Biomedical Engineering Reference
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Lewis TA, Paszczynski A, Gordon-Wylie S, Jeedigunta S, Lee C-H, Crawford RL. 2001. Carbon
tetrachloride dechlorination by the bacterial transition metal chelator pyridine-2,6-bis
(thiocarboxylic acid). Environ Sci Technol 35:552-559.
Lewis TA, Leach L, Morales S, Austin PR, Hartwell HJ, Kaplan BJ, Forker C, Meyer J-M. 2004.
Physiological and molecular genetic evaluation of the dechlorination agent, pyridine-2,6-bis
(monothiocarboxylic acid) (PDTC) as a secondary siderophore of Pseudomonas . Environ
Microbiol 6:159-169.
Martin RE, Bouwer EJ, Hanna LM. 1992. Application of clean-bed filtration theory to bacterial
deposition in porous media. Environ Sci Technol 26:1053-1058.
Matthijs S, Baysse C, Koedam N, Tehrani KA, Verheyden L, Budzikiewicz H, Sch¨fer M,
Hoorelbeke B, Meyer J-M, De Greve H, and Cornelis P. 2004. The Pseudomonas side-
rophore quinolobactin is synthesized from xanthurenic acid, an intermediate of the kynur-
enine pathway. Mol Microbiol 52:371-384.
Michel L, Gonzales N, Jagdeep S, Nguyen-Ngoc T, Reimmann C. 2005. PchR-box recognition
by the AraC-type regulator PchR of Pseudomonas aeruginosa requires the siderophore
pyochelin as an effector. Mol Microbiol 58:495-509.
Morales SE, Lewis TA. 2006. Transcriptional regulation of the pdt gene cluster of Pseudomo-
nas stutzeri KC involves an Ara C/XylS family transcriptional activator (PdtC) and the
cognate siderophore pyridine-2,6-bis(thiocarboxylic acid) (PDTC). Appl Environ Microbiol
72:6994-7002.
Neu MP, Matonic JH, Ruggiero CE, Scott BL. 2000. Structural characterization of a plutonium
(IV) siderophore complex: Single-crystal structure of Pu-desferrioxamine E. Angew Che-
mie Int Ed Engl 39:1442-1444.
Neu MP, Johnson MT, Matonic JH, Scott BL. 2001. Actinide interactions with microbial
chelators: The dioxobis[pyridine-2,6-bis(monothiocarboxylato0] uranium(VI) ion. Acta
Cryst C57:240-242.
Phanikumar MS, Hyndman DW, Criddle CS. 2002a. Biocurtain design using reactive transport
models. Ground Water Monit Remediat 23:1-11.
Phanikumar MS, Hyndman DW, Wiggert DC, Dybas MJ, Witt M, Criddle CS. 2002b. Simula-
tion of microbial transport and carbon tetrachloride biodegradation in intermittently-fed
aquifer columns. Water Resour Res 4:1-13.
Phanikumar S, Hyndman DW, Zhao X, Dybas MJ. 2005. A three-dimensional model of
microbial transport and bioremediation at the Schoolcraft, Michigan site. Water Resour
Res 41, W05011, doi: 10.1029/2004WR003376 .
Picardal FW, Arnold RG, Couch H, Little AM, Smith ME. 1993. Involvement of cytochromes in
the anaerobic biotransformation of tetrachloromethane by Shewanella putrefaciens 200.
Appl Environ Microbiol 59:3763-3770.
Poole K, McKay GA. 2003. Iron acquisition and its control in Pseudomonas aeruginosa : Many
roads lead to Rome. Front Biosci 8:661-686.
Radabaugh PD. 1998. Factors Influencing Transport of Pesudomonas stutzeri KC. Master
Thesis, Department of Civil and Environmental Engineering, Michigan State University,
Lansing, MI, USA.
Rijnaarts HHM, Norde W, Bouwer EJ, Lyklema J, Zehnder AJB. 1996a. Bacterial deposition in
porous media related to the clean bed collision efficiency and to substratum blocking by
attached cells. Environ Sci Technol 30:2869-2876.
Rijnaarts HHM, Norde W, Bouwer EJ, Lyklema J, Zehnder AJB. 1996b. Bacterial deposition in
porous media: Effects of cell-coating, substratum hydrophobicity, and electrolyte concen-
tration. Environ Sci Technol 30:2877-2883.
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