The Anti-Cancer Effect of Cinnamon Aqueous Extract: A Focus on Hematological Malignancies
暂无分享,去创建一个
[1] S. Gangemi,et al. Age-Related Diseases and Foods Generating Chlorinative Stress , 2023, Antioxidants.
[2] I. Um,et al. Lymphocyte Classification from Hoechst Stained Slides with Deep Learning , 2022, Cancers.
[3] S. Saleem,et al. Targeting hypoxia in solid and haematological malignancies , 2022, Journal of Experimental & Clinical Cancer Research.
[4] Wenjing Zhao,et al. Antitumor Activity and Mechanism of Action of the Antimicrobial Peptide AMP-17 on Human Leukemia K562 Cells , 2022, Molecules.
[5] W. Abeysekera,et al. Anti-inflammatory, cytotoxicity and antilipidemic properties: novel bioactivities of true cinnamon (Cinnamomum zeylanicum Blume) leaf , 2022, BMC Complementary Medicine and Therapies.
[6] M. Iriti,et al. Ginger and parsley essential oils: chemical composition, antimicrobial activity, and evaluation of their application in cheese preservation. , 2022, Natural product research.
[7] S. A. Raccuia,et al. Antioxidant activity of two Opuntia Mill. species fruit extracts on human sperm quality after a freeze-thaw cycle. , 2022, Natural product research.
[8] A. Allegra,et al. Critical Role of Aquaporins in Cancer: Focus on Hematological Malignancies , 2022, Cancers.
[9] S. Raychaudhuri,et al. Granzyme K+ CD8 T cells form a core population in inflamed human tissue , 2022, Science Translational Medicine.
[10] M. I. Hassan,et al. Cinnamomum zeylanicum Extract and its Bioactive Component Cinnamaldehyde Show Anti-Tumor Effects via Inhibition of Multiple Cellular Pathways , 2022, Frontiers in Pharmacology.
[11] S. Gangemi,et al. IL-31: State of the Art for an Inflammation-Oriented Interleukin , 2022, International journal of molecular sciences.
[12] A. Allegra,et al. Natural products and oxidative stress: potential agents against multiple myeloma , 2022, Natural product research.
[13] S. Mercadal,et al. Mortality among patients with low‐grade follicular lymphoma: A binational retrospective analysis , 2022, Cancer.
[14] Lei Li,et al. Identification of potential pathways and microRNA-mRNA networks associated with benzene metabolite hydroquinone-induced hematotoxicity in human leukemia K562 cells , 2022, BMC pharmacology & toxicology.
[15] N. Abutaha,et al. Evaluating the efficacy of an innovative herbal formulation (HF6) on different human cancer cell lines , 2022, Environmental Science and Pollution Research.
[16] A. Allegra,et al. AllergoOncology: Role of immune cells and immune proteins , 2022, Clinical and translational allergy.
[17] A. Allegra,et al. Modulation of Cellular Redox Parameters for Improving Therapeutic Responses in Multiple Myeloma , 2022, Antioxidants.
[18] C. Sobey,et al. Bim Deletion Reduces Functional Deficits Following Ischemic Stroke in Association with Modulation of Apoptosis and Inflammation , 2022, NeuroMolecular Medicine.
[19] A. Santini,et al. Mineral and Microbiological Analysis of Spices and Aromatic Herbs , 2022, Foods.
[20] B. Maček,et al. DRP1 interacts directly with BAX to induce its activation and apoptosis , 2022, The EMBO journal.
[21] Xian Zhang,et al. Effects and Mechanism of Oxymatrine Combined with Compound Yinchen Granules on the Apoptosis of Hepatocytes through the Akt/FoxO3a/Bim Pathway , 2022, BioMed research international.
[22] A. Santini,et al. Resveratrol and Immune Cells: A Link to Improve Human Health , 2022, Molecules.
[23] S. A. Raccuia,et al. Nutraceutical Content and Genetic Diversity Share a Common Pattern in New Pomegranate Genotypes , 2021, Molecules.
[24] H. A. Al-Jamal,et al. Thymoquinone Induces Downregulation of BCR-ABL/JAK/STAT Pathway and Apoptosis in K562 Leukemia Cells , 2021, Asian Pacific journal of cancer prevention : APJCP.
[25] E. Gavathiotis,et al. Physiological and pharmacological modulation of BAX. , 2021, Trends in pharmacological sciences.
[26] F. Cognetti,et al. Nutraceuticals and Cancer: Potential for Natural Polyphenols , 2021, Nutrients.
[27] A. Allegra,et al. Multiple Myeloma Cell-Derived Exosomes: Implications on Tumorigenesis, Diagnosis, Prognosis and Therapeutic Strategies , 2021, Cells.
[28] S. Gangemi,et al. IL-33 genetics and epigenetics in immune-related diseases , 2021, Clinical and Molecular Allergy.
[29] A. Allegra,et al. IL-31, itch and hematological malignancies , 2021, Clinical and Molecular Allergy.
[30] P. Vaňhara,et al. Combined efficacy of Cinnamomum zeylanicum and doxorubicin against leukemia through regulation of TRAIL and NF-kappa B pathways in rat model , 2021, Molecular Biology Reports.
[31] A. Allegra,et al. Reviewing the Significance of Vitamin D Substitution in Monoclonal Gammopathies , 2021, International journal of molecular sciences.
[32] D. Arber,et al. Erythroleukemia: an Update , 2021, Current Oncology Reports.
[33] L. Brunham,et al. Regulated cell death pathways in doxorubicin-induced cardiotoxicity , 2021, Cell Death & Disease.
[34] Quan Fang,et al. ASMq protects against early burn wound progression in rats by alleviating oxidative stress and secondary mitochondria-associated apoptosis via the Erk/p90RSK/Bad pathway , 2021, Molecular medicine reports.
[35] W. Geldenhuys,et al. Breast cancer-associated skeletal muscle mitochondrial dysfunction and lipid accumulation is reversed by PPARG. , 2021, American journal of physiology. Cell physiology.
[36] A. Burleigh,et al. Granzyme B inhibition reduces disease severity in autoimmune blistering diseases , 2021, Nature communications.
[37] A. Besaratinia,et al. Relationships among smoking, oxidative stress, inflammation, macromolecular damage, and cancer. , 2021, Mutation research.
[38] Branislava Srdjenović,et al. Oxidative stress and its role in cancer , 2021, Journal of cancer research and therapeutics.
[39] Bowen Yu,et al. Targets and Mechanism Used by Cinnamaldehyde, the Main Active Ingredient in Cinnamon, in the Treatment of Breast Cancer , 2020, Frontiers in Pharmacology.
[40] I. Barchetta,et al. Granzyme B in Inflammatory Diseases: Apoptosis, Inflammation, Extracellular Matrix Remodeling, Epithelial-to-Mesenchymal Transition and Fibrosis , 2020, Frontiers in Immunology.
[41] A. Sporbert,et al. Photocaged Hoechst Enables Subnuclear Visualization and Cell Selective Staining of DNA in vivo , 2020, Chembiochem : a European journal of chemical biology.
[42] R. Kumar,et al. The NK cell granule protein NKG7 regulates cytotoxic granule exocytosis and inflammation , 2020, Nature Immunology.
[43] A. Allegra,et al. Immune checkpoint inhibitors in multiple myeloma: A review of the literature. , 2020, Pathology, research and practice.
[44] A. Allegra,et al. Anticancer Activity of Rosmarinus officinalis L.: Mechanisms of Action and Therapeutic Potentials , 2020, Nutrients.
[45] H. Imai,et al. Mitochondria-dependent ferroptosis plays a pivotal role in doxorubicin cardiotoxicity. , 2020, JCI insight.
[46] E. Pistilli,et al. Breast cancer-associated skeletal muscle mitochondrial dysfunction and lipid accumulation is reversed by PPARG , 2020, bioRxiv.
[47] Rabin Niroula,et al. Acute Myeloid Leukemia: A Review. , 2020, Rhode Island medical journal.
[48] J. Lieberman,et al. Gasdermin E suppresses tumor growth by activating anti-tumor immunity , 2020, Nature.
[49] S. Gangemi,et al. IL-33/IL-31 Axis in Immune-Mediated and Allergic Diseases , 2019, International journal of molecular sciences.
[50] F. F. de Melo,et al. Pathogenesis and clinical management of Helicobacter pylori gastric infection , 2019, World journal of gastroenterology.
[51] A. Allegra,et al. Formaldehyde Exposure and Acute Myeloid Leukemia: A Review of the Literature , 2019, Medicina.
[52] L. Borsig,et al. Altered Cell Adhesion and Glycosylation Promote Cancer Immune Suppression and Metastasis , 2019, Front. Immunol..
[53] D. Pohl,et al. Review of current diagnostic methods and advances in Helicobacter pylori diagnostics in the era of next generation sequencing , 2019, World journal of gastroenterology.
[54] Deepak Baby,et al. Inflammation and Cancer , 2019, Annals of African medicine.
[55] J. Klaunig. Oxidative Stress and Cancer. , 2019, Current pharmaceutical design.
[56] S. Gangemi,et al. Clinical Pharmacology of Citrus aurantium and Citrus sinensis for the Treatment of Anxiety , 2018, Evidence-based complementary and alternative medicine : eCAM.
[57] C. Matar,et al. The Immunomodulatory and Anti-Inflammatory Role of Polyphenols , 2018, Nutrients.
[58] M. Murata. Inflammation and cancer , 2018, Environmental Health and Preventive Medicine.
[59] C. Friedenreich,et al. Long‐term risk of cardiovascular mortality in lymphoma survivors: A systematic review and meta‐analysis , 2018, Cancer medicine.
[60] S. Grant,et al. Cotargeting BCL-2 and PI3K Induces BAX-Dependent Mitochondrial Apoptosis in AML Cells. , 2018, Cancer research.
[61] S. Chevret,et al. Reducing mortality in newly diagnosed standard-risk acute promyelocytic leukemia in elderly patients treated with arsenic trioxide requires major reduction of chemotherapy: a report by the French Belgian Swiss APL group (APL 2006 trial) , 2018, Haematologica.
[62] A. Ismail,et al. Procyanidin‐B2 enriched fraction of cinnamon acts as a proteasome inhibitor and anti‐proliferative agent in human prostate cancer cells , 2018, IUBMB life.
[63] S. Gangemi,et al. IL-33/IL-31 Axis: A Potential Inflammatory Pathway , 2018, Mediators of inflammation.
[64] S. Awasthi,et al. Oxidative stress and dietary phytochemicals: Role in cancer chemoprevention and treatment. , 2018, Cancer letters.
[65] Sebastian Eilebrecht,et al. BIM and NOXA are mitochondrial effectors of TAF6δ-driven apoptosis , 2018, Cell Death & Disease.
[66] S. Linder,et al. Proteasome-associated deubiquitinases and cancer , 2017, Cancer and Metastasis Reviews.
[67] M. Khazaei,et al. Oxidative Stress and Cancer: The Role of Nrf2. , 2017, Current cancer drug targets.
[68] S. A. Raccuia,et al. Antiproliferative and Antiangiogenic Effects of Punica granatum Juice (PGJ) in Multiple Myeloma (MM) , 2016, Nutrients.
[69] S. Gangemi,et al. Neurodegenerative Diseases: Might Citrus Flavonoids Play a Protective Role? , 2016, Molecules.
[70] S. Gangemi,et al. Anti-Inflammatory Activity of Citrus bergamia Derivatives: Where Do We Stand? , 2016, Molecules.
[71] J. Lu,et al. Cinnamon effectively inhibits the activity of leukemia stem cells. , 2016, Genetics and molecular research : GMR.
[72] G. Krasnov,et al. Mitochondrial dysfunction and oxidative stress in aging and cancer , 2016, Oncotarget.
[73] E. Zucca,et al. The spectrum of MALT lymphoma at different sites: biological and therapeutic relevance. , 2016, Blood.
[74] Stefan W. Hell,et al. SiR–Hoechst is a far-red DNA stain for live-cell nanoscopy , 2015, Nature Communications.
[75] K. Kim,et al. Assaying Cell Cycle Status Using Flow Cytometry , 2015, Current protocols in molecular biology.
[76] A. Bode,et al. A Novel Cinnamon-Related Natural Product with Pim-1 Inhibitory Activity Inhibits Leukemia and Skin Cancer. , 2015, Cancer research.
[77] Xiao-Yan Xu,et al. PI3K/Akt/mTOR signaling pathway in cancer stem cells: from basic research to clinical application. , 2015, American journal of cancer research.
[78] S. Clarke,et al. Cancer-related inflammation and treatment effectiveness. , 2014, The Lancet. Oncology.
[79] Sahil Gupta,et al. Cell‐death assessment by fluorescent and nonfluorescent cytosolic and nuclear staining techniques , 2014, Journal of microscopy.
[80] Chien-Wei Lu,et al. Treatment of Helicobacter pylori infection: current status and future concepts. , 2014, World journal of gastroenterology.
[81] S. Carbonneau,et al. Interdependence of Bad and Puma during Ionizing-Radiation-Induced Apoptosis , 2014, PloS one.
[82] Shotaro Nakamura,et al. Helicobacter pylori and gastric mucosa-associated lymphoid tissue lymphoma: recent progress in pathogenesis and management. , 2013, World journal of gastroenterology.
[83] A. Allegra,et al. Oxidative stress in oncohematologic diseases: an update , 2013, Expert review of hematology.
[84] K. Parivar,et al. The effect of aqueous cinnamon extract on the apoptotic process in acute myeloid leukemia HL-60 cells , 2013, Advanced biomedical research.
[85] T. Moliné,et al. Oxidative stress and cancer: An overview , 2013, Ageing Research Reviews.
[86] P. Katulanda,et al. Efficacy and safety of ‘true’ cinnamon (Cinnamomum zeylanicum) as a pharmaceutical agent in diabetes: a systematic review and meta‐analysis , 2012, Diabetic medicine : a journal of the British Diabetic Association.
[87] B. Saad,et al. Hypericum triquetrifolium—Derived Factors Downregulate the Production Levels of LPS-Induced Nitric Oxide and Tumor Necrosis Factor-α in THP-1 Cells , 2011, Evidence-based complementary and alternative medicine : eCAM.
[88] B. Aggarwal,et al. Oxidative stress, inflammation, and cancer: how are they linked? , 2010, Free radical biology & medicine.
[89] L. Medeiros,et al. Acute erythroid leukemia. , 2010, Archives of pathology & laboratory medicine.
[90] S. Im,et al. Cinnamon extract induces tumor cell death through inhibition of NFκB and AP1 , 2010, BMC Cancer.
[91] Cristina Carvalho,et al. Doxorubicin: the good, the bad and the ugly effect. , 2009, Current medicinal chemistry.
[92] S. Im,et al. Cinnamon extract suppresses tumor progression by modulating angiogenesis and the effector function of CD8+ T cells. , 2009, Cancer letters.
[93] K. Miyake,et al. Cinnamaldehyde suppresses toll-like receptor 4 activation mediated through the inhibition of receptor oligomerization. , 2008, Biochemical pharmacology.
[94] T. Ley,et al. Granzyme B and perforin are important for regulatory T cell-mediated suppression of tumor clearance. , 2007, Immunity.
[95] Gurdip Singh,et al. A comparison of chemical, antioxidant and antimicrobial studies of cinnamon leaf and bark volatile oils, oleoresins and their constituents. , 2007, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[96] Spyro Mousses,et al. A transforming mutation in the pleckstrin homology domain of AKT1 in cancer , 2007, Nature.
[97] M. Lübbert,et al. Acute Myeloid Leukemia: Epidemiology and Etiology , 2006, Cancer.
[98] Richard A. Anderson,et al. Water-soluble polymeric polyphenols from cinnamon inhibit proliferation and alter cell cycle distribution patterns of hematologic tumor cell lines. , 2005, Cancer letters.
[99] J. Ptak,et al. High Frequency of Mutations of the PIK3CA Gene in Human Cancers , 2004, Science.
[100] Alam Khan,et al. Cinnamon improves glucose and lipids of people with type 2 diabetes. , 2003, Diabetes care.
[101] G. Semenza. Targeting HIF-1 for cancer therapy , 2003, Nature Reviews Cancer.
[102] P. Ratcliffe,et al. Regulation of angiogenesis by hypoxia: role of the HIF system , 2003, Nature Medicine.
[103] L. Coussens,et al. Inflammation and cancer , 2002, Nature.
[104] E. Wagner,et al. AP-1 in mouse development and tumorigenesis , 2001, Oncogene.
[105] M. Tabak,et al. Controlled Trial of the Effect of Cinnamon Extract on Helicobacter pylori , 2000, Helicobacter.
[106] P. Moore,et al. A comparison of the effects of L‐NAME, 7‐NI and L‐NIL on carrageenan‐induced hindpaw oedema and NOS activity , 1998, British journal of pharmacology.
[107] J. Cheng,et al. Amplification and overexpression of the AKT2 oncogene in a subset of human pancreatic ductal adenocarcinomas , 1998, Molecular carcinogenesis.
[108] J. Cheng,et al. Amplification of AKT2 in human pancreatic cells and inhibition of AKT2 expression and tumorigenicity by antisense RNA. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[109] R. Khandia,et al. Interplay between inflammation and cancer. , 2020, Advances in protein chemistry and structural biology.
[110] S. Isom,et al. Comorbidity, age, and mortality among adults treated intensively for acute myeloid leukemia (AML). , 2016, Journal of geriatric oncology.
[111] M. Gholami,et al. C. zeylanicum aqueous extract induced apoptosis in the human myelocytic leukemia cell line (THP-1). , 2015, Bratislavske lekarske listy.
[112] C. Borner. The Bcl-2 protein family: sensors and checkpoints for life-or-death decisions. , 2003, Molecular immunology.
[113] I. M. Neiman,et al. [Inflammation and cancer]. , 1974, Patologicheskaia fiziologiia i eksperimental'naia terapiia.