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1.
Journal of Biomedical Engineering ; (6): 662-679, 2015.
Article in Chinese | WPRIM | ID: wpr-359589

ABSTRACT

The aim of this study was to establish an assessment method for determining α-Gal (α-1, 3-galactosyle) epitopes contained in animal tissue or animal tissue-derived biological materials with ELISA inhibition assay. Firstly, a 96 well plate was coated with Gal α-1, 3-Gal/bovine serum albumin (BSA) as a solid phase antigen and meanwhile, the anti-α-Gal M86 was used to react with α-Gal antigens which contained in the test materials. Then, the residual antibodies (M86) in the supernatant of M86-Gal reaction mixture were measured using ELISA inhibition assay by the α-Gal coating plate. The inhibition curve of the ELISA inhibition assay, the R2 = 0.999, was well established. Checking using both α-Gal positive materials (rat liver tissues) and α-Gal negative materials (human placenta tissues) showed a good sensitivity and specificity. Based on the presently established method, the α-Gal expression profile of rat tissues, decellular animal tissue-derived biological materials and porcine dermal before and after decellular treatment were determined. The M86 ELISA inhibition assay method, which can quantitatively determine the α-Gal antigens contained in animal tissues or animal tissue-derived biomaterials, was refined. This M86 specific antibody based-ELISA inhibition assay established in the present study has good sensitivity and specificity, and could be a useful method for determining remnant α-1, 3Gal antigens in animal tissue-derived biomaterials.


Subject(s)
Animals , Humans , Rats , Antibodies , Biocompatible Materials , Enzyme-Linked Immunosorbent Assay , Methods , Epitopes , Sensitivity and Specificity , Serum Albumin, Bovine , Trisaccharides
2.
Chinese Journal of Medical Instrumentation ; (6): 183-186, 2015.
Article in Chinese | WPRIM | ID: wpr-310241

ABSTRACT

In this paper, we designed an oxygen saturation, heart rate, respiration rate monitoring system based on smartphone of android operating system, physiological signal acquired by MSP430 microcontroller and transmitted by Bluetooth module.


Subject(s)
Humans , Cell Phone , Equipment Design , Heart Rate , Monitoring, Physiologic , Oxygen , Respiratory Rate , Software , Wireless Technology
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