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A mathematical model to predict protein wash out kinetics during whole-lung lavage in autoimmune pulmonary alveolar proteinosis

机译:一种数学模型,以预测蛋白质在自身免疫性肺肺泡蛋白缺失的全肺灌洗过程中洗脱动力学

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摘要

Whole-lung lavage (WLL) remains the standard therapy for pulmonary alveolar proteinosis (PAP), a process in which accumulated surfactants are washed out of the lung with 0.5-2.0 1 of saline aliquots for 10-30 wash cycles. The method has been established empirically. In contrast, the kinetics of protein transfer into the lavage fluid has not been fully evaluated either theoretically or practically. Seventeen lungs from patients with autoimmune PAP underwent WLL. We made accurate timetables for each stage of WLL, namely, instilling, retaining, draining, and preparing. Subsequently, we measured the volumes of both instilled saline and drained lavage fluid, as well as the concentrations of proteins in the drained lavage fluid. We also proposed a mathematical model of protein transfer into the lavage fluid in which time is a single variable as the protein moves in response to the simple diffusion. The measured concentrations of IgG, transferrin, albumin, and {32-microglobulin closely matched the corresponding theoretical values calculated through differential equations.
机译:全肺灌洗(WLL)仍然是肺肺泡蛋白突变(PAP)的标准治疗,一种方法,其中累积的表面活性剂用0.5-2.01的盐水等分试样用0.5-2.0次洗涤循环。该方法已经凭经验建立。相反,蛋白质转移到灌洗液中的动力学未经理性地或几乎完全评估。来自自身免疫PAP患者的17个肺部接受了WLL。我们为WLL的每个阶段提供了准确的时间表,即灌输,保留,排水和准备。随后,我们测量了滴注的盐水和排出的灌洗液的体积,以及排水灌洗液中的蛋白质的浓度。我们还提出了一种蛋白质转移的数学模型进入灌洗液中,在蛋白质的响应于简单的扩散时,随着蛋白质的移动,该数学模型。 IgG,转移素,白蛋白和{32微球蛋白的测量浓度与微分方程计算的相应的理论值紧密匹配。

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