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3D Printed Laminated CaCO3-Nanocellulose Films as Controlled-Release 5-Fluorouracil

机译:3D打印层压的CaCO3-纳米纤维素薄膜作为受控释放的5-氟尿嘧啶

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摘要

Drug delivery constitutes the formulations, technologies, and systems for the transport of pharmaceutical compounds to specific areas in the body to exert safe therapeutic effects. The main criteria for selecting the correct medium for drug delivery are the quantity of the drug being carried and the amount of time required to release the drug. Hence, this research aimed to improve the aforementioned criteria by synthesizing a medium based on calcium carbonate-nanocellulose composite and evaluating its efficiency as a medium for drug delivery. Specifically, the efficiency was assessed in terms of the rates of uptake and release of 5-fluorouracil. Through the evaluation of the morphological and chemical properties of the synthesized composite, the established 3D printing profiles of nanocellulose and CaCO took place following the layer-by-layer films. The 3D printed double laminated CaCO -nanocellulose managed to release the 5-fluorouracil as an effective single composition and in a time-controlled manner.
机译:药物输送构成用于将药物化合物运输到体内特定区域以发挥安全治疗作用的制剂,技术和系统。选择正确的药物输送介质的主要标准是所载药物的量和释放药物所需的时间。因此,本研究旨在通过合成基于碳酸钙-纳米纤维素复合物的介质并评估其作为药物输送介质的效率来改善上述标准。具体而言,根据5-氟尿嘧啶的吸收和释放速率评估效率。通过评估合成复合材料的形貌和化学性质,建立了纳米纤维素和CaCO的3D打印轮廓,随后是逐层薄膜。 3D打印的双层CaCO-纳米纤维素设法以有效的单一组合物并以时间控制的方式释放了5-氟尿嘧啶。

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