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Controlled Release of Magnetic Particles for Drug Delivery in the Human Lung

机译:在人肺中控制磁性颗粒的磁性颗粒

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Improving drug delivery to a specific site of body is an important issue. Magnetic drug targeting is an appropriate technique for drug delivery to a specified area. This method has been adopted in drug delivery to the lung tissues due to widespread outbreak of the lung cancer in the recent decades. Therefore, increasing the efficiency of drug delivery to the lung tissues is of paramount importance. In this article, controlled particle release from a determined area and magnetic drug targeting methods are used to deliver the drug to a tumor in the generation G2 of the human lung. Weibel model is used for modeling of the human lung airways, and particles are made of iron oxide magnetic cores and poly lactic coglycolic acid shell. Herein, two different methods of drug delivery are tested and compared. In the first method, controlled particle release in the absence of magnetic field is accomplished and in the second method, controlled particle release in the presence of magnetic field is performed for the first time. A coil is used to produce magnetic field. Comparison of the results obtained in this article with the previous results of the drug delivery to tumors by random particle release method (in the presence and absence of magnetic field) showed that controlled particle release method improves the deposition efficiency on the tumor surface and increases the efficiency from 0.09% (random particle release in the absence of magnetic field) and 5.69% (random particle release in the presence of magnetic field) for tumor with r/R = 1.5 to 87% and 100% in the controlled particle release without and with the presence of magnetic field, respectively. Consequently, the best method of drug targeting is controlled particle release in the presence of the magnetic field. Using the mentioned method, deposition efficiency reaches 100% for tumors with r/R values of 0.5, 1, and 1.5 in this article.
机译:将药物递送改善到身体特定部位是一个重要问题。磁性药物靶向是对指定区域的药物输送的适当技术。由于近几十年来,由于肺癌广泛爆发,该方法已采用给肺组织。因此,增加药物递送给肺组织的效率至关重要。在本文中,使用来自确定的区域和磁性药物靶向方法的受控颗粒释放用于将药物递送到人肺的G2的肿瘤中。 Weibel模型用于人肺气道的建模,颗粒由氧化铁磁芯和聚乳酸果糖酸壳制成。这里,测试并比较两种不同的药物递送方法。在第一种方法中,在没有磁场的情况下进行控制颗粒释放,并且在第二种方法中,第一次执行磁场存在的受控颗粒释放。线圈用于产生磁场。本文中获得的结果的比较通过随机颗粒释放法(在存在和不存在磁场的情况下,对肿瘤的先前结果进行了对肿瘤的结果表明,受控颗粒释放方法改善肿瘤表面上的沉积效率并增加效率从0.09%(无随机颗粒释放在没有磁场的情况下)和5.69%(在磁场存在下的随机颗粒释放),用于肿瘤的肿瘤,在受控颗粒释放中r / r = 1.5%至87%和100%,没有和随着磁场的存在。因此,在磁场存在下控制颗粒释放的最佳药物靶向方法。使用该方法,沉积效率达到100%的肿瘤,r / r值为0.5,1和1.5。

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