Literature DB >> 12687277

Serum leptin, prolactin and vascular endothelial growth factor (VEGF) levels in patients with breast cancer.

U Coskun1, N Günel, F B Toruner, B Sancak, E Onuk, O Bayram, O Cengiz, E Yilmaz, S Elbeg, S Ozkan.   

Abstract

Angiogenesis plays an important role in tumor growth and metastasis in solid tumors. VEGF is an important regulator of tumor angiogenesis. Both leptin and prolactin have also been suggested to have roles in the regulation of angiogenic process. In our study, we measured serum leptin, prolactin and VEGF levels in 30 metastatic, 55 non-metastatic breast cancer patients and 25 control subjects. Serum leptin levels were found to be similar in non-metastatic (38.1+/-19.5 ng/ml), metastatic patients (39.6+/-16.3 ng/ml) and control subjects (35.6+/-13.9 ng/ml) (p>0.05). There was no statistically significant difference between patients with visceral metastasis (44.0+/-16.8 ng/ml) and patients with bone metastasis (35.2+/-15.0 ng/ml) (p>0.05). Serum prolactin levels were found to be similar in non-metastatic (12.2+/-10.7 ng/ml), metastatic patients (11.6+/-8.2 ng/ml) and control subjects (12.3+/-8.1 ng/ml), (p>0.05). Moreover, serum prolactin levels were not different in patients with visceral (11.4+/-8.8 ng/ml) and bone metastasis (11.8+/-8.0 ng/ml), (p>0.05). Metastatic patients had higher serum VEGF levels (249.8+/-154.9 pg/ml), when compared to the non-metastatic patients (138.7+/-59.3 pg/ml) and control subjects (108.4+/-47.7 pg/ml), (p<0.05). There was no difference in serum VEGF levels in non-metastatic patients and control subjects (p>0.05). Patients with visceral metastasis (337.0+/-168.0 pg/ml) had higher serum VEGF levels, when compared to patients with bone metastasis (162.6+71.8 pg/ml), (p<0.05). Serum VEGF activity may be used to evaluate angiogenic and metastatic activity in breast cancer patients. However, serum leptin and prolactin levels does not seem to be related with angiogenic activity and metastasis in breast cancer patients.

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Year:  2003        PMID: 12687277

Source DB:  PubMed          Journal:  Neoplasma        ISSN: 0028-2685            Impact factor:   2.575


  21 in total

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4.  Plasma leptin levels and risk of breast cancer in premenopausal women.

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5.  Effect of chronic and intermittent calorie restriction on serum adiponectin and leptin and mammary tumorigenesis.

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Review 6.  Multifaceted leptin network: the molecular connection between obesity and breast cancer.

Authors:  Neeraj K Saxena; Dipali Sharma
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Review 7.  Role of prolactin and vasoinhibins in the regulation of vascular function in mammary gland.

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8.  Fluctuations in depression and anxiety predict dysregulated leptin among obese breast cancer survivors.

Authors:  Megan E Renna; M Rosie Shrout; Annelise A Madison; Lisa M Jaremka; Catherine M Alfano; Stephen P Povoski; Doreen M Agnese; William E Carson; Janice K Kiecolt-Glaser
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9.  Circulating levels of leptin, adiposity and breast cancer risk.

Authors:  M-H Wu; Y-C Chou; W-Y Chou; G-C Hsu; C-H Chu; C-P Yu; J-C Yu; C-A Sun
Journal:  Br J Cancer       Date:  2009-02-24       Impact factor: 7.640

10.  Potential involvement of leptin in carcinogenesis of hepatocellular carcinoma.

Authors:  Xiu-Jie Wang; Shu-Lan Yuan; Qing Lu; Yan-Rong Lu; Jie Zhang; Yan Liu; Wen-Dong Wang
Journal:  World J Gastroenterol       Date:  2004-09-01       Impact factor: 5.742

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