DocumentCode :
2534946
Title :
Pertussis Toxin composite nanofibers as a non-invasive whooping cough vaccine
Author :
Gawade, T.A. ; Sawicka, K.M. ; Roemer, E.J. ; Simon, S.R.
Author_Institution :
State Univ. of New York-Stony Brook, Stony Brook
fYear :
2007
fDate :
10-11 March 2007
Firstpage :
249
Lastpage :
250
Abstract :
Global resurgence of whooping cough, a highly contagious disease caused by the fastidious gram negative coccobacillus, Bordetella pertussis, has raised questions of the current preventative and treatment technologies. A novel non-invasive vaccine has been developed by immobilization of Pertussis Toxin (PT) in electrospun polymer (Polyvinylpyrrolidone, PVP) nanofibers. In vitro experiments were utilized to test the bioavailability of PT inside of electrospun fibers. The sensitive assay for PT employs Chinese Hamster Ovary (CHO) cells. CHO cells, which form an attached monolayer in their native environment, undergo clumping in the presence of PT. The assay qualitatively measured clumping in the presence of native PT and dissolved PT-PVP electrospun coating for varied concentrations of CHO cells. Microscopic observation showed clumping with a sensitivity of 2.5 ng/ml of dissolved electrospun coating at 48 hours. The results of the in vitro assay confirm retention of biological activity of PT in electrospun nanofibers. This provides a means to develop a dermal pathway for a more effective long-term immunity against whooping cough. The application of electrospun coating can provide dermally-transferred immunity against other infectious diseases, thus overtaking oral or injectable vaccines.
Keywords :
cellular biophysics; diseases; filled polymers; microorganisms; monolayers; nanocomposites; patient treatment; polymer fibres; skin; Bordetella pertussis; Chinese Hamster ovary cell concentration; PT-PVP electrospun coating; biological activity; clumping effect; contagious disease; dermal pathway; dermally-transferred immunity; electrospun polymer nanofiber; fastidious gram negative coccobacillus; in vitro assay; in vitro experiments; infectious diseases; long-term immunity; monolayer attachment; noninvasive whooping cough vaccine; pertussis toxin composite nanofibers; polyvinylpyrrolidone; whooping cough; Coatings; Dermis; Diseases; Immune system; In vitro; Microscopy; Nanobioscience; Optical fiber testing; Polymers; Vaccines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Bioengineering Conference, 2007. NEBC '07. IEEE 33rd Annual Northeast
Conference_Location :
Long Island, NY
Print_ISBN :
978-1-4244-1032-3
Type :
conf
DOI :
10.1109/NEBC.2007.4413371
Filename :
4413371
Link To Document :
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