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Items: 1 to 20 of 99

1.

Integration of metabolomics and expression of glycerol-3-phosphate acyltransferase (GPAM) in breast cancer-link to patient survival, hormone receptor status, and metabolic profiling.

Brockmöller SF, Bucher E, Müller BM, Budczies J, Hilvo M, Griffin JL, Orešič M, Kallioniemi O, Iljin K, Loibl S, Darb-Esfahani S, Sinn BV, Klauschen F, Prinzler J, Bangemann N, Ismaeel F, Fiehn O, Dietel M, Denkert C.

J Proteome Res. 2012 Feb 3;11(2):850-60. doi: 10.1021/pr200685r. Epub 2011 Dec 15.

PMID:
22070544
2.

Comparative metabolomics of estrogen receptor positive and estrogen receptor negative breast cancer: alterations in glutamine and beta-alanine metabolism.

Budczies J, Brockmöller SF, Müller BM, Barupal DK, Richter-Ehrenstein C, Kleine-Tebbe A, Griffin JL, Orešič M, Dietel M, Denkert C, Fiehn O.

J Proteomics. 2013 Dec 6;94:279-88. doi: 10.1016/j.jprot.2013.10.002. Epub 2013 Oct 11.

PMID:
24125731
3.

Bovine lipid metabolism related gene GPAM: Molecular characterization, function identification, and association analysis with fat deposition traits.

Yu H, Zhao Z, Yu X, Li J, Lu C, Yang R.

Gene. 2017 Apr 20;609:9-18. doi: 10.1016/j.gene.2017.01.031. Epub 2017 Jan 26.

PMID:
28131819
4.

Novel theranostic opportunities offered by characterization of altered membrane lipid metabolism in breast cancer progression.

Hilvo M, Denkert C, Lehtinen L, Müller B, Brockmöller S, Seppänen-Laakso T, Budczies J, Bucher E, Yetukuri L, Castillo S, Berg E, Nygren H, Sysi-Aho M, Griffin JL, Fiehn O, Loibl S, Richter-Ehrenstein C, Radke C, Hyötyläinen T, Kallioniemi O, Iljin K, Oresic M.

Cancer Res. 2011 May 1;71(9):3236-45. doi: 10.1158/0008-5472.CAN-10-3894. Epub 2011 Mar 17.

5.

Genomic structure and an alternative transcript of bovine mitochondrial glycerol-3-phosphate acyltransferase gene (GPAM).

Roy R, Ordovas L, Taourit S, Zaragoza P, Eggen A, Rodellar C.

Cytogenet Genome Res. 2006;112(1-2):82-9.

PMID:
16276094
6.

Mitochondrial Glycerol-3-Phosphate Acyltransferase-Dependent Phospholipid Synthesis Modulates Phospholipid Mass and IL-2 Production in Jurkat T Cells.

Faris R, Weber MM, Seeger DR, Cavazos D, de Graffenried L, Murphy EJ, Jolly CA.

Lipids. 2016 Mar;51(3):291-301. doi: 10.1007/s11745-016-4121-5. Epub 2016 Jan 21.

PMID:
26797755
7.

A joint analysis of metabolomics and genetics of breast cancer.

Tang X, Lin CC, Spasojevic I, Iversen ES, Chi JT, Marks JR.

Breast Cancer Res. 2014 Aug 5;16(4):415. doi: 10.1186/s13058-014-0415-9.

8.

Metabolomic profiling of breast tumors using ductal fluid.

Matos Do Canto L, Marian C, Varghese RS, Ahn J, Da Cunha PA, Willey S, Sidawy M, Rone JD, Cheema AK, Luta G, Nezami Ranjbar MR, Ressom HW, Haddad BR.

Int J Oncol. 2016 Dec;49(6):2245-2254. doi: 10.3892/ijo.2016.3732. Epub 2016 Oct 13.

9.

Glycerol-3-phosphate Acyltransferase 1 Promotes Tumor Cell Migration and Poor Survival in Ovarian Carcinoma.

Marchan R, Büttner B, Lambert J, Edlund K, Glaeser I, Blaszkewicz M, Leonhardt G, Marienhoff L, Kaszta D, Anft M, Watzl C, Madjar K, Grinberg M, Rempel E, Hergenröder R, Selinski S, Rahnenführer J, Lesjak MS, Stewart JD, Cadenas C, Hengstler JG.

Cancer Res. 2017 Sep 1;77(17):4589-4601. doi: 10.1158/0008-5472.CAN-16-2065. Epub 2017 Jun 26.

PMID:
28652252
10.

Distinct choline metabolic profiles are associated with differences in gene expression for basal-like and luminal-like breast cancer xenograft models.

Moestue SA, Borgan E, Huuse EM, Lindholm EM, Sitter B, Børresen-Dale AL, Engebraaten O, Maelandsmo GM, Gribbestad IS.

BMC Cancer. 2010 Aug 17;10:433. doi: 10.1186/1471-2407-10-433.

11.

Expression pattern of stromal cell-derived factor-1 chemokine in invasive breast cancer is correlated with estrogen receptor status and patient prognosis.

Kobayashi T, Tsuda H, Moriya T, Yamasaki T, Kikuchi R, Ueda S, Omata J, Yamamoto J, Matsubara O.

Breast Cancer Res Treat. 2010 Oct;123(3):733-45. doi: 10.1007/s10549-009-0672-y. Epub 2009 Dec 18.

PMID:
20020198
12.

Human plasma metabolomics for identifying differential metabolites and predicting molecular subtypes of breast cancer.

Fan Y, Zhou X, Xia TS, Chen Z, Li J, Liu Q, Alolga RN, Chen Y, Lai MD, Li P, Zhu W, Qi LW.

Oncotarget. 2016 Mar 1;7(9):9925-38. doi: 10.18632/oncotarget.7155.

13.

Low ATM protein expression in malignant tumor as well as cancer-associated stroma are independent prognostic factors in a retrospective study of early-stage hormone-negative breast cancer.

Feng X, Li H, Dean M, Wilson HE, Kornaga E, Enwere EK, Tang P, Paterson A, Lees-Miller SP, Magliocco AM, Bebb G.

Breast Cancer Res. 2015 May 3;17:65. doi: 10.1186/s13058-015-0575-2.

14.
15.

Prognostic influence of cyclooxygenase-2 protein and mRNA expression in node-negative breast cancer patients.

Sicking I, Rommens K, Battista MJ, Böhm D, Gebhard S, Lebrecht A, Cotarelo C, Hoffmann G, Hengstler JG, Schmidt M.

BMC Cancer. 2014 Dec 15;14:952. doi: 10.1186/1471-2407-14-952.

16.

Metformin increases survival in hormone receptor-positive, HER2-positive breast cancer patients with diabetes.

Kim HJ, Kwon H, Lee JW, Kim HJ, Lee SB, Park HS, Sohn G, Lee Y, Koh BS, Yu JH, Son BH, Ahn SH.

Breast Cancer Res. 2015 May 3;17:64. doi: 10.1186/s13058-015-0574-3.

17.
18.

Comparative metabolic and lipidomic profiling of human breast cancer cells with different metastatic potentials.

Kim HY, Lee KM, Kim SH, Kwon YJ, Chun YJ, Choi HK.

Oncotarget. 2016 Oct 11;7(41):67111-67128. doi: 10.18632/oncotarget.11560.

19.

Role of DNA methylation in the regulation of lipogenic glycerol-3-phosphate acyltransferase 1 gene expression in the mouse neonatal liver.

Ehara T, Kamei Y, Takahashi M, Yuan X, Kanai S, Tamura E, Tanaka M, Yamazaki T, Miura S, Ezaki O, Suganami T, Okano M, Ogawa Y.

Diabetes. 2012 Oct;61(10):2442-50. Epub 2012 Jun 20.

20.

Oxidative stress and counteracting mechanisms in hormone receptor positive, triple-negative and basal-like breast carcinomas.

Karihtala P, Kauppila S, Soini Y, Arja-Jukkola-Vuorinen.

BMC Cancer. 2011 Jun 21;11:262. doi: 10.1186/1471-2407-11-262.

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