African Journal of
Microbiology Research

  • Abbreviation: Afr. J. Microbiol. Res.
  • Language: English
  • ISSN: 1996-0808
  • DOI: 10.5897/AJMR
  • Start Year: 2007
  • Published Articles: 5233

Full Length Research Paper

Growth measurement of Escherichia coli by differential scanning calorimetry

Esmeralda Rangel-Vargas
  • Esmeralda Rangel-Vargas
  • Centro de Investigaciones Químicas. Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Ciudad del Conocimiento, Carretera Pachuca-Tulancingo Km. 4.5, 42183 Mineral de la Reforma, Hidalgo, Mexico
  • Google Scholar
Carlos A. Gómez-Aldapa
  • Carlos A. Gómez-Aldapa
  • Centro de Investigaciones Químicas. Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Ciudad del Conocimiento, Carretera Pachuca-Tulancingo Km. 4.5, 42183 Mineral de la Reforma, Hidalgo, Mexico
  • Google Scholar
José R. Villagómez-Ibarra
  • José R. Villagómez-Ibarra
  • Centro de Investigaciones Químicas. Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Ciudad del Conocimiento, Carretera Pachuca-Tulancingo Km. 4.5, 42183 Mineral de la Reforma, Hidalgo, Mexico
  • Google Scholar
Eva M. Santos-López
  • Eva M. Santos-López
  • Centro de Investigaciones Químicas. Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Ciudad del Conocimiento, Carretera Pachuca-Tulancingo Km. 4.5, 42183 Mineral de la Reforma, Hidalgo, Mexico
  • Google Scholar
Jesus Rodriguez-Miranda
  • Jesus Rodriguez-Miranda
  • Instituto Tecnológico de Tuxtepec. Av. Dr. Victor Bravo Ahuja s/n. Col. 5 de Mayo, Tuxtepec, C. P. 68350, Oaxaca, México
  • Google Scholar
Javier Castro-Rosas*
  • Javier Castro-Rosas*
  • Centro de Investigaciones Químicas. Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Ciudad del Conocimiento, Carretera Pachuca-Tulancingo Km. 4.5, 42183 Mineral de la Reforma, Hidalgo, Mexico
  • Google Scholar


  •  Received: 05 January 2013
  •  Accepted: 04 April 2014
  •  Published: 16 April 2014

References

Belaich A, Belaich JP (1976a). Microcalorimetric study of the anaerobic growth of Escherichia coli: Thermograms in a synthetic medium. J. Bacteriol. 125:14-18.
Pubmed
 
Belaich A, Belaich JP (1976b). Microcalorimetric study of the anaerobic growth of Escherichia coli: measurement of the affinity of whole cells for various energy substrates. J. Bacteriol. 125:19-24.
Pubmed
 
Biesta-Peters EG, Reij MW, Joosten H, Gorris LG, Zwietering MH (2010). Comparison of two optical-density-based methods and a plate count method for estimation of growth parameters of Bacillus cereus. Appl. Environ. Microbiol. 76(5):1399-1405.
Crossref
 
Birou B, Marison IW, Von Stockar U (1987). Calorimetric investigation of aerobic fermentations. Biotechol. Bioeng. 30:650-660.
Crossref
 
Boe I, Lovrien R (1990). Cell counting and carbon utilization velocities via microbial calorimetry. Biotechnol. Bioeng. 35:1-7.
Crossref
 
Braissant O, Wirz D, Göpfert B, Daniels AU (2010a). Use of isothermal microcalorimetry to monitor microbial activities. FEMS Microbiol. Lett. 303:1-8.
Crossref
 
Braissant O, Wirz D, Göpfert B, Daniels AU (2010b). Biomedical use of isothermal microcalorimeters. Sensors 10:9369-9383.
Crossref
 
Chang-Li X, Hou-Kuan T, Zhau-hua S, Song-Sheng Q, Yao-Ting L, Hai-Shu L (1988). Microcalorimetric study of bacterial growth. Thermochim. Acta. 123:33-41.
Crossref
 
Dermoun Z, Belaich JP (1979). Microcalorimetric study of Escherichia coli aerobic growth: kinetics and experimental enthalpy associated with growth on succinic acid. J. Bacteriol. 140:377-380.
Pubmed
 
Dermoun Z, Belaich JP (1980). Microcalorimetric study of Escherichia coli aerobic growth: theoretical aspects of growth on succinic acid. J. Bacteriol. 143:742-746.
Pubmed
 
FDA (U.S. Food and Drug Administration) (2010). Bacteriological analytical manual on line. Aerobic plate count. 
 
Honglin Z, Yongjun L, Haitao S (1993). Determination of thermograms of bacterial growth and study of optimum growth temperature. Thermochim. Acta. 216:19-23.
Crossref
 
Huchet V, Thuault D, Bourgeois CM (1995). Development of a model predicting the effects of pH, lactic acid, glycerol and sodium chloride content on the growth of vegetative cells of Clostridium tyrobutyricum in a culture medium. Lait 75:585-593.
Crossref
 
Kobanova N, Stulova I, Vilu R (2012). Microcalorimetric study of the growth of bacterial colonies of Lactococcus lactis IL1403 in agar gels. Food Microbiol. 29:67-79.
Crossref
 
Lee J, KaletunÇ G (2002). Evaluation of the heat inactivation of Escherichia coli and Lactobacillus plantarum by differential scanning calorimetry. Appl. Environ. Microbiol. 68:5379-5386.
Crossref
 
Madrid RE, Felice CJ (2005). Microbial biomass estimation. Crit. Rev. Biotechnol. 25:97-112.
Crossref
 
Marison WI, von Stockar U (1985). A Novel bench-scale calorimeter for biological process development work. Thermochim. Acta. 85:493-496.
Crossref
 
Maskow T, Wolf K, Wolfgang K, Enders S, Harms H (2012). Rapid analysis of bacterial contamination of tap water using isothermal calorimetry. Thermochim. Acta 543:273-280.
Crossref
 
McClure PJ, Cole MB, Davies KW, Anderson WA (1993). The use of automated turbidimetric data for the construction of kinetic models. J. Ind. Microbiol. 12:277-285.
Crossref
 
McKellar RC, Knigth K (2000). A combined discrete continuous model describing the lag phase of Listeria monocytogenes. Int. J. Food Microbiol. 54:171-180.
Crossref
 
Ramirez SJ, Contreras FG, Gómez EMC (2005). La fase estacionaria en la bacteria Escherichia coli. Rev. Lat-amer Microbiol. 47(3-4):92-101
 
Toro-Vazquez JF, Gómez-Aldapa CA, Aragon-Pi-a A, Brito-de la Fuente E, Dibildox-Alvarado E, Charó-Alonso M (2003). Interaction of granular maize starch with lysophosphatidylcholine evaluated by calorimetry, mechanical and microscopy analysis. J. Cereal Sci. 38:269-279.
Crossref
 
Von AU, Wirz D, Daniels AU (2009). Isothermal micro calorimetry - a new method for MIC determinations: results for 12 antibiotics and reference strains of E. coli and S. aureus. BMC Microbiol. 9:106. doi:10.1186/1471-2180-9-106
Crossref
 
von Stockar U, Marison WI (1989). The use of calorimetry in biotechnology. In Fiechter A (ed) Advances in Biochemical Engineering/Biotechnology. Bioprocesses and Engineering. Springer-Verlag Berlin Heidelberg. pp. 93-136.
Crossref
 
von Stockar U, van der Wieler LAM (1997). Thermodynamics in biochemical engineering. J. Biotechnol. 59:25-37
Crossref
 
Yi L, Than TT, Zhong C, Songsheng Q, Ping S (2000). Microcalorimetric studies on the metabolism of Chlorella vulgaris. Chemosphere 40:845-849.
Crossref
 
Zhang H, Lin Y, Sun H (1993). Determination of thermograms of bacterial growth and study of optimum growth temperature. Thermochim. Acta. 216:19-23.
Crossref