Song Jiaming, Cui Naiyu, Mao Xuran, Huang Qixuan, Lee Eui-Seok, Jiang Hengbo
The Conversationalist Club, School of Stomatology, Shandong First Medical University, Shandong Academy of Medical Sciences, Tai'an 271016, China.
Department of Oral and Maxillofacial Surgery, Graduate School of Clinical Dentistry, Korea University, Seoul 08308, Korea.
Materials (Basel). 2022 Jan 21;15(3):797. doi: 10.3390/ma15030797.
Owing to the limitations of traditional systemic drug delivery in the treatment of bone diseases with side effects on normal cells, the selection of materials with high affinities for bones, as targeting ligands to modify drug carriers, has become an important research topic. Tetracyclines (TCs) have an adsorption effect on hydroxyapatite (HAp). Thus, they can be used as bone-targeting ligands and combined with drug carriers. In this study, density functional theory is used to analyze the interaction mechanism of TC, oxytetracycline (OTC), chlortetracycline, and HAp. We calculate the electrostatic potential (ESP) and molecular orbitals to predict the possible binding sites of TCs on the HAp surface. The adsorption energy is used to compare the affinities of the three TCs to HAp. An independent gradient model analysis is performed to study the weak interaction between TCs and HAp. The coordination bond between TCs and the HAp surface is evaluated by conducting a charge density difference analysis. The results show that OTC has the highest affinity to HAp because the introduction of hydroxyl groups change the adsorption configuration of OTC. Thus, OTC adsorbed on HAp in a broken-line shape exposes more binding sites. This study provides a theoretical basis for TCs as bone-targeting ligands in treating bone diseases and in improving the safety of treatment by selecting different bone-targeting ligands.
由于传统全身给药在治疗骨疾病时对正常细胞有副作用的局限性,选择对骨骼具有高亲和力的材料作为靶向配体来修饰药物载体,已成为一个重要的研究课题。四环素(TCs)对羟基磷灰石(HAp)具有吸附作用。因此,它们可作为骨靶向配体并与药物载体结合。在本研究中,采用密度泛函理论分析TC、土霉素(OTC)、金霉素与HAp的相互作用机制。我们计算静电势(ESP)和分子轨道以预测TCs在HAp表面可能的结合位点。吸附能用于比较三种TCs对HAp的亲和力。进行独立梯度模型分析以研究TCs与HAp之间的弱相互作用。通过进行电荷密度差分析来评估TCs与HAp表面之间的配位键。结果表明,OTC对HAp的亲和力最高,因为羟基的引入改变了OTC的吸附构型。因此,呈折线形状吸附在HAp上的OTC暴露出更多的结合位点。本研究为TCs作为骨靶向配体治疗骨疾病以及通过选择不同的骨靶向配体提高治疗安全性提供了理论依据。