[1] Bier M., Palusinski, O.A., Mosher R.A., et al., “Electrophoresis: Mathematical modeling
and computer simulation”, Science, 219, 1281,1983.
[2] Biyofizik Uygulama Notları, İ.Ü. Basımevi ve Film Merkezi, 2000.
[3] Çelebi G., “Biyofizik”, Çağlayan Kitabevi, 1989.
[4] Başar M., Bodur H., “Klinikte Kâğıt Elektroforezi”, 1964.
[5] Weber K., Pringle, J.R., Osborn, M., “Measurement of molecular weights by
electrophoresis on SDS-Acrylamide gel”, Meth. Enzgmologie, 3-9, 1972.
[6] Walker J.M., Gaastra W., “Tecniques in Molecular Biology”,Coom Helm Ldt, Provident
House, 1983.
[7] Nelson C.A., Journal of Biological Chemistry, Volume 246, 389, 1980.
[8] Laemmli U.K., Favre M., “Maturation of the head of bacteriophage T4. I. DNA packaging
events Journal of Molecular Biology”, 80, 575-599, 1973.
[9] Andrews A.T., “Electrophoresis”,Oxford Science publication, 93-110, 1995.
[10] Reisner A.H., Nemes P., Bucholtz C., “The use of Coomassie BBG250 Perchloric Acide
Solution for Staining in Electrphoresis and Isoelectric Focusing on Polyacrylamide Gels”,
Anal. Biochem., 64, 509-516, 1975.
[11] Bleich R., “Analytische, Elektrophoreseverfahren”, G. Thiemeverlag, Stuttgart, 1978.
[12] O’Farrell P.H.,”High Resolution Two Dimensional Electrophoresis of Proteins” J. Biol.
Chem., 250, 4007-40021, 1975.
[13] Anderson, N.G., Anderson, N.L.,”Two-Dimensional Analysis of Serum and Tissue
Proteins:Mutiple İsoelectric Focusing”, Anal. Biochem., 85, 331-340, 1978.
[14] Unlu M., Morgan M.E., Minden J.S., “Difference gel electrophoresis: a single gel method
for detecting changes in protein extracts”, Electrophoresis, 18, 2071-2077, 1997.
[15] Zhou G., Li H., DeCamp D., et al., “2D differential in-gel electrophoresis for the
identification of esophageal scans cell cancer-specific protein markers”, Mol. Cell.
Proteomics, 1:117, 2002.
[16] Gharbi S., Gaffney P., Yang A., et al., “Evaluation of two-dimensional differential gel
electrophoresis for proteomic expression analysis of a model breast cancer cell system”,
Mol. Cell. Proteomics, 1:91, 2002.
[17] Van den Bergh G., Clerens S., Cnops L. et al., “Fluorescent two-dimensional difference
gel electrophoresis and mass spectrometry identify age-related protein expression
differences for the primary visual cortex of kitten and adult cat”, J. Neurochem., 85:193,
2003.
[18] Ablan A., David S.O., Bjorkesten L., et al., “A novel experimental design for comparative
two-dimensional gel analysis: two-dimensional difference gel electrophoresis
incorporating a pooled internal Standard”, Proteomics, 3:36, 2003.
[19] Friedman D.B., Hill S., Keller J.W., et al., “Proteome analysis of human colon cancer by
two-dimensional difference gel electrophoresis and mass spectrometry”, Proteomics
4:793, 2004.
[20] Swatton J.E., Prabakaran S., Karp N.A., et al.., “Protein profiling of human postmortem
brain using 2-dimensional fluorescence difference gel electrophoresis (2-D DIGE)”, Mol.
Psychiatry, 9:128, 2004.
[21] Shaw J., Rowlinson R., Nickson J., et al., “Evaluation of saturation labelling twodimensional difference gel electrophoresis fluorescent dyes”, Proteomics, 3:1181, 2003.
[22] Venter J.C., Adams M.D., Myers E.W. et.all., “The sequence of the human genome”,
Science, 291, 1304-1351, 2001.
[23] Lander ES, Linton LM, Birren B., et al., “Initial sequencing and analysis of the human
genome”, Nature, 409, 860-921, 2001.
[24] Srinivas P.R., Srivastava S., Hanash S., et al., “Proteomics in early detection of cancer”,
Clin. Chem., 47, 1901-1911, 2001.
[25] Wulfkuhle J.D., Liotta L.A., Petricoin E.F., “Proteomic applications for the early
detection of cancer”, Nat. Rev. Cancer, 3, 267-275, 2003.
[26] Marrelli D., Roviello F., De Stefano A., et al., “Prognostic significance of CEA, CA 19-9
and CA 72-4 preoperative serum levels in gastric carcinoma”, Oncology, 57, 55-62, 1999.
[27] Nakajima K., Ochiai T., Suzuki T., et al., “Impact of preoperative serum
carcinoembryonic antigen, CA 19-9 and alpha fetoprotein levels in gastric cancer
patients”, Tumor Biol., 19, 464-469, 1998.
[28] Ishigami S., Natsugoe S., Hokita S,. et al., “Clinical importance of preoperative
carcinoembryonic antigen and carbohydrate antigen 19-9 levels in gastric cancer” J. Clin.
Gastroenterol., 32, 41-44, 2001.
[29] Tocchi A., Costa G., Lepre L. et all., “The role of serum and gastric juice levels of
carcinoembryonic antigen, CA19-9 and CA72-4 in patients with gastric cancer”, J. Cancer
Res. Clin. Oncol.,124, 450-455, 1998.
[30] Banks R.E., Dunn M.J., Forbes M.A., et al., “The potential use of laser capture
microdissection to selectively obtain distinct populations of cells for proteomic analysis--
preliminary findings”, Electrophoresis, 20, 689-700, 1999.
[31] Ornstein DK, Gillespie JW, Paweletz C.P. et al., “Proteomic analysis of laser capture
microdissected human prostate cancer and in vitro prostate cell lines”, Electrophoresis,
21, 2235-2242, 2000.
[32] Emmert-Buck M.R., Gillespie J.W., Paweletz C.P., et al., “An approach to proteomic
analysis of human tumors”, Mol. Carcinog., 27, 158-165, 2000.
[33] Lawrie L.C., Curran S., McLeod H.L., et al., “Application of laser capture
microdissection and proteomics in colon cancer”, Mol. Pathol., 54, 253-258, 2001.
[34] Kondo T., Hirohashi S. “Application of highly sensitive fluorescent dyes (CyDye DIGE
Fluor saturation dyes) to laser microdissection and two-dimensional difference gel
electrophoresis (2D-DIGE) for cancer proteomics”, Nat. Protoc., 1, 2940-2956, 2006.
[35] Kondo T., Seike M., Mori Y., et al., “Application of sensitive fluorescent dyes in linkage
of laser microdissection and two-dimensional gel electrophoresis as a cancer proteomic
study tool”, Proteomics, 3, 1758-66, 2003.
Thank you for copying data from http://www.arastirmax.com