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Floating Hydrogel with Self-Generating Micro-Bubbles for Intravesical Instillation

机译:自生微泡漂浮水凝胶用于膀胱内滴注

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摘要

Intravesical instillation is the main therapy for bladder cancer and interstitial cystitis. However, most drug solutions are eliminated from bladder after the first voiding of urine. To solve this problem, we proposed a floating hydrogel with self-generating micro-bubbles as a new delivery system. It floated in urine, avoiding the urinary obstruction and bladder irritation that ordinary hydrogels caused. In this study, we abandoned traditional gas-producing method like chemical decomposition of NaHCO3, and used the foamability of Poloxamer 407 (P407) instead. Through simple shaking (just like shaking SonoVue for contrast-enhanced ultrasound in clinical), the P407 solution will “lock” many micro-bubbles and float in urine as quickly and steadily as other gas producing materials. In vivo release experiments showed that drug was released continually from hydrogel for 10 h during the erosion process. Thus, the residence time of drug in bladder was prolonged and drug efficacy was improved. In vivo efficacy study using rabbit acute bladder injury model showed that prolonged drug residence time in bladder increased the efficiency of heparin in the protection of bladder mucosal permeability. Therefore, our floating hydrogel system with self-generating micro-bubbles was single-component, simply prepared and efficacy enhancing, successfully exempting users from worries on safety and clinical efficiency from bench to bedside.
机译:膀胱内滴注是治疗膀胱癌和间质性膀胱炎的主要方法。但是,第一次排尿后,大多数药物溶液会从膀胱中清除。为了解决这个问题,我们提出了一种具有自生微气泡的浮动水凝胶作为新的递送系统。它漂浮在尿液中,避免了普通水凝胶引起的尿路阻塞和膀胱刺激。在这项研究中,我们放弃了传统的产气方法,例如NaHCO3的化学分解,取而代之的是Poloxamer 407(P407)的可发泡性。通过简单的摇动(就像在临床上为增强对比的超声摇动SonoVue一样),P407解决方案将“锁定”许多微气泡并像其他产气材料一样快速,稳定地漂浮在尿液中。体内释放实验表明,在侵蚀过程中,药物会从水凝胶中连续释放10小时。因此,延长了药物在膀胱中的停留时间,提高了药物疗效。使用兔急性膀胱损伤模型的体内功效研究表明,延长药物在膀胱中的停留时间可提高肝素在保护膀胱粘膜通透性方面的效率。因此,我们的具有自生微气泡的浮动水凝胶系统是单组分的,制备简单且功效增强,成功地免除了使用者从工作台到床边的安全性和临床效率的后顾之忧。

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