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Proceedings Paper

Comparative study of the growth curves of B. Subtilis, K. Pneumoniae, C. Xerosis, and E. Coli bacteria using nanometric silicon particles as a bacteriological sensor
Author(s): Lilyanna Perez; Marjorie Flores; Javier Avalos; L. San Miguel; O. Resto; L. F. Fonseca
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Paper Abstract

In this research nanometric particles from luminescent porous silicon film were synthesized. This particles were later inoculated in bacterial strains of B. subtilis (BSi) and K. pneumoniae (KSi). A comparison of the behavior of their growth curve and the ones reported for C. xerosis (XSi) and E. coli (ESi) in presence of silicon nanoparticles is presented. The growth curve of BSi, as well as the KSi, present changes compared to their standard curves. The BSi growth curve grows below the standard curve after teh fifth hor, while in the KSi this happens after the eighth hour. Based on our preliminary findings we can sepculate that at this point in time a critical population is present, and this may give rise to the possible incorporation of the silicon particles by the bacteria, or a possible pleomorphism inhibits reproduction. The stationary region, in both case, takes place sooner than in the standard curve. No significant oscillations are observed in any case, which differs from the XSi curve, were oscillations of intervals of almost 1 hour were reported. In addition, these curves have a different behavior when compared to the ESi growth curve, in which no significant differences between the standard and teh particle containing sample were reported.

Paper Details

Date Published: 29 April 2003
PDF: 8 pages
Proc. SPIE 5118, Nanotechnology, (29 April 2003); doi: 10.1117/12.498129
Show Author Affiliations
Lilyanna Perez, Univ. Metropolitana (Puerto Rico)
Marjorie Flores, Univ. Metropolitana (Puerto Rico)
Javier Avalos, Univ. Metropolitana (Puerto Rico)
L. San Miguel, Univ. of Puerto Rico (Puerto Rico)
O. Resto, Univ. of Puerto Rico (Puerto Rico)
L. F. Fonseca, Univ. of Puerto Rico (Puerto Rico)


Published in SPIE Proceedings Vol. 5118:
Nanotechnology
Robert Vajtai; Xavier Aymerich; Laszlo B. Kish; Angel Rubio, Editor(s)

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