Individual and Combined Effects of CTLA4-CD28 Variants and Oxidant-Antioxidant Status on the Development of Colorectal Cancer

Colorectal cancer (CRC) is the third most frequent cancer worldwide. Research has revealed the contributions of the immune system and anti-inflammatory pathways in the development of cancer. The balance between cluster of differentiation 28 (CD28) and cytotoxic T-lymphocyte-associated protein 4 (CTL...

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Veröffentlicht in:Anticancer research 2015-10, Vol.35 (10), p.5391-5400
Hauptverfasser: Kucukhuseyin, Ozlem, Turan, Saime, Yanar, Karolin, Arikan, Soykan, Duzkoylu, Yigit, Aydin, Seval, Cakatay, Ufuk, Mezani, Brunilda, Farooqi, Ammad Ahmad, Isitmangil, Gulbu Aydinoğlu, Kiran, Bayram, Cacina, Canan, Yenilmez, Ezgi Nurdan, Ergen, Arzu, Zeybek, Umit, Yaylim, Ilhan
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container_end_page 5400
container_issue 10
container_start_page 5391
container_title Anticancer research
container_volume 35
creator Kucukhuseyin, Ozlem
Turan, Saime
Yanar, Karolin
Arikan, Soykan
Duzkoylu, Yigit
Aydin, Seval
Cakatay, Ufuk
Mezani, Brunilda
Farooqi, Ammad Ahmad
Isitmangil, Gulbu Aydinoğlu
Kiran, Bayram
Cacina, Canan
Yenilmez, Ezgi Nurdan
Ergen, Arzu
Zeybek, Umit
Yaylim, Ilhan
description Colorectal cancer (CRC) is the third most frequent cancer worldwide. Research has revealed the contributions of the immune system and anti-inflammatory pathways in the development of cancer. The balance between cluster of differentiation 28 (CD28) and cytotoxic T-lymphocyte-associated protein 4 (CTLA4) signaling is important for the regulation of immune responses. The oxidant-antioxidant balance by sustaining redox control via several defense mechanisms is also an important factor for the progression of cancer. The aim of the present study was to determine the distribution of CTLA4/CD28 variants and oxidant-antioxidant status in patients with CRC. This study enrolled 80 patients with CRC and 115 healthy controls. We used a spectrophotometric assay to detect the levels of lipid peroxidation products malon dialdehyde (MDA) and lipid hydroperoxide (LHP), and measured the concentration of protein damage products, advanced oxidation protein products (AOPP) and protein carbonyl (PCO). Additionally, antioxidant levels were detected by measuring copper, zinc, superoxide dismutase (Zn-Cu SOD) and total thiol (T-SH) levels, and advanced glycation end-products (AGEs). The CTLA4 -318C>T, CTLA4 49A>G and CD28C>T genotypes were determined by using restriction enzymes. AOPP and PCO levels were increased in patients with CRC as well as those of LHP, MDA and AGE, while the levels of antioxidants such as Cu-Zn SOD and T-SH were lower. Lower serum levels of CTLA4 and higher serum levels of CD28 were detected in patients and, an association of the CTLA4 -318C/T polymorphism was found in patients with CRC. Our oxidative stress was increased in patients with CRC, suggesting the contribution of this disturbed oxidative status to serum CTLA4 and CD28 levels, and to the pathogenesis of CRC.
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Research has revealed the contributions of the immune system and anti-inflammatory pathways in the development of cancer. The balance between cluster of differentiation 28 (CD28) and cytotoxic T-lymphocyte-associated protein 4 (CTLA4) signaling is important for the regulation of immune responses. The oxidant-antioxidant balance by sustaining redox control via several defense mechanisms is also an important factor for the progression of cancer. The aim of the present study was to determine the distribution of CTLA4/CD28 variants and oxidant-antioxidant status in patients with CRC. This study enrolled 80 patients with CRC and 115 healthy controls. We used a spectrophotometric assay to detect the levels of lipid peroxidation products malon dialdehyde (MDA) and lipid hydroperoxide (LHP), and measured the concentration of protein damage products, advanced oxidation protein products (AOPP) and protein carbonyl (PCO). Additionally, antioxidant levels were detected by measuring copper, zinc, superoxide dismutase (Zn-Cu SOD) and total thiol (T-SH) levels, and advanced glycation end-products (AGEs). The CTLA4 -318C&gt;T, CTLA4 49A&gt;G and CD28C&gt;T genotypes were determined by using restriction enzymes. AOPP and PCO levels were increased in patients with CRC as well as those of LHP, MDA and AGE, while the levels of antioxidants such as Cu-Zn SOD and T-SH were lower. Lower serum levels of CTLA4 and higher serum levels of CD28 were detected in patients and, an association of the CTLA4 -318C/T polymorphism was found in patients with CRC. 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subjects Advanced Oxidation Protein Products - metabolism
Aged
Case-Control Studies
CD28 Antigens - blood
CD28 Antigens - genetics
Colorectal Neoplasms - blood
Colorectal Neoplasms - genetics
Colorectal Neoplasms - pathology
CTLA-4 Antigen - blood
CTLA-4 Antigen - genetics
Female
Humans
Lipid Peroxidation
Male
Middle Aged
Oxidative Stress
Polymorphism, Single Nucleotide
Protein Carbonylation
Spectrophotometry
title Individual and Combined Effects of CTLA4-CD28 Variants and Oxidant-Antioxidant Status on the Development of Colorectal Cancer
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