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Development of a Drug Delivery System Using Microcapsules with Ultrasound

机译:超声微胶囊给药系统的研制

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Micrometer-sized microcapsules collapse upon exposure to ultrasound. Use of this phenomenon for a drug delivery system (DDS), not only for local delivery of medication but also for gene therapy, should be possible. However, enhancing of efficiency of medication is limited because the capsules in suspension diffuse in the human body after injection, since the motion of the capsules in blood flow cannot be controlled. To control behavior of the microcapsules, an acoustic radiation force was introduced. We detected local changes in the microcapsule density by producing of acoustic radiation force in an artificial blood vessel. Furthermore, we theoretically estimated the conditions required for an active path selection of the capsules at a bifurcation point in the artificial blood vessel. We observed the difference in the capsule density at both in the bifurcation point and in alternative paths downstream of the bifurcation point for the different acoustic radiation forces. We also confirmed that the microcapsules are trapped against flow with the condition when the acoustic radiation force is more than the fluid resistance of the capsules. The possibility of controlling of the capsule flow towards a specific point in a blood vessel was demonstrated.
机译:微米大小的微胶囊在暴露于超声波时会塌陷。这种现象不仅可以用于药物的局部递送,而且可以用于基因治疗,并且可以用于药物递送系统(DDS)。但是,由于悬浮液中的胶囊在注射后会扩散到人体中,因此无法控制药物的效率,因为无法控制胶囊在血流中的运动。为了控制微胶囊的行为,引入了声辐射力。我们通过在人造血管中产生声辐射力来检测微囊密度的局部变化。此外,我们在理论上估计了在人工血管中分叉点处主动选择胶囊所需的条件。对于不同的声辐射力,我们在分叉点和分叉点下游的替代路径中观察到胶囊密度的差异。我们还证实,当声辐射力大于胶囊的流体阻力时,微胶囊会在流动的情况下被捕获。证明了控制胶囊流向血管中特定点的可能性。

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