Hyaluronic Acid-Modified Luteolin–Copper Complex Nanodelivery System for Bacterial Prostatitis

IF 3.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Ruixiao Li, Yunhe Zheng, Xuelian Li, Ruiping Su, Jiangchuan He, Song Xue, Ke Wang*, Yanyao Gao* and Jianxin Ni*, 
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Abstract

Bacterial prostatitis is a common disease of the male genitourinary system, which seriously affects the normal life and health of male patients. Antibiotics are commonly used in the clinical treatment of bacterial prostatitis, but the efficacy of fluoroquinolones is gradually declining due to the increasing drug resistance of bacteria. Hence, it is necessary to find new antibacterial drugs to treat bacterial prostatitis. Luteolin is a natural flavonoid compound with many pharmacological activities such as antibacterial and anti-inflammatory activities, but its poor water solubility and low structural stability seriously limit its clinical application. In this study, we designed a targeting drug delivery system via a luteolin–copper complex grafted with hyaluronic acid. The results of the characterization proved the successful synthesis of the system. The results of the in vitro performance test show that the system has a good antibacterial effect and excellent blood compatibility and can be effectively released under different pH conditions. The prepared nanodrug delivery system not only provides a new idea for the treatment of bacterial prostatitis but also lays a theoretical and practical foundation for the wide application of luteolin in clinical practice.

治疗细菌性前列腺炎的透明质酸-改性木犀草素-铜复合物纳米给药系统
细菌性前列腺炎是男性泌尿生殖系统的常见疾病,严重影响男性患者的正常生活和身体健康。抗生素是临床治疗细菌性前列腺炎的常用药物,但由于细菌耐药性的增强,氟喹诺酮类药物的疗效逐渐下降。因此,有必要寻找新的抗菌药物来治疗细菌性前列腺炎。木犀草素是一种天然黄酮类化合物,具有抗菌、消炎等多种药理活性,但其水溶性差、结构稳定性低,严重限制了其临床应用。在这项研究中,我们设计了一种通过透明质酸接枝木犀草素-铜复合物的靶向给药系统。表征结果证明了该系统的成功合成。体外性能测试结果表明,该系统具有良好的抗菌效果和优异的血液相容性,并能在不同的 pH 值条件下有效释放。所制备的纳米给药系统不仅为细菌性前列腺炎的治疗提供了新思路,也为叶黄素在临床上的广泛应用奠定了理论和实践基础。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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