时,其多功能性会进一步增强。在这种纳米材料的可能应用中,最有趣的应用之一是在医学领域。本文介绍了一项对氧化亚铜纳米粉末的研究,目的是将其用于医学应用。在环境方面,所采用的合成方法与绿色化学相关,因为该技术(异相脉冲电化学)通过电力消耗以及温和的温度和压力条件使用很少的化学产品。经过不同的物理化学表征后,对该纳米粉末进行了测试,以确定其杀菌活性,并在人体血液上进行测试以评估其血液相容性。结果表明,将2毫克这种纳米粉末稀释在30微升沙氏肉汤中能够与……发生反应。血液相容性测试表明,在水性介质中,对于浓度为25至100微克/毫升的纳米粉末,该粉末对人体血液无毒(无溶血或血小板聚集)但会促进血液凝固。因此,它似乎是医学应用基质功能化(例如伤口敷料或手术区域)的潜在候选材料。