MANF处理光感受器退化的最优控制

Erika T Camacho;Suzanne Lenhart;Luis A Melara;M Cristina Villalobos;Stephen Wirkus
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引用次数: 7

摘要

患有色素性视网膜炎和老年性黄斑变性等疾病的人由于光感受器变性而导致视力下降,这是目前无法阻止和不可逆转的。目前还没有治愈与光感受器退化有关的疾病的方法。最近的实验工作表明,中脑星形细胞源性神经营养因子(MANF)可以通过减少凋亡细胞的数量来减少神经元死亡,特别是光感受器死亡。在这项工作中,我们建立了一个现有的常微分方程系统,该系统代表了光感受器的相互作用,并将MANF治疗纳入了三种经历不同程度光感受器变性的实验小鼠模型。以MANF处理水平为对照,我们研究了三种小鼠模型的最优控制结果。此外,我们的数值解与实验观察到的光感受器存活百分比相匹配,我们的不确定性和灵敏度分析确定了有和没有MANF处理的数学模型中的重要参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal control with MANF treatment of photoreceptor degeneration
People afflicted with diseases such as retinitis pigmentosa and age-related macular degeneration experience a decline in vision due to photoreceptor degeneration, which is currently unstoppable and irreversible. Currently there is no cure for diseases linked to photoreceptor degeneration. Recent experimental work showed that mesencephalic astrocyte-derived neurotrophic factor (MANF) can reduce neuron death and, in particular, photoreceptor death by reducing the number of cells that undergo apoptosis. In this work, we build on an existing system of ordinary differential equations that represent photoreceptor interactions and incorporate MANF treatment for three experimental mouse models having undergone varying degrees of photoreceptor degeneration. Using MANF treatment levels as controls, we investigate optimal control results in the three mouse models. In addition, our numerical solutions match the experimentally observed surviving percentage of photoreceptors and our uncertainty and sensitivity analysis identifies significant parameters in the math model both with and without MANF treatment.
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