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A New Paradigm of Pharmaceutical Drug Delivery Systems (DDS): Challenges for Space Time and Shapes

机译:一种新的药物输送系统范式(DDS):空间时间和形状的挑战

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摘要

Using 3D food printing with the Internet of Things (IoT) technology, patients can receive diagnoses and prescriptions from their doctors while in the comfort of their homes. The patient-specific prescription has been innovated by converging 3D food printing technology with drug delivery systems (DDSs). Quantitative drug dosages can be incorporated into the composition of food and produced in any shape within a short time. Automating food and DDSs makes promising implications for healing patients remotely, as well. Each of these aspects, along with IoT technology, have contributed to increased health care for patients, no matter their location. The quantitative discharge of vitamin C melted in water, mayonnaise, ketchup, and peanut butter has been verified using the Piston Typed Extrusion (PTE) method. Designs with different curves and shapes were repeatedly printed with a head speed of 1.6×10−2 m/s, and it was confirmed that effective control while printing the shapes was possible. The Hagen-Poiseuille (HP) formula was utilized to simulate the overall printing time. This simulation affirmed that increasing the head speed from 1.6×10−2 m/s to 4.0×10−2 m/s had reduced the printing time consistently, but the time was not reduced continuously after 4.0×10−2 m/s, depending on the materials' viscosities and how much curvature exists in the designs. The precision of printing was adjusted within 5% of the theoretical value during printing, and the IoT technology allowed printing of the materials within five minutes, regardless of the patient's location.
机译:使用3D打印食物与物联网(IOT)技术的互联网,病人可以在自己舒适的家,从他们的医生接受诊断和处方,同时。患者特定的处方已经被融合3D食物打印技术与药物递送系统(DDS中)创新。定量的药物剂量可掺入到食物的组成和制造任何形状很短的时间内。自动化食品和的DDS使得有前途的远程治疗患者的影响,以及。以上每一个方面,与物联网技术一起,以提高医疗服务贡献了病人,不管他们的位置。维生素C的定量排出水,蛋黄酱,番茄酱熔化,并使用活塞式挤出类型化(PTE)方法花生酱已通过验证。用不同的曲线和形状设计被反复印有1.6×10-2米/秒的棒头速度,并确认了有效的控制,同时打印的形状是可能的。哈根一泊肃叶(HP)式被用于模拟整个打印时间。这种模拟确认,从1.6×10-2米提高杆头速度/ s至4.0×10-2米/秒减少了打印时间一致,但没有降低的时间之后连续4.0×10-2米/秒,根据材料粘度和多少曲率存在于设计。印刷的精度进行了打印期间的理论值的5%内调节,并且的IoT技术允许在五分钟内的材料的打印,而不管患者的位置的。

著录项

  • 期刊名称 Innovations in Pharmacy
  • 作者单位
  • 年(卷),期 2018(9),3
  • 年度 2018
  • 页码 1–13
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:药物递送系统(DDS);物联网(物联网);定量控制;3D打印;患者定制;活塞式挤出(PTE);

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