4.7 Article

Microfluidic biosensor for beta-Hydroxybutyrate (beta HBA) determination of subclinical ketosis diagnosis

期刊

JOURNAL OF NANOBIOTECHNOLOGY
卷 13, 期 -, 页码 -

出版社

BIOMED CENTRAL LTD
DOI: 10.1186/s12951-015-0076-6

关键词

beta-hydroxybutyrate (beta HBA); Microfluidic biosensor; On-site diagnostics; Subclinical ketosis

资金

  1. Natural Sciences and Engineering Research Council of Canada
  2. Canada Foundation for Innovation
  3. Dairy Farmers of Ontario

向作者/读者索取更多资源

Background: Determination of beta-hydroxybutyrate (beta HBA) is a gold standard for diagnosis of Subclinical Ketosis (SCK), a common disease in dairy cows that causes significant economic loss. Early detection of SCK can help reduce the risk of the disease progressing into clinical stage, thus minimizing economic losses on dairy cattle. Conventional laboratory methods are time consuming and labor-intensive, requiring expensive and bulky equipment. Development of portable and robust devices for rapid on-site SCK diagnosis is an effective way to prevent and control ketosis and can significantly aid in the management of dairy animal health. Microfluidic technology provides a rapid, cost-effective way to develop handheld devices for on-farm detection of sub-clinical ketosis. In this study, a highly sensitive microfluidics-based biosensor for on-site SCK diagnosis has been developed. Results: A rapid, low-cost microfluidic biosensor with high sensitivity and specificity was developed for SCK diagnosis. Determination of beta HBA was employed as the indicator in the diagnosis of SCK. On-chip detection using miniaturized and cost-effective optical sensor can be finished in 1 minute with a detection limit of 0.05 mM concentration. Developed microfluidic biosensor was successfully tested with the serum samples from dairy cows affected by SCK. The results of the developed biosensor agreed well with two other laboratory methods. The biosensor was characterized by high sensitivity and specificity towards beta HBA with a detection limit of 0.05 mM. Conclusions: The developed microfluidic biosensor provides a promising prototype for a cost-effective handheld meter for on-site SCK diagnosis. By using microfluidic method, the detection time is significantly decreased compared to other laboratory methods. Here, we demonstrate a field-deployable device to precisely identify and measure subclinical ketosis by specific labeling and quantification of beta-hydroxybutyate in cow blood samples. A real-time on-site detection system will maximize convenience for the farmers.

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