Tag: ellagicAcid
Ellagic acid: A polyphenol found in numerous berries, pomegranates, walnuts, and other fruits and nuts.
News
- 01/04/16
- Walnut compounds have chemopreventive actions
- 02/28/15
- Ellagic acid in pomegranates and berries inhibits ER+/PR+ growth
- 10/05/14
- Walnut compounds impair BC energy supply and induce cell death
- 02/26/14
- Ellagic acid reduces proliferation of ER+/PR+ breast cancer cells
- 10/17/12
- Pomegranate juice inhibits metastatic processes in BC cells
- 03/03/12
- Breast cancer blood vessel formation is blocked by ellagic acid
- 05/14/10
- Blueberries and black raspberries prevent mammary tumors in rats
- 01/05/10
- Pomegranate compounds inhibit aromatase and reduces proliferation
Foods
Studies
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Anti-tumor Effects of Ellagic Acid and Mesenchymal Stem Cell-Conditioned Medium on Breast Cancer Cells on the 3D printed PCL/ Agarose Scaffolds
Cite
Ghaedamini S, Kazemi M, Rabiei A, Honarvar A, Aliakbari M, Karbasi S. Anti-tumor Effects of Ellagic Acid and Mesenchymal Stem Cell-Conditioned Medium on Breast Cancer Cells on the 3D printed PCL/ Agarose Scaffolds. Journal of Drug Delivery Science and Technology. Elsevier BV; 2024;:106315 10.1016/j.jddst.2024.106315
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Astounding the synergistic interplay of walnuts in combating inflammation and oxidative damage
Cite
Shabbir MA, Nawaz MF, Tariq T, Khan MR, Saeed H, Abdi G, et al. Astounding the synergistic interplay of walnuts in combating inflammation and oxidative damage. Journal of Functional Foods. Elsevier BV; 2024; 119:106292 10.1016/j.jff.2024.106292
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Urolithins and Their Precursors Ellagic Acid and Ellagitannins: Natural Sources, Extraction and Methods for Their Determination
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Mantzourani C, Kakouri E, Palikaras K, Tarantilis PA, Kokotou MG. Urolithins and Their Precursors Ellagic Acid and Ellagitannins: Natural Sources, Extraction and Methods for Their Determination. Separations. MDPI AG; 2024; 11:174 10.3390/separations11060174
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Unlocking the Nutraceutical Potential of Legumes and Their By-Products: Paving the Way for the Circular Economy in the Agri-Food Industry
Cite
Guo F, Danielski R, Santhiravel S, Shahidi F. Unlocking the Nutraceutical Potential of Legumes and Their By-Products: Paving the Way for the Circular Economy in the Agri-Food Industry. Antioxidants. MDPI AG; 2024; 13:636 10.3390/antiox13060636
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Urolithin a inhibits breast cancer progression via activating TFEB-mediated mitophagy in tumor macrophages
Cite
Zheng B, Wang Y, Zhou B, Qian F, Liu D, Ye D, et al. Urolithin a inhibits breast cancer progression via activating TFEB-mediated mitophagy in tumor macrophages. Journal of Advanced Research. Elsevier BV; 2024; 10.1016/j.jare.2024.04.010
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Berries vs. Disease: Revenge of the Phytochemicals
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Lamenza FF, Upadhaya P, Roth P, Shrestha S, Jagadeesha S, Horn N, et al. Berries vs. Disease: Revenge of the Phytochemicals. Pharmaceuticals. MDPI AG; 2024; 17:84 10.3390/ph17010084
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Ellagic Acid and Cancer Hallmarks: Insights from Experimental Evidence
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Čižmáriková M, Michalková R, Mirossay L, Mojžišová G, Zigová M, Bardelčíková A, et al. Ellagic Acid and Cancer Hallmarks: Insights from Experimental Evidence. Biomolecules. MDPI AG; 2023; 13:1653 10.3390/biom13111653
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Rubus Occidentalis and its bioactive compounds against cancer: from molecular mechanisms to translational advances
Cite
Wang G, Su H, Guo Z, Li H, Jiang Z, Cao Y, et al. Rubus Occidentalis and its bioactive compounds against cancer: from molecular mechanisms to translational advances. Phytomedicine. Elsevier BV; 2023;:155029 10.1016/j.phymed.2023.155029
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A Review of the Dietary Intake, Bioavailability and Health Benefits of Ellagic Acid (EA) with a Primary Focus on Its Anti-Cancer Properties
Cite
Harper P. A Review of the Dietary Intake, Bioavailability and Health Benefits of Ellagic Acid (EA) with a Primary Focus on Its Anti-Cancer Properties. Cureus. Springer Science and Business Media LLC; 2023; 10.7759/cureus.43156
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Ellagic Acid - A Dietary Polyphenol with Anticancer Activity that Deserves More Consideration
Cite
Djaldetti M. Ellagic Acid - A Dietary Polyphenol with Anticancer Activity that Deserves More Consideration. Recent Progress in Nutrition. LIDSEN Publishing Inc; 2023; 03:1-32 10.21926/rpn.2303011
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The multifaceted mechanisms of ellagic acid in the treatment of tumors: State-of-the-art
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Lu G, Wang X, Cheng M, Wang S, Ma K. The multifaceted mechanisms of ellagic acid in the treatment of tumors: State-of-the-art. Biomedicine & Pharmacotherapy. Elsevier BV; 2023; 165:115132 10.1016/j.biopha.2023.115132
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An Overview of the Health Benefits, Extraction Methods and Improving the Properties of Pomegranate
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Benedetti G, Zabini F, Tagliavento L, Meneguzzo F, Calderone V, Testai L. An Overview of the Health Benefits, Extraction Methods and Improving the Properties of Pomegranate. Antioxidants. MDPI AG; 2023; 12:1351 10.3390/antiox12071351
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Urolithin A: A promising selective estrogen receptor modulator and 27‐hydroxycholesterol attenuator in breast cancer
Cite
Vini R, Jaikumar VS, Remadevi V, Ravindran S, Azeez JM, Sasikumar A, et al. Urolithin A: A promising selective estrogen receptor modulator and 27‐hydroxycholesterol attenuator in breast cancer. Phytotherapy Research. Wiley; 2023; 10.1002/ptr.7919
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Bioactive compounds and health benefits of pomegranate: An updated narrative review
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Cheng J, Li J, Xiong R, Wu S, Huang S, Zhou D, et al. Bioactive compounds and health benefits of pomegranate: An updated narrative review. Food Bioscience. Elsevier BV; 2023; 53:102629 10.1016/j.fbio.2023.102629
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The Therapeutic Alliance between Pomegranate and Health Emphasizing on Anticancer Properties
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Pantiora PD, Balaouras AI, Mina IK, Freris CI, Pappas AC, Danezis GP, et al. The Therapeutic Alliance between Pomegranate and Health Emphasizing on Anticancer Properties. Antioxidants. MDPI AG; 2023; 12:187 10.3390/antiox12010187
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Plant Secondary Metabolites: Therapeutic Potential and Pharmacological Properties
Cite
Zeeshan Bhatti M, Ismail H, Khan Kayani W. Plant Secondary Metabolites: Therapeutic Potential and Pharmacological Properties. Secondary Metabolites - Trends and Reviews [Working Title]. IntechOpen; 2022; 10.5772/intechopen.103698
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Ellagic Acid: A Review on Its Natural Sources, Chemical Stability, and Therapeutic Potential
Cite
Sharifi-Rad J, Quispe C, Castillo CMS, Caroca R, Lazo-Vélez MA, Antonyak H, et al. Ellagic Acid: A Review on Its Natural Sources, Chemical Stability, and Therapeutic Potential. Oxidative Medicine and Cellular Longevity. Hindawi Limited; 2022; 2022:1-24 10.1155/2022/3848084
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Role of Dietary Ingredients on Expression of Oncogenic and Tumour Suppressor miRNA
Cite
Gacche RN. Role of Dietary Ingredients on Expression of Oncogenic and Tumour Suppressor miRNA. Dietary Research and Cancer. Springer Singapore; 2021;:69-76 10.1007/978-981-16-6050-4_7
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Ellagic acid-loaded, tween 80-coated, chitosan nanoparticles as a promising therapeutic approach against breast cancer: In-vitro and in-vivo study
Cite
Kaur H, Ghosh S, Kumar P, Basu B, Nagpal K. Ellagic acid-loaded, tween 80-coated, chitosan nanoparticles as a promising therapeutic approach against breast cancer: In-vitro and in-vivo study. Life Sciences. Elsevier BV; 2021;:119927 10.1016/j.lfs.2021.119927
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Study of Transferability of Rubus Microsatellite Markers to Hybrid Boysenberry
Cite
Ryu J, Kim WJ, Im J, Kim SH, Oh SC, Cho L, et al. Study of Transferability of Rubus Microsatellite Markers to Hybrid Boysenberry. Plant Breeding and Biotechnology. Korean Society of Breeding Science; 2017; 5:253-260 10.9787/pbb.2017.5.4.253
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Ellagic acid in strawberry (Fragaria spp.): Biological, technological, stability, and human health aspects
Cite
Muthukumaran S, Tranchant C, Shi J, Ye X, Xue SJ. Ellagic acid in strawberry (Fragaria spp.): Biological, technological, stability, and human health aspects. Food Quality and Safety. Oxford University Press (OUP); 2017; 1:227-252 10.1093/fqsafe/fyx023
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Prophylactic effects of ellagic acid and rosmarinic acid on doxorubicin-induced neurotoxicity in rats
Cite
Rizk HA, Masoud MA, Maher OW. Prophylactic effects of ellagic acid and rosmarinic acid on doxorubicin-induced neurotoxicity in rats. Journal of Biochemical and Molecular Toxicology. Wiley; 2017; 31:e21977 10.1002/jbt.21977
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Aqueous extract from pecan nut [Carya illinoinensis (Wangenh) C. Koch] shell show activity against breast cancer cell line MCF-7 and Ehrlich ascites tumor in Balb-C mice
Cite
Hilbig J, Policarpi PdB, Grinevicius VMAdS, Mota NSRS, Toaldo IM, Luiz MTB, et al. Aqueous extract from pecan nut [Carya illinoinensis (Wangenh) C. Koch] shell show activity against breast cancer cell line MCF-7 and Ehrlich ascites tumor in Balb-C mice. Journal of Ethnopharmacology. Elsevier BV; 2018; 211:256-266 10.1016/j.jep.2017.08.012
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Abstract 1912: Actn4, a novel therapeutic target of dietary ellagic acid, promotes breast cancer metastasisviamediating cancer stem cells
Cite
Wang N, Wang Z, Xie X. Abstract 1912: Actn4, a novel therapeutic target of dietary ellagic acid, promotes breast cancer metastasisviamediating cancer stem cells. Tumor Biology. American Association for Cancer Research; 2017; 10.1158/1538-7445.am2017-1912
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Quercetin, a Natural Flavonoid Interacts with DNA, Arrests Cell Cycle and Causes Tumor Regression by Activating Mitochondrial Pathway of Apoptosis
Cite
Srivastava S, Somasagara RR, Hegde M, Nishana M, Tadi SK, Srivastava M, et al. Quercetin, a Natural Flavonoid Interacts with DNA, Arrests Cell Cycle and Causes Tumor Regression by Activating Mitochondrial Pathway of Apoptosis. Scientific Reports. Springer Science and Business Media LLC; 2016; 6 10.1038/srep24049
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Health benefits of walnut polyphenols: An exploration beyond their lipid profile
Cite
Sánchez-González C, Ciudad CJ, Noé V, Izquierdo-Pulido M. Health benefits of walnut polyphenols: An exploration beyond their lipid profile. Critical Reviews in Food Science and Nutrition. Informa UK Limited; 2017; 57:3373-3383 10.1080/10408398.2015.1126218
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Ellagic acid induces cell cycle arrest and apoptosis through TGF-β/Smad3 signaling pathway in human breast cancer MCF-7 cells
Cite
CHEN H, BAI M, ZHANG T, LI G, LIU M. Ellagic acid induces cell cycle arrest and apoptosis through TGF-β/Smad3 signaling pathway in human breast cancer MCF-7 cells. International Journal of Oncology. Spandidos Publications; 2015; 46:1730-1738 10.3892/ijo.2015.2870
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In vitro bioactivities and phytochemical profile of various parts of the strawberry (Fragaria × ananassa var. Amaou)
Cite
Zhu Q, Nakagawa T, Kishikawa A, Ohnuki K, Shimizu K. In vitro bioactivities and phytochemical profile of various parts of the strawberry (Fragaria × ananassa var. Amaou). Journal of Functional Foods. Elsevier BV; 2015; 13:38-49 10.1016/j.jff.2014.12.026
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Cytotoxic Effects of Ellagitannins Isolated from Walnuts in Human Cancer Cells
Cite
Le V, Esposito D, Grace MH, Ha D, Pham A, Bortolazzo A, et al. Cytotoxic Effects of Ellagitannins Isolated from Walnuts in Human Cancer Cells. Nutrition and Cancer. Informa UK Limited; 2014; 66:1304-1314 10.1080/01635581.2014.956246
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Ellagic Acid Exerts Anti-proliferation Effects via Modulation of Tgf-Β/Smad3 Signaling in MCF-7 Breast Cancer Cells
Cite
Zhang T, Chen H, Wang L, Bai M, Wang Y, Jiang X, et al. Ellagic Acid Exerts Anti-proliferation Effects via Modulation of Tgf-Β/Smad3 Signaling in MCF-7 Breast Cancer Cells. Asian Pacific Journal of Cancer Prevention. Asian Pacific Organization for Cancer Prevention; 2014; 15:273-276 10.7314/apjcp.2014.15.1.273
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Anticancer effects of bioactive berry compounds
Cite
Folmer F, Basavaraju U, Jaspars M, Hold G, El-Omar E, Dicato M, et al. Anticancer effects of bioactive berry compounds. Phytochemistry Reviews. Springer Science and Business Media LLC; 2013; 13:295-322 10.1007/s11101-013-9319-z
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The Gut Microbiota Ellagic Acid-Derived Metabolite Urolithin A and Its Sulfate Conjugate Are Substrates for the Drug Efflux Transporter Breast Cancer Resistance Protein (ABCG2/BCRP)
Cite
González-Sarrías A, Miguel V, Merino G, Lucas R, Morales JC, Tomás-Barberán F, et al. The Gut Microbiota Ellagic Acid-Derived Metabolite Urolithin A and Its Sulfate Conjugate Are Substrates for the Drug Efflux Transporter Breast Cancer Resistance Protein (ABCG2/BCRP). Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2013; 61:4352-4359 10.1021/jf4007505
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Strawberry As a Functional Food: An Evidence-Based Review
Cite
Basu A, Nguyen A, Betts NM, Lyons TJ. Strawberry As a Functional Food: An Evidence-Based Review. Critical Reviews in Food Science and Nutrition. Informa UK Limited; 2013; 54:790-806 10.1080/10408398.2011.608174
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Effect of Berry Extracts and Bioactive Compounds on Fulvestrant (ICI 182,780) Sensitive and Resistant Cell Lines
Cite
Woode DR, Aiyer HS, Sie N, Zwart AL, Li L, Seeram NP, et al. Effect of Berry Extracts and Bioactive Compounds on Fulvestrant (ICI 182,780) Sensitive and Resistant Cell Lines. International Journal of Breast Cancer. Hindawi Limited; 2012; 2012:1-11 10.1155/2012/147828
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Identification of novel dietary phytochemicals inhibiting the efflux transporter breast cancer resistance protein (BCRP/ABCG2)
Cite
Tan KW, Li Y, Paxton JW, Birch NP, Scheepens A. Identification of novel dietary phytochemicals inhibiting the efflux transporter breast cancer resistance protein (BCRP/ABCG2). Food Chemistry. Elsevier BV; 2013; 138:2267-2274 10.1016/j.foodchem.2012.12.021
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Pomegranate juice and specific components inhibit cell and molecular processes critical for metastasis of breast cancer
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Rocha A, Wang L, Penichet M, Martins-Green M. Pomegranate juice and specific components inhibit cell and molecular processes critical for metastasis of breast cancer. Breast Cancer Research and Treatment. Springer Science and Business Media LLC; 2012; 136:647-658 10.1007/s10549-012-2264-5
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Inhibition of Estrogen-Mediated Mammary Tumorigenesis by Blueberry and Black Raspberry
Cite
Ravoori S, Vadhanam MV, Aqil F, Gupta RC. Inhibition of Estrogen-Mediated Mammary Tumorigenesis by Blueberry and Black Raspberry. Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2012; 60:5547-5555 10.1021/jf205325p
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Effect of ellagic acid on the expression of human telomerase reverse transcriptase (hTERT) α+β+ transcript in estrogen receptor-positive MCF-7 breast cancer cells
Cite
Strati A, Papoutsi Z, Lianidou E, Moutsatsou P. Effect of ellagic acid on the expression of human telomerase reverse transcriptase (hTERT) α+β+ transcript in estrogen receptor-positive MCF-7 breast cancer cells. Clinical Biochemistry. Elsevier BV; 2009; 42:1358-1362 10.1016/j.clinbiochem.2009.05.017
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Ellagic acid, a phenolic compound, exerts anti-angiogenesis effects via VEGFR-2 signaling pathway in breast cancer
Cite
Wang N, Wang Z, Mo S, Loo TY, Wang D, Luo H, et al. Ellagic acid, a phenolic compound, exerts anti-angiogenesis effects via VEGFR-2 signaling pathway in breast cancer. Breast Cancer Research and Treatment. Springer Science and Business Media LLC; 2012; 134:943-955 10.1007/s10549-012-1977-9
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Tumor Angiogenesis as a Target for Dietary Cancer Prevention
Cite
Li WW, Li VW, Hutnik M, Chiou AS. Tumor Angiogenesis as a Target for Dietary Cancer Prevention. Journal of Oncology. Hindawi Limited; 2012; 2012:1-23 10.1155/2012/879623
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Chemoprevention of mammary carcinogenesis by sustained systemic delivery of ellagic acid
Cite
Vadhanam MV, Ravoori S, Aqil F, Gupta RC. Chemoprevention of mammary carcinogenesis by sustained systemic delivery of ellagic acid. European Journal of Cancer Prevention. Ovid Technologies (Wolters Kluwer Health); 2011; 20:484-491 10.1097/cej.0b013e3283498e00
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Influence of Berry Polyphenols on Receptor Signaling and Cell-Death Pathways: Implications for Breast Cancer Prevention
Cite
Aiyer HS, Warri AM, Woode DR, Hilakivi-Clarke L, Clarke R. Influence of Berry Polyphenols on Receptor Signaling and Cell-Death Pathways: Implications for Breast Cancer Prevention. Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2012; 60:5693-5708 10.1021/jf204084f
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The Blackberry Fruit: A Review on Its Composition and Chemistry, Metabolism and Bioavailability, and Health Benefits
Cite
Kaume L, Howard LR, Devareddy L. The Blackberry Fruit: A Review on Its Composition and Chemistry, Metabolism and Bioavailability, and Health Benefits. Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2011; 60:5716-5727 10.1021/jf203318p
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Berries and Ellagic Acid Prevent Estrogen-Induced Mammary Tumorigenesis by Modulating Enzymes of Estrogen Metabolism
Cite
Aiyer HS, Gupta RC. Berries and Ellagic Acid Prevent Estrogen-Induced Mammary Tumorigenesis by Modulating Enzymes of Estrogen Metabolism. Cancer Prevention Research. American Association for Cancer Research (AACR); 2010; 3:727-737 10.1158/1940-6207.capr-09-0260
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Identification of Flavonoid and Phenolic Antioxidants in Black Currants, Blueberries, Raspberries, Red Currants, and Cranberries†
Cite
Borges G, Degeneve A, Mullen W, Crozier A. Identification of Flavonoid and Phenolic Antioxidants in Black Currants, Blueberries, Raspberries, Red Currants, and Cranberries†. Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2010; 58:3901-3909 10.1021/jf902263n
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Abstract 1887: Distinct molecular targets of blueberry and black raspberry in breast cancer prevention
Cite
Ravoori S, Kausar H, Aqil F, Gupta RC. Abstract 1887: Distinct molecular targets of blueberry and black raspberry in breast cancer prevention. Prevention Research. American Association for Cancer Research; 2010; 10.1158/1538-7445.am10-1887
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Pomegranate Ellagitannin–Derived Compounds Exhibit Antiproliferative and Antiaromatase Activity in Breast Cancer Cells In vitro
Cite
Adams LS, Zhang Y, Seeram NP, Heber D, Chen S. Pomegranate Ellagitannin–Derived Compounds Exhibit Antiproliferative and Antiaromatase Activity in Breast Cancer Cells In vitro. Cancer Prevention Research. American Association for Cancer Research (AACR); 2010; 3:108-113 10.1158/1940-6207.capr-08-0225
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Dietary Berries and Ellagic Acid Diminish Estrogen-Mediated Mammary Tumorigenesis ∈ ACI rats
Cite
Aiyer H, Srinivasan C, Gupta R. Dietary Berries and Ellagic Acid Diminish Estrogen-Mediated Mammary Tumorigenesis ∈ ACI rats. Nutrition and Cancer. Informa UK Limited; 2008; 60:227-234 10.1080/01635580701624712
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Beware of Pomegranates Bearing 40% Ellagic Acid
Cite
Lansky EP. Beware of Pomegranates Bearing 40% Ellagic Acid. Journal of Medicinal Food. Mary Ann Liebert Inc; 2006; 9:119-122 10.1089/jmf.2006.9.119
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Antioxidant Activity and Phenolic Content of Oregon Caneberries
Cite
Wada L, Ou B. Antioxidant Activity and Phenolic Content of Oregon Caneberries. Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2002; 50:3495-3500 10.1021/jf011405l
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Blackberry, Black Raspberry, Blueberry, Cranberry, Red Raspberry, and Strawberry Extracts Inhibit Growth and Stimulate Apoptosis of Human Cancer Cells In Vitro
Cite
Seeram NP, Adams LS, Zhang Y, Lee R, Sand D, Scheuller HS, et al. Blackberry, Black Raspberry, Blueberry, Cranberry, Red Raspberry, and Strawberry Extracts Inhibit Growth and Stimulate Apoptosis of Human Cancer Cells In Vitro. Journal of Agricultural and Food Chemistry. American Chemical Society (ACS); 2006; 54:9329-9339 10.1021/jf061750g