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1.
J Mol Recognit ; 36(2): e2995, 2023 02.
Article in English | MEDLINE | ID: mdl-36116102

ABSTRACT

This work reports the construction of a novel nanostructured immunosensor for detection of the troponin I biomarker (cTnI). Anti-troponin I antibody was anchored on the modified graphite electrode with reduced graphene oxide and polytyramine for detection of troponin I in serum samples. The performance of the electro-immunosensor was evaluated by differential pulse voltammetry. The immunosensor presented a wide work range, from 4 ng mL-1 to 4 pg mL-1 , whose detection limit (4 pg mL-1 ) is significantly lower than the basal level in human serum, and maintained 100% of response after 30 days of storage. Moreover, the immunosensor showed good selectivity for detection of cTnI in real sample containing interfering substances and specificity of response to cTnI in the serum of healthy and sick patients, and demonstrated the possibility of reuse for two consecutive analyses, in addition to using a simplified and inexpensive platform when compared to other devices, demonstrating them excellent potential for application in diagnosis in the early stages of acute myocardial infarction.


Subject(s)
Biosensing Techniques , Graphite , Humans , Limit of Detection , Immunoassay , Troponin I/analysis , Electrochemical Techniques , Gold
2.
Biochimie ; 92(12): 1760-5, 2010 Dec.
Article in English | MEDLINE | ID: mdl-20868725

ABSTRACT

This work describes classification, functions, location, inhibition, activation, and therapeutic applications of proteases from snake venoms and vegetables. Snake venoms and vegetables can present toxins that unchain necrosis or proteolysis due to the direct cytotoxic action of venom proteases. These proteases are potential tools in the development of drugs for the prevention and treatment of several illnesses. We report herein mainly fibrinogenolytic metallo proteases and serine proteases ("thrombin-like"). These enzymes are extensively used in the treatment and prevention of thrombotic disorders, since they serve as defibrinogenating agents. The therapeutic uses of fibrin(ogen)olytic metallo proteases hold promise for clinical application due to potential in reversing the effects of thrombosis; this has been shown to be an alternative approach to the prevention and treatment of cardiovascular disorders, which are among the most prominent causes of mortality around the world. Plant proteases can be utilized for many cellular and molecular activities, in antibacterial and anticancer therapies, and in the treatment of snakebites, inhibiting snake venom activities such as blood-clotting, defibrinogenation, and fibrin(ogen)olytic and hemorrhagic actions. These toxins also display potential for clinical use in the treatment of hemostatic disorders.


Subject(s)
Peptide Hydrolases/chemistry , Peptide Hydrolases/metabolism , Plants/enzymology , Snake Venoms/enzymology , Animals , Latex/chemistry , Metalloproteases/chemistry , Metalloproteases/metabolism , Molecular Structure , Plant Proteins/chemistry , Plant Proteins/metabolism , Plasminogen Activators/chemistry , Plasminogen Activators/metabolism , Structure-Activity Relationship
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