13-hydroxy-9-11-octadecadienoic-acid and Adenoma

13-hydroxy-9-11-octadecadienoic-acid has been researched along with Adenoma* in 3 studies

Other Studies

3 other study(ies) available for 13-hydroxy-9-11-octadecadienoic-acid and Adenoma

ArticleYear
Up-regulation of 15-lipoxygenase enzymes and products in functional and non-functional pituitary adenomas.
    Lipids in health and disease, 2019, Jul-09, Volume: 18, Issue:1

    Pituitary adenoma accounts as a complex and multifactorial intracranial neoplasm with wide range of clinical symptoms which its underlying molecular mechanism has yet to be determined. The bioactive lipid mediators received attentions toward their contribution in cancer cell proliferation, progression and death. Amongst, 15-Lipoxygense (15-Lox) enzymes and products display appealing role in cancer pathogenesis which their possible effect in pituitary adenoma tumor genesis is perused in the current study.. The 15-Lipoxygenses isoforms expression level was evaluated in tumor tissues of prevalent functional and non-functional pituitary adenomas and normal pituitary tissues via Real-Time PCR. The circulating levels of 15(S) HETE and 13(S) HODE as 15-Lox main products were assessed in serum of patients and healthy subjects using enzyme immunoassay kits.. Our results revealed that 15-Lox-1 and 15-Lox-2 expression levels were elevated in tumor tissues of pituitary adenomas comparing to normal pituitary tissues. The elevated levels of both isoforms were accompanied with 15(S) HETE and 13(S) HODE elevation in the serum of patients. The 15-Lox-1 expression and activity was higher in invasive tumors as well as tumors with bigger size indicating the possible pro-tumorigenic role of 15-Lox-1, more than 15-Lox-2 in pituitary adenomas. The diagnostic value of 15-Lipoxygense isoforms and products were considerable between patients and healthy groups.. The possible involvement of 15-Lipoxygense pathway especially 15-Lox-1 in the regulation of pituitary tumor growth and progression may open up new molecular mechanism regarding pituitary adenoma pathogenesis and might shed light on its new therapeutic strategies.

    Topics: Adenoma; Adult; Aged; Arachidonate 15-Lipoxygenase; Case-Control Studies; Female; Gene Expression Regulation, Enzymologic; Gene Expression Regulation, Neoplastic; Humans; Hydroxyeicosatetraenoic Acids; Linoleic Acids; Male; Middle Aged; Pituitary Neoplasms; Up-Regulation; Young Adult

2019
Tumor-associated down-regulation of 15-lipoxygenase-1 is reversed by celecoxib in colorectal cancer.
    Annals of surgery, 2005, Volume: 241, Issue:6

    To evaluate the role of celecoxib on 15-lipoxygenase-1 (15-LOX-1) expression, protein levels, and rates of apoptosis in colorectal cancer cell lines. Also, to evaluate the expression of 15-LOX-1 in human normal mucosa, adenoma, and carcinoma with correlation to overall survival.. The function of 15-LOX-1 is to maintain normal rates of apoptosis (programmed cell death). Decreased apoptosis is one mechanism of cancer growth and dissemination. It is our hypothesis that expression of 15-LOX-1 is reduced in human colorectal cancer (CRC) and the administration of celecoxib can reverse this process and induce apoptosis.. Effect of celecoxib in cell culture: The effect of 40 micromol/L celecoxib was compared with untreated controls in tissue culture utilizing HT-29 and DLD-1 CRC cell lines. Expression of 15-LOX-1 protein was measured by immunoblot. Induction of apoptosis was evaluated by annexin V staining. All data are presented as mean +/- SEM, with significance defined as P < 0.05. 15-LOX-1 in human CRC: From February 1998 to January 2002, 126 patients underwent surgical resection of either colorectal adenomas (n = 24) or carcinomas (n = 102), or both (n = 25). Tissue was macrodissected, snap frozen, and stored at -80 degrees C. After tissue processing, RNA was extracted and gene expression of 15-LOX-1 was quantified utilizing ABI prism real-time quantitative RT-PCR. Significance evaluated by the Wilcoxon signed rank test.. Effect of celecoxib in cell culture: After 72 hours of treatment with celecoxib, immunoblot demonstrated a 1.5- to 2-fold increase in 15-LOX-1 protein expression in HT-29 and DLD-1 cells, respectively. Celecoxib produced greater than a 2-fold increase in the rate of apoptosis compared with control cells in both cell lines (P < 0.05). 15-LOX-1 in human CRC: The mean age of the patients was 62 +/- 1 years; 78% were white and 48% were female. The mean size of the polyps and cancers were 3.0 +/- 0.4 and 5.0 +/- 0.1 cm, respectively. Expression of 15-LOX-1 relative to S9 was 30 in normal mucosa and significantly down-regulated to 11 in adenomas and 16 in carcinomas (P < 0.05).. 15-LOX-1 gene expression is significantly reduced in both human colorectal adenomas and carcinomas and associated with decreased survival. Administration of celecoxib restores 15-LOX-1 protein expression and induces apoptosis. Down-regulation of 15-LOX-1 is an early event in the adenoma to carcinoma sequence, and reversal with celecoxib may represent one mechanism for chemoprevention of polyps or treatment of carcinomas.

    Topics: Adenoma; Apoptosis; Arachidonate 15-Lipoxygenase; Blotting, Western; Carcinoma; Celecoxib; Colorectal Neoplasms; Cyclooxygenase Inhibitors; Down-Regulation; Eicosanoids; Female; Gene Expression Regulation, Neoplastic; Humans; Immunohistochemistry; Linoleic Acids; Male; Middle Aged; Pyrazoles; Sulfonamides; Tumor Cells, Cultured

2005
The critical role of 15-lipoxygenase-1 in colorectal epithelial cell terminal differentiation and tumorigenesis.
    Cancer research, 2005, Dec-15, Volume: 65, Issue:24

    Terminal differentiation is an important event for maintaining normal homeostasis in the colorectal epithelium, and the loss of apoptosis is an important mechanism underlying colorectal tumorigenesis. The very limited current data on the role of lipoxygenase (LOX) metabolism in tumorigenesis suggests that the oxidative metabolism of linoleic and arachidonic acid possibly shifts from producing antitumorigenic 15-LOX-1 and 15-LOX-2 products to producing protumorigenic 5-LOX and 12-LOX products. We examined whether this shift occurs in vitro in the human colon cancer cell line Caco-2 in association with the loss of terminal differentiation and apoptosis, or in vivo during the formation of colorectal adenomas in patients with familial adenomatous polyposis (FAP). Restoring terminal differentiation and apoptosis of Caco-2 cells increased the mRNA levels of 5-LOX, 15-LOX-2, and 15-LOX-1, but the only significant increases in protein expression and enzymatic activity were of 15-LOX-1. In FAP patients, 15-LOX-1 expression and activity were significantly down-regulated in adenomas (compared with paired nonneoplastic epithelial mucosa), whereas 5-LOX and 15-LOX-2 protein expressions and enzymatic activities were not. We conducted a validation study with immunohistochemical testing in a second group of FAP patients; 15-LOX-1 expression was down-regulated in colorectal adenomas (compared with nonneoplastic epithelial mucosa) in 87% (13 of 15) of this group. We confirmed the mechanistic relevance of these findings by demonstrating that ectopically restoring 15-LOX-1 expression reestablished apoptosis in Caco-2 cells. Therefore, 15-LOX-1 down-regulation rather than a shift in the balance of LOXs is likely the dominant alteration in LOX metabolism which contributes to colorectal tumorigenesis by repressing apoptosis.

    Topics: Adenoma; Adenomatous Polyposis Coli; Apoptosis; Arachidonate 15-Lipoxygenase; Arachidonate 5-Lipoxygenase; Blotting, Northern; Caco-2 Cells; Cell Differentiation; Chromatography, High Pressure Liquid; Chromatography, Liquid; Colon; Colorectal Neoplasms; Epithelial Cells; Gene Expression Regulation, Neoplastic; Humans; Linoleic Acids; Mass Spectrometry; Neoplasms, Glandular and Epithelial; RNA, Messenger; Tumor Cells, Cultured

2005