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Dynamics of in silico leukocyte rolling, activation, and adhesion

机译:电脑白细胞滚动,激活和粘附的动力学

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Background We present a multilevel, agent based, in silico model that represents the dynamics of rolling, activation, and adhesion of individual leukocytes in vitro. Object-oriented software components were designed, verified, plugged together, and then operated in ways that represent the molecular and cellular mechanisms believed responsible for leukocyte rolling and adhesion. The result is an in silico analogue of an experimental in vitro system. The experimentally measured, phenotypic attributes of the analogue were compared and contrasted to those of leukocytes in vitro from three different experimental conditions. Results The individual in silico dynamics of "rolling" on simulated P-selectin, and separately on simulated VCAM-1, were an acceptable match to individual in vitro distance-time and velocity-time measurements. The analogues are also able to represent the transition from rolling to adhesion on P-selectin and VCAM-1 in the presence of GRO-α chemokine. The individual in silico and in vitro behavioral similarities translated successfully to population level measures. These behavioral similarities were enabled in part by subdividing the functionality of the analogue's surface into 600 independent, "cell"-controlled, equally capable modules of comparable functionality. Conclusion The overlap in phenotypic attributes of our analogue with those of leukocytes in vitro confirm the considerable potential of our model for studying the key events that determine the behavioral outcome of individual leukocytes during rolling, activation, and adhesion. Our results provide an important foundation and framework for future in silico research into plausible causal links between well-documented, subcellular molecular level events and the variety of systemic phenotypic attributes that distinguish normal leukocyte adhesion from abnormal disease-associated adhesion.
机译:背景我们提供了一种基于代理的多层次计算机模拟模型,该模型表示体外单个白细胞的滚动,激活和粘附动力学。面向对象的软件组件经过设计,验证,插入在一起,然后以代表负责白细胞滚动和粘附的分子和细胞机制的方式进行操作。结果是实验体外系统的计算机模拟。比较了在三种不同实验条件下,通过实验测量的类似物的表型属性,并与体外白细胞的表型属性进行了对比。结果在模拟的P-选择素上以及在模拟的VCAM-1上单独“滚动”的计算机动力学是可以接受的,与单个体外距离-时间和速度-时间测量相匹配的结果。类似物还能够代表在存在GRO-α趋化因子的情况下从P-选择素和VCAM-1滚动到粘附的转变。个人在计算机和体外行为上的相似之处已成功转化为人口水平的衡量标准。这些行为相似性部分是通过将模拟物表面的功能细分为600个独立的,由“单元”控制的,功能相当的功能相同的模块来实现的。结论我们的类似物的表型属性与体外白细胞的表型属性重叠,证实了我们的模型在研究决定单个白细胞在滚动,激活和粘附过程中的行为结果的关键事件方面的巨大潜力。我们的研究结果为今后开展计算机模拟研究提供了重要的基础和框架,这些研究涉及有据可查的亚细胞分子水平事件与各种系统表型属性之间的合理因果联系,这些区别可区分正常白细胞粘附和异常疾病相关粘附。

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