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A microfluidics approach to study the accumulation of molecules at basal lamina interfaces

机译:一种微流体方法,用于研究基底层界面处分子的积累

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For an efficient distribution of drugs and drug carriers through biological barriers such as the vascular system, the size and surface properties of nanoparticles and molecules play a key role. To screen for important parameters which determine the ability of drugs or drug carriers to translocate through complex biological barriers, an in vitro assay which correctly predicts the behavior of those objects in vivo would be highly desirable. Here, we present a microfluidic setup to probe the diffusive spreading of molecules with different net charges and molecular weights through a basal lamina interface - a biopolymer system which contributes to the barrier function of the vascular system and the skin. From our data, we find a charge dependent accumulation of molecules at the gel interface which is consistent with transient binding of those molecules to the gel constituents. We also observe a similar charge-dependent accumulation of molecules in living mice where the test molecules colocalize with collagen IV, a key component of the basal lamina. Our assay may serve as a platform to perform penetration experiments with even more complex interfaces combining cellular barriers with biopolymer coatings.
机译:为了通过诸如血管系统的生物屏障有效地分配药物和药物载体,纳米颗粒和分子的大小和表面性质起着关键作用。为了筛选确定药物或药物载体通过复杂的生物屏障转运的能力的重要参数,非常需要能够正确预测那些对象在体内行为的体外测定。在这里,我们提出了一种微流体设置,以探测具有不同净电荷和分子量的分子通过基底层界面-生物聚合物系统(有助于血管系统和皮肤的屏障功能)的扩散扩散。从我们的数据中,我们发现分子界面上分子的电荷依赖性积累,这与那些分子与凝胶成分的瞬时结合相一致。我们还观察到在活体小鼠中类似的电荷依赖性分子积累,其中测试分子与胶原IV(基底层的关键成分)共定位。我们的测定法可以作为一个平台,以结合细胞屏障和生物聚合物涂层的更复杂界面进行渗透实验。

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