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biosensor technology
This brief review attempts to systematize a number of the available data and pick out an organic connection of the new research direction with the field of biosensor technology, which have reached the level of sustainable development.
      
Molecular constructions on the basis of polyribonucleotides could be used as sensing elements with adjustable properties in biosensor technology, nanobiotechnology, and molecular pharmacology.
      
The properties of aptamers, their applicability to biosensor technology, current research and future prospects are addressed in this short review.
      
Even though there are a large number of techniques and reports dealing with enzyme stabilization, their application to biosensor technology is still very limited.
      
Several examples of them are presented to illustrate the power of the biosensor technology for environmental applications.
      
Biosensor technology has the potential to speed up the detection, increase specificity and sensitivity, enable high-throughput analysis, and to be used for monitoring of critical control points in food production.
      
Self-assembling functionalized templates in biosensor technology
      
The use of biosensor technology is described to address in real-time the production and subsequent purification of a bioactive recombinant protein product.
      
In this study, we detect AHL production during a degradation process in soil by use of whole-cell biosensor technology and flow cytometry analysis.
      
Using biosensor technology, (1-212)IGFBP-3 was found to have 11-fold lower affinity for IGF-I compared to intact IGFBP-3, while a 4-fold decrease in affinity was found for IGF-II.
      
By using the disposable biosensor technology, this method is easy to follow, quick (within 2?min) and precise (with coefficients of variation to be as low as below 5%) and requires only a small amount of plasma sample (>amp;lt;50?μl).
      
This biosensor technology also holds potential for use in point-of-care diagnostics.
      
Among these approaches, networks of excitable cells cultured on microelectrode arrays are uniquely poised to provide rapid, functional classification of an analyte and ultimately constitute a potentially effective cell-based biosensor technology.
      
Using biosensor technology, we found that PR3-ANCA of different patients (n = 8) recognize a limited number of overlapping regions on PR3 at the time of diagnosis of Wegener's granulomatosis.
      
Available instruments utilizing biosensor technology are also examined from a commercial perspective.
      
Applications in the biomedical area will result from advances in tissue engineering and biosensor technology.
      
Biosensor technology based on molecular receptors will also benefit from this work.
      
Despite past efforts, there are distinct limitations in biosensor technology that makes it imperative to move forward in research efforts.
      
Enzyme specificity is a major property which can be exploited in biosensor technology.
      
For hospital inpatients who require CV monitoring, current biosensor technology typically tethers patients in a tangle of cables.
      
 

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