» Articles » PMID: 22101070

Effects of the Commercial Extract of Aronia on Oxidative Stress in Blood Platelets Isolated from Breast Cancer Patients After the Surgery and Various Phases of the Chemotherapy

Overview
Journal Fitoterapia
Publisher Elsevier
Date 2011 Nov 22
PMID 22101070
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

Since the extract from berries of Aronia melanocarpa presents antioxidative properties in plasma and in blood platelets, not only from healthy group, but also from patients with benign breast diseases and in patients with invasive breast cancer before surgery, the aim of our present study was to evaluate the oxidative stress by measuring the level of various biomarkers of this process such as the generation of superoxide anion radicals (O(2)(-·)), the amount of carbonyl groups and 3-nitrotyrosine in proteins or the amount of glutathione in blood platelets isolated from breast cancer patients after the surgery and after various phases of the chemotherapy in the presence of A. melanocarpa extract (Aronox) in vitro. We demonstrated in platelet proteins from patients with invasive breast cancer (after the surgery and after various phases of the chemotherapy) higher level of carbonyl groups than in control healthy group. The level of 3-nitrotyrosine in platelet proteins from patients with invasive breast cancer was also significantly higher than in healthy subject group. We observed an increase of other biomarkers of oxidative stress such as O(2)(-·) and a decrease of GSH in platelets from patients with breast cancer (after the surgery and after various phases of the chemotherapy) compared to the healthy group. In model system in vitro our results showed that the commercial extract from berries of A. melanocarpa due to antioxidant action, significantly reduced the oxidative/nitrative stress in platelets from patients with invasive breast cancer caused by the surgery and various phases of the chemotherapy.

Citing Articles

A Comprehensive Review of the Functional Potential and Sustainable Applications of in the Food Industry.

Xu J, Li F, Zheng M, Sheng L, Shi D, Song K Plants (Basel). 2025; 13(24.

PMID: 39771257 PMC: 11679783. DOI: 10.3390/plants13243557.


The Efficacy of Black Chokeberry Fruits against Cardiovascular Diseases.

Kasprzak-Drozd K, Oniszczuk T, Soja J, Gancarz M, Wojtunik-Kulesza K, Markut-Miotla E Int J Mol Sci. 2021; 22(12).

PMID: 34207143 PMC: 8235034. DOI: 10.3390/ijms22126541.


Polyphenol Profile and Pharmaceutical Potential of Quercus spp. Bark Extracts.

Elansary H, Szopa A, Kubica P, Ekiert H, Mattar M, Al-Yafrasi M Plants (Basel). 2019; 8(11).

PMID: 31717611 PMC: 6918147. DOI: 10.3390/plants8110486.


Effects of drying methods on contents of bioactive compounds and antioxidant activities of black chokeberries ().

Thi N, Hwang E Food Sci Biotechnol. 2018; 25(1):55-61.

PMID: 30263236 PMC: 6049358. DOI: 10.1007/s10068-016-0008-8.


Berry Phenolic Antioxidants - Implications for Human Health?.

Olas B Front Pharmacol. 2018; 9:78.

PMID: 29662448 PMC: 5890122. DOI: 10.3389/fphar.2018.00078.