Department of Electrical Engineering, Indian Institute of Technology-Madras, Chennai, 600036, India.
Centre for NEMS and Nanophotonics, Indian Institute of Technology-Madras, Chennai, 600036, India.
Biomed Microdevices. 2021 Jan 8;23(1):4. doi: 10.1007/s10544-020-00539-8.
In-house fabricated silicon nanoporous membranes (SNMs), functionalized for efficient clearance of uremic toxins, can lead to compact and portable dialysis systems. Efficacy of 15 nm thick SNMs, with average pore diameter of 8 nm, was tested for dialysis of two uremic toxins - urea and creatinine using custom made teflon apparatus of 2, 10 and 30 ml. The apparatus consisted of two reservoirs, with the cis containing the uremic fluid, and the trans containing the dialysate. Peristalsis was found to enhance the clearance rate by a factor of four as compared to unstirred condition. Functionalisation of the SNMs reduced protein binding, and surface binding of urea from 23% to negligible values. A lateral array of nine SNMs and a new design for the dialysis apparatus, increased the clearance rate by a factor of twelve from that of the single SNM. The arrays cleared about 42% of urea and 48% of creatinine from 30 ml of diluted serum samples, in 15 min. Periodic replacement of the trans fluid cleared about 81% of high concentration uremic toxins from the cis reservoir in 45 mins. The SNM arrays are stable, reproducible, and with the superior clearance rates for urea and creatinine, they have the potential to be used as membranes for portable hemodialysers.
内建的硅纳米多孔膜(SNM)经功能化后可有效清除尿毒症毒素,从而可制成结构紧凑且便于携带的透析系统。我们使用定制的聚四氟乙烯装置(体积分别为 2、10 和 30 毫升),以 15 纳米厚、平均孔径为 8 纳米的 SNM 对两种尿毒症毒素(尿素和肌酸酐)的透析效果进行了测试。该装置由两个储液器组成, cis 侧含有尿毒症液, trans 侧含有透析液。与未搅拌状态相比,蠕动泵可将清除率提高四倍。SNM 的功能化降低了蛋白质结合和尿素的表面结合,从 23%降至可忽略不计。九个 SNM 的横向排列和新的透析装置设计使单个 SNM 的清除率提高了十二倍。该阵列可在 15 分钟内从 30 毫升稀释血清样本中清除约 42%的尿素和 48%的肌酸酐。每隔一段时间更换 trans 侧流体,可在 45 分钟内从 cis 侧储液器中清除约 81%的高浓度尿毒症毒素。SNM 阵列稳定且可重复使用,并且具有优异的尿素和肌酸酐清除率,因此它们有可能用作便携式血液透析器的膜。