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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Development of photo-magnetic drug delivery system by facile-designed dual stimuli-responsive modified biopolymeric chitosan capped nano-vesicle to improve efficiency in the anesthetic effect and its biological investigations
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Development of photo-magnetic drug delivery system by facile-designed dual stimuli-responsive modified biopolymeric chitosan capped nano-vesicle to improve efficiency in the anesthetic effect and its biological investigations

机译:通过设计的双刺激性改性生物聚糖壳聚糖封端的纳米囊肿的光学磁性药物输送系统的开发,提高了麻醉效果及其生物研究的效率

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摘要

Though anesthetic drug delivery system and drug vehicles is generally applied for pain relief, there are have many difficulties and issues due to its short duration carrier and low biocompatibility, effectiveness at the conditions of inflammation at acidic pH. To resolve this issue, we have designed and developed the dual (pH and temperature) responsive bio-nanomaterial to improve the efficiency anesthetic drug delivery system. Chitosan is a unique class of biomaterials that is widely used in medical devices. The surface engineering of ZnFe2O4 nanoparticles was performed by coating with chitosan using simple precipitation method. Then, multi-active anesthetic drug (Lidocaine) was loaded into nano-ferrite to form a drug delivery vehicle. The prepared drug-vesicle was characterized by using XRD, FTIR, SEM, XPS and TGA analysis. XRD analysis proved the face center cubic structure of zinc nanoferrite. The sustained delivery of Lidocaine (LDC) from CS coated nanoferrite (CS/ZnFe2O4) was stimulated by pH and temperature responsive characteristics of vesicles. The in vitro cytotoxicity of the CS/ZnFe2O4 particles towards fibroblast cells was analyzed by using MTT assay. The drug loaded CS/ZnFe2O4 particles exhibit high biocompatibility and sustained drug release in the physiological pH environment (4.8, 5.5 and 7.4) and temperature responsive (25 and 37 degrees C) of normal tissues and also drug loading efficiency was measured.
机译:虽然麻醉药物递送系统和毒品车辆通常用于疼痛缓解,但由于其短的持续时间载体和低生物相容性,在酸性pH值下炎症条件下的有效性,存在许多困难和问题。为了解决这个问题,我们设计并开发了响应性生物纳米材料的双(pH和温度),以改善效率麻醉药物输送系统。壳聚糖是一类独特的生物材料,广泛用于医疗设备。使用简单的沉淀法通过用壳聚糖涂覆ZnFe2O4纳米粒子的表面工程。然后,将多活性麻醉药物(利多卡因)加载到纳米铁氧体中以形成药物递送载体。通过使用XRD,FTIR,SEM,XPS和TGA分析来表征制备的药物 - 囊泡的特征。 XRD分析证明了锌纳铁矿面中心立方结构。通过囊泡的pH和温度响应性刺激Cs涂覆纳米铁矿(Cs / ZnFe2O4)的Lid Caine(LDC)的持续递送。通过使用MTT测定分析Cs / ZnFe2O4朝向成纤维细胞颗粒的体外细胞毒性。药物负载的Cs / ZnFe 2 O 4颗粒在生理pH环境(4.8,5.5和7.4)中表现出高生物相容性和持续的药物释放,并测量药物负载效率的温度响应(25和37℃)。

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