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Can the nano level electrodynamics explain the very early diagnosis of diabetic nephropathy in type-2 diabetes patients?

机译:纳米级电动力学能否解释2型糖尿病患者糖尿病肾病的早期诊断?

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By assuming that the dipole moment of glucose might be high enough to cancel the negative charges of glomerulus, we estimate the efficiency of the sensing of negatively charged albumin proteins as well as the Tamm-Horsfall's proteins (THP). The knowledge of the charge distributions in time of both albumin and THP would denote an advantage since the efficient sensing of albumin might be perceived as a very early diagnosis of the diabetic kidney disease (DKD). The proposed mathematical methodology based on classical electrodynamics has assumed that the product of charge densities coming from the interaction between glomerulus and glucose ρGM × ρGL might be a possible signal of albumin passing through from the renal glomerulus through the external convoluted tubule. According to simulations the sensing of albumin might be of order of 72% which means that the THP is a strong source of noise and mimic well to signal.
机译:通过假设葡萄糖的偶极矩可能足够高以抵消肾小球的负电荷,我们估计了带负电荷的白蛋白以及Tamm-Horsfall的蛋白(THP)的感应效率。由于白蛋白的有效感测可以被认为是糖尿病肾病(DKD)的非常早期的诊断,因此了解白蛋白和THP的时间电荷分布将表示一个优势。提出的基于经典电动力学的数学方法假设肾小球和葡萄糖ρ GM ×ρ GL 之间相互作用产生的电荷密度乘积可能是白蛋白的信号。从肾小球穿过外部曲折的小管。根据模拟,白蛋白的感测可能为72%的量级,这意味着THP是强大的噪声源,并且可以很好地模拟信号。

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