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开发具有内置人形颌的咀嚼机器人以模拟咀嚼,从而定量比较咀嚼型胶基中机器人制剂的释放与人参与者。

Development of a Chewing Robot With Built-in Humanoid Jaws to Simulate Mastication to Quantify Robotic Agents Release From Chewing Gums Compared to Human Participants.

出版信息

IEEE Trans Biomed Eng. 2021 Feb;68(2):492-504. doi: 10.1109/TBME.2020.3005863. Epub 2021 Jan 20.

Abstract

Medicated chewing gum has been recognised as a new advanced drug delivery method, with a promising future. Its potential has not yet been fully exploited because currently there is no gold standard for testing the release of agents from chewing gum in vitro. This study presents a novel humanoid chewing robot capable of closely replicating the human chewing motion in a closed environment, incorporating artificial saliva and allowing measurement of xylitol release from the gum. The release of xylitol from commercially available chewing gum was quantified following both in vitro and in vivo mastication. The chewing robot demonstrated a similar release rate of xylitol as human participants. The greatest release of xylitol occurred during the first 5 minutes of chewing and after 20 minutes of chewing only a low amount of xylitol remained in the gum bolus, irrespective of the chewing method used. Saliva and artificial saliva solutions respectively were collected after 5, 10, 15 and 20 minutes of continuous chewing and the amount of xylitol released from the chewing gum determined. Bioengineering has been implemented as the key engineering strategy to create an artificial oral environment that closely mimics that found in vivo. These results demonstrate the chewing robot with built-in humanoid jaws could provide opportunities for pharmaceutical companies to investigate and refine drug release from gum, with reduced patient exposure and reduced costs using this novel methodology.

摘要

药用口香糖已被公认为一种新的先进药物输送方法,具有广阔的前景。但由于目前还没有测试口香糖中药物体外释放的金标准,因此其潜力尚未得到充分开发。本研究提出了一种新型的仿人咀嚼机器人,能够在封闭环境中紧密复制人类的咀嚼运动,同时加入人工唾液,并能够测量口香糖中木糖醇的释放量。本研究对市售口香糖在体外和体内咀嚼后的木糖醇释放情况进行了定量分析。结果表明,仿人咀嚼机器人的木糖醇释放率与人类参与者相似。在咀嚼的前 5 分钟内,木糖醇的释放量最大,而在咀嚼 20 分钟后,无论使用哪种咀嚼方法,口香糖中的木糖醇含量都很低。在连续咀嚼 5、10、15 和 20 分钟后,分别收集唾液和人工唾液溶液,并测定口香糖中释放的木糖醇量。生物工程已被用作关键的工程策略,以创建一个人工口腔环境,该环境能够紧密模拟体内环境。这些结果表明,内置仿人颌骨的咀嚼机器人为制药公司提供了机会,可以使用这种新方法来研究和改进口香糖的药物释放,从而减少患者的暴露和降低成本。

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