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Açai (Euterpe oleracea Mart.) Seed Extract Induces Cell Cycle Arrest and Apoptosis in Human Lung Carcinoma Cells
by
Moura, Roberto Soares de
, Rocha, Ana Paula Machado da
, Berniz, Camila Ramos
, Guimarães, Deborah de Almeida Bauer
, Abreu, Joel Pimentel de
, Martinez, Raquel Martins
, Teodoro, Anderson Junger
, Resende, Angela Castro
in
2,2-diphenyl-1-picrylhydrazyl
/ antioxidant
/ Antioxidants
/ Apoptosis
/ Assaying
/ açai
/ bioactive compounds
/ Cancer therapies
/ Cell cycle
/ cell cycle checkpoints
/ Cell viability
/ Communication
/ Cytotoxicity
/ Euterpe oleracea
/ Flow cytometry
/ Food
/ Food science
/ Fruits
/ G1 phase
/ Gallic acid
/ Garbage
/ human cell lines
/ interphase
/ Lung cancer
/ Lung carcinoma
/ lung neoplasms
/ municipal solid waste
/ neoplasm cells
/ oxygen radical absorbance capacity
/ Phenolic compounds
/ Phenols
/ Positive feedback
/ Production increases
/ protective effect
/ seed extracts
/ Seeds
/ Software
/ toxicity testing
/ Variance analysis
/ Vitamin E
2018
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Açai (Euterpe oleracea Mart.) Seed Extract Induces Cell Cycle Arrest and Apoptosis in Human Lung Carcinoma Cells
by
Moura, Roberto Soares de
, Rocha, Ana Paula Machado da
, Berniz, Camila Ramos
, Guimarães, Deborah de Almeida Bauer
, Abreu, Joel Pimentel de
, Martinez, Raquel Martins
, Teodoro, Anderson Junger
, Resende, Angela Castro
in
2,2-diphenyl-1-picrylhydrazyl
/ antioxidant
/ Antioxidants
/ Apoptosis
/ Assaying
/ açai
/ bioactive compounds
/ Cancer therapies
/ Cell cycle
/ cell cycle checkpoints
/ Cell viability
/ Communication
/ Cytotoxicity
/ Euterpe oleracea
/ Flow cytometry
/ Food
/ Food science
/ Fruits
/ G1 phase
/ Gallic acid
/ Garbage
/ human cell lines
/ interphase
/ Lung cancer
/ Lung carcinoma
/ lung neoplasms
/ municipal solid waste
/ neoplasm cells
/ oxygen radical absorbance capacity
/ Phenolic compounds
/ Phenols
/ Positive feedback
/ Production increases
/ protective effect
/ seed extracts
/ Seeds
/ Software
/ toxicity testing
/ Variance analysis
/ Vitamin E
2018
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Açai (Euterpe oleracea Mart.) Seed Extract Induces Cell Cycle Arrest and Apoptosis in Human Lung Carcinoma Cells
by
Moura, Roberto Soares de
, Rocha, Ana Paula Machado da
, Berniz, Camila Ramos
, Guimarães, Deborah de Almeida Bauer
, Abreu, Joel Pimentel de
, Martinez, Raquel Martins
, Teodoro, Anderson Junger
, Resende, Angela Castro
in
2,2-diphenyl-1-picrylhydrazyl
/ antioxidant
/ Antioxidants
/ Apoptosis
/ Assaying
/ açai
/ bioactive compounds
/ Cancer therapies
/ Cell cycle
/ cell cycle checkpoints
/ Cell viability
/ Communication
/ Cytotoxicity
/ Euterpe oleracea
/ Flow cytometry
/ Food
/ Food science
/ Fruits
/ G1 phase
/ Gallic acid
/ Garbage
/ human cell lines
/ interphase
/ Lung cancer
/ Lung carcinoma
/ lung neoplasms
/ municipal solid waste
/ neoplasm cells
/ oxygen radical absorbance capacity
/ Phenolic compounds
/ Phenols
/ Positive feedback
/ Production increases
/ protective effect
/ seed extracts
/ Seeds
/ Software
/ toxicity testing
/ Variance analysis
/ Vitamin E
2018
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Açai (Euterpe oleracea Mart.) Seed Extract Induces Cell Cycle Arrest and Apoptosis in Human Lung Carcinoma Cells
Journal Article
Açai (Euterpe oleracea Mart.) Seed Extract Induces Cell Cycle Arrest and Apoptosis in Human Lung Carcinoma Cells
2018
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Overview
Açai fruit has been studied for its antioxidant properties, with positive feedback against many diseases, including cancer. Although açai seeds are not edible, their composition has been studied in order to find new applications and reduce garbage generation. This study aimed to evaluate the cytotoxic effects and impacts on the cell cycle and apoptosis of açai seed extract (ASE) on human lung carcinoma cell line (A549). Antioxidant activity of açai seed extract (ASE) was measured by DPPH assay, Trolox Equivalent Antioxidant Capacity (ABTS/TEAC), Ferric Reducing Ability (FRAP) and Oxygen radical absorbance capacity (ORAC) assays. Human lung carcinoma cell viability (A549) was monitored by MTT assay method and the effects on cell cycle and apoptosis were measured by flow cytometry. The results indicate high antioxidant activity in ASE and high values of total phenolic compounds (37.08 ± 8.56 g gallic acid/100 g). The MTT assay showed a maximum decrease (72.07%) in the viability of A549 cells after 48 h treatment with ASE (200 µg/mL). Flow cytometer analysis revealed that ASE increased the percentage of cells in G0/G1 phase and promoted a high increase of apoptotic cells when compared to the untreated cells. The present study suggests that ASE has a high antioxidant capacity and may have a protective effect against lung cancer.
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