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Application of bi-cell surface plasm...
~
Mani, Rinosh Joshua.
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Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum.
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum./
Author:
Mani, Rinosh Joshua.
Description:
85 p.
Notes:
Adviser: Kenneth D. Clinkenbeard.
Contained By:
Masters Abstracts International44-06.
Subject:
Biology, Molecular. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1436226
ISBN:
9780542728846
Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum.
Mani, Rinosh Joshua.
Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum.
- 85 p.
Adviser: Kenneth D. Clinkenbeard.
Thesis (M.S.)--Oklahoma State University, 2006.
Using the bi-cell surface plasmon resonance instrument, we were able to detect thrombin in the concentration range of 500 femtomoles to 2 picomoles with thrombin aptamer as the capture probe. The lowest limit of detection was 250 femtomoles. The affinity of the aptamer for prothrombin was also investigated, which was detected at 2 picomoles. Using serum samples, 1 picomole of thrombin was detected. We proved that an aptamer could be used as a capture ligand in bi-cell SPR instrument. This model could be used in a clinical setting for the real time detection of diagnostically relevant biomolecules.
ISBN: 9780542728846Subjects--Topical Terms:
1017719
Biology, Molecular.
Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum.
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Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum.
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Adviser: Kenneth D. Clinkenbeard.
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Source: Masters Abstracts International, Volume: 44-06, page: 2726.
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Thesis (M.S.)--Oklahoma State University, 2006.
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Using the bi-cell surface plasmon resonance instrument, we were able to detect thrombin in the concentration range of 500 femtomoles to 2 picomoles with thrombin aptamer as the capture probe. The lowest limit of detection was 250 femtomoles. The affinity of the aptamer for prothrombin was also investigated, which was detected at 2 picomoles. Using serum samples, 1 picomole of thrombin was detected. We proved that an aptamer could be used as a capture ligand in bi-cell SPR instrument. This model could be used in a clinical setting for the real time detection of diagnostically relevant biomolecules.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1436226
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