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用于血型鉴定的纤维素纸免疫条的有效光学图像评估。

Effective Optical Image Assessment of Cellulose Paper Immunostrips for Blood Typing.

机构信息

Department of Physics and Biophysics, Institute of Biology, Warsaw University of Life Sciences (SGGW), 159 Nowoursynowska Street, 02776 Warsaw, Poland.

Faculty of Civil Engineering, Mechanics and Petrochemistry, Institute of Chemistry, Warsaw University of Technology, Ignacego Łukasiewicza 17, 09400 Plock, Poland.

出版信息

Int J Mol Sci. 2022 Aug 4;23(15):8694. doi: 10.3390/ijms23158694.

Abstract

Novel high-performance biosensing devices, based on a microporous cellulose matrix, have been of great interest due to their high sensitivity, low cost, and simple operation. Herein, we report on the design and testing of portable paper-based immunostrips (IMS) for in-field blood typing in emergencies requiring blood transfusion. Cellulose fibrils of a paper membrane were functionalized with antibodies via supramolecular interactions. The formation of hydrogen bonds between IgM pentamer and cellulose fibers was corroborated using quantum mechanical calculations with a model cellulose chain and a representative amino acid sequence. In the proposed immunostrips, paper with a pore size of 3 µm dia. was used to enable functionalization of its channels with antibody molecules while blocking the red blood cells (RBC) from channel entering. Under the optimized test conditions, all blood types of AB0 and Rh system could be determined by naked eye examination, requiring only a small blood sample (3.5 µL). The durability of IgM immunostrips against storing has been tested. A new method of statistical evaluation of digitized blood agglutination images, compatible with a clinical five-level system, has been proposed. Critical parameters of the agglutination process have been established to enable future development of automatic blood typing with machine vision and digital data processing.

摘要

新型高性能生物传感设备基于微孔纤维素基质,由于其灵敏度高、成本低、操作简单而备受关注。本文报道了便携式基于纸的免疫层析条(immunostrips,IMS)的设计和测试,用于在需要输血的紧急情况下进行野外血型鉴定。纸膜中的纤维素原纤维通过超分子相互作用与抗体功能化。使用量子力学计算和代表性氨基酸序列对模型纤维素链,证实了 IgM 五聚体与纤维素纤维之间形成氢键。在所提出的免疫层析条中,使用孔径为 3 µm 的纸来实现其通道与抗体分子的功能化,同时阻止红细胞(RBC)进入通道。在优化的测试条件下,AB0 和 Rh 系统的所有血型都可以通过肉眼检查来确定,仅需 3.5 µL 的小样本量。已经测试了 IgM 免疫层析条对储存的耐久性。提出了一种与临床五级系统兼容的数字化血液凝集图像统计评估的新方法。已经确定了凝集过程的关键参数,以实现未来基于机器视觉和数字数据处理的自动血型鉴定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2861/9369064/d7dfd01edf6e/ijms-23-08694-g001.jpg

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