Literature DB >> 14511031

Decreased prostatic arachidonic acid in human prostatic carcinoma.

F H Faas1, A Q Dang, J White, R F Schaefer, D E Johnson.   

Abstract

OBJECTIVE: To measure prostatic and blood fatty acid composition in a large group of patients undergoing prostatectomy for benign or malignant prostate disease, as there is evidence linking arachidonic acid metabolism and prostate cancer through its role as an eicosanoid precursor, and earlier studies showed lower prostatic arachidonic acid content in a few patients. PATIENTS AND METHODS: Prostatic phospholipid fatty acid composition was determined in prostate tissue from 173 patients undergoing prostate surgery, i.e. radical prostatectomy, cystoprostatectomy or transurethral resection (TURP). Blood fatty acid composition was determined in 99 of these patients and in 85 undergoing prostatic needle biopsy.
RESULTS: There was a significantly lower percentage of arachidonic acid in malignant than in benign portions of the prostate (15.2% vs 17%) in all patients assessed. The changes were greatest in those undergoing TURP for known prostate cancer (13.4% vs 17.2%), these patients having the greatest proportion of malignancy in the specimens. There were no consistent changes in blood fatty acid composition.
CONCLUSION: This is the first prospective study of arachidonic acids levels involving many consecutive patients undergoing prostate surgery for either benign or malignant disease. The lower prostatic arachidonic acid level is probably a result of the increased use of arachidonic acid for producing prostaglandins and/or leukotrienes. Further understanding of the cause and/or consequence of this finding might lead to a better understanding of prostate cancer.

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Year:  2003        PMID: 14511031     DOI: 10.1046/j.1464-410x.2003.04387.x

Source DB:  PubMed          Journal:  BJU Int        ISSN: 1464-4096            Impact factor:   5.588


  7 in total

1.  Distribution of polyunsaturated fatty acids including conjugated linoleic acids in total and subcellular fractions from healthy and cancerous parts of human kidneys.

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Journal:  Lipids       Date:  2005-03       Impact factor: 1.880

2.  Regulation of polyisoprenylated methylated protein methyl esterase by polyunsaturated fatty acids and prostaglandins.

Authors:  Felix Amissah; Shalina Taylor; Randolph Duverna; Lambert T Ayuk-Takem; Nazarius S Lamango
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3.  Blood level omega-3 Fatty acids as risk determinant molecular biomarker for prostate cancer.

Authors:  Mishell Kris Sorongon-Legaspi; Michael Chua; Maria Christina Sio; Marcelino Morales
Journal:  Prostate Cancer       Date:  2013-03-25

Review 4.  Arachidonic acid and cancer risk: a systematic review of observational studies.

Authors:  Mai Sakai; Saki Kakutani; Chika Horikawa; Hisanori Tokuda; Hiroshi Kawashima; Hiroshi Shibata; Hitomi Okubo; Satoshi Sasaki
Journal:  BMC Cancer       Date:  2012-12-19       Impact factor: 4.430

5.  Promotion of prostatic metastatic migration towards human bone marrow stoma by Omega 6 and its inhibition by Omega 3 PUFAs.

Authors:  M D Brown; C A Hart; E Gazi; S Bagley; N W Clarke
Journal:  Br J Cancer       Date:  2006-03-27       Impact factor: 7.640

6.  Metabolic alterations in urine extracellular vesicles are associated to prostate cancer pathogenesis and progression.

Authors:  Marc Clos-Garcia; Ana Loizaga-Iriarte; Patricia Zuñiga-Garcia; Pilar Sánchez-Mosquera; Ana Rosa Cortazar; Esperanza González; Verónica Torrano; Cristina Alonso; Miriam Pérez-Cormenzana; Aitziber Ugalde-Olano; Isabel Lacasa-Viscasillas; Azucena Castro; Felix Royo; Miguel Unda; Arkaitz Carracedo; Juan M Falcón-Pérez
Journal:  J Extracell Vesicles       Date:  2018-05-07

7.  Racial differences in distribution of fatty acids in prostate cancer and benign prostatic tissues.

Authors:  Xinchun Zhou; Hao Mei; Joshua Agee; Timera Brown; Jinghe Mao
Journal:  Lipids Health Dis       Date:  2019-11-03       Impact factor: 3.876

  7 in total

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