1. Role of HER-2 activity in the regulation of malignant meningioma cell proliferation and motility
    WEIJIA WANG et al, 2015 CrossRef
  2. Differences in cell death and cell cycle following fucoidan treatment in high-density HT-29 colon cancer cells.
    In-Hye Kim et al, 2017, Mol Med Rep CrossRef
  3. Phloroglucinol induces apoptosis via apoptotic signaling pathways in HT-29 colon cancer cells
    MI-HYE KANG et al, 2014 CrossRef
  4. Overview of β-Glucans from Laminaria spp.: Immunomodulation Properties and Applications on Biologic Models
    Patrícia Bonfim-Mendonça et al, 2017, IJMS CrossRef
  5. The potential of brown-algae polysaccharides for the development of anticancer agents: An update on anticancer effects reported for fucoidan and laminaran
    K.K. Asanka Sanjeewa et al, 2017, Carbohydrate Polymers CrossRef
  6. Pharmacological importance of sulphated polysaccharide carrageenan from red seaweed Kappaphycus alvarezii in comparison with commercial carrageenan
    Arumugampillai Manimehalai Suganya et al, 2016, Biomedicine & Pharmacotherapy CrossRef
  7. Hijiki and sodium arsenite stimulate growth of human colorectal adenocarcinoma cells through ERK1/2 activation
    Wanida Cholpraipimolrat et al, 2017, Food and Chemical Toxicology CrossRef
  8. Structure and anticancer activity of native and modified polysaccharides from brown alga Dictyota dichotoma
    Roza V. Usoltseva et al, 2018, Carbohydrate Polymers CrossRef
  9. null
    P. Déléris et al, 2016 CrossRef
  10. null
    Agnieszka Dmytryk et al, 2017 CrossRef
  11. A review of the components of brown seaweeds as potential candidates in cancer therapy
    Ejaz Hussain et al, 2016, RSC Adv. CrossRef
  12. null
    Jinju Jiang et al, 2018 CrossRef
  13. Anticancer Effects of Different Seaweeds on Human Colon and Breast Cancers
    Ghislain Moussavou et al, 2014, Marine Drugs CrossRef
  14. Polysaccharides from the Marine Environment with Pharmacological, Cosmeceutical and Nutraceutical Potential
    Nadia Ruocco et al, 2016, Molecules CrossRef
  15. From Marine Origin to Therapeutics: The Antitumor Potential of Marine Algae-Derived Compounds
    Celso Alves et al, 2018, Front. Pharmacol. CrossRef
  16. New Drugs from the Sea: Pro-Apoptotic Activity of Sponges and Algae Derived Compounds
    Giuseppe Ercolano et al, 2019, Marine Drugs CrossRef
  17. null
    Shashiaknt Joshi et al, 2019 CrossRef
  18. Associations among dietary seaweed intake, c-MYC rs6983267 polymorphism, and risk of colorectal cancer in a Korean population: a case–control study
    Jimi Kim et al, 2019, Eur J Nutr CrossRef
  19. null
    Anshika Singh et al, 2019 CrossRef
  20. The potential of seaweed as a source of drugs for use in cancer chemotherapy
    Catherine Murphy et al, 2014, J Appl Phycol CrossRef
  21. In vitro anticancer activity of the laminarans from Far Eastern brown seaweeds and their sulfated derivatives
    Olesya S. Malyarenko et al, 2017, J Appl Phycol CrossRef
  22. Molecular Mechanisms Underlying Cancer Preventive and Therapeutic Potential of Algal Polysaccharides
    Soraya Sajadimajd et al, 2019, CPD CrossRef
  23. null
    Ravi Sakthivel et al, 2019 CrossRef
  24. Bioactive compounds in seaweeds: An overview of their biological properties and safety
    Kannan RR. Rengasamy et al, 2019, Food and Chemical Toxicology CrossRef
  25. The cytotoxic activity of extracts of the brown alga Cystoseira tamariscifolia (Hudson) Papenfuss, against cancer cell lines changes seasonally
    Ahmad A. Mansur et al, 2020, J Appl Phycol CrossRef
  26. Extraction and Modification of Macroalgal Polysaccharides for Current and Next-Generation Applications
    Madeleine Jönsson et al, 2020, Molecules CrossRef
  27. Laminarin from Seaweed (Laminaria japonica) Inhibits Hepatocellular Carcinoma Through Upregulating Senescence Marker Protein-30
    Lin Tian et al, 2020, Cancer Biotherapy and Radiopharmaceuticals CrossRef
  28. Laminarin From Salicornia herbacea Stimulates Glucose Uptake Through AMPK-p38 MAPK Pathways in L6 Muscle Cells
    Ji H. Kim et al, 2020, Natural Product Communications CrossRef
  29. null
    Guðmundur Óli Hreggviðsson et al, 2020 CrossRef
  30. Protein extracted from Porphyra yezoensis prevents cisplatin-induced nephrotoxicity by downregulating the MAPK and NF-κB pathways
    In-Hye Kim et al, 2017, Int J Mol Med CrossRef
  31. Laminarans and 1,3-β-D-glucanases
    Roza V. Usoltseva et al, 2020, International Journal of Biological Macromolecules CrossRef
  32. Laminarin Effects, a β-(1,3)-Glucan, on Skin Cell Inflammation and Oxidation
    Hélène Ozanne et al, 2020, Cosmetics CrossRef
  33. Aminated laminaran from brown alga Saccharina cichorioides: synthesis, structure, anticancer, and radiosensitizing potential in vitro
    Olesya S. Malyarenko et al, 2020, Carbohydrate Polymers CrossRef
  34. Marine Cyanobacteria and Microalgae Metabolites—A Rich Source of Potential Anticancer Drugs
    Arijit Mondal et al, 2020, Marine Drugs CrossRef
  35. Macroalgal dietary glycans: potential source for human gut bacteria and enhancing immune system for better health
    Ravindra Pal Singh et al, 2020, Critical Reviews in Food Science and Nutrition CrossRef
  36. Bioactive Metabolites from Marine Algae as Potent Pharmacophores against Oxidative Stress-Associated Human Diseases: A Comprehensive Review
    Biswajita Pradhan et al, 2020, Molecules CrossRef
  37. Cytotoxicity of Seaweed Compounds, Alone or Combined to Reference Drugs, against Breast Cell Lines Cultured in 2D and 3D
    Fernanda Malhão et al, 2021, Toxics CrossRef
  38. null
    Ruchita Tripathi et al, 2021 CrossRef
  39. null
    María Lourdes Mourelle et al, 2021 CrossRef
  40. Laminarin and Laminarin Oligosaccharides Originating from Brown Algae: Preparation, Biological Activities, and Potential Applications
    Yi Huang et al, 2021, J. Ocean Univ. China CrossRef
  41. null
    Raghvendra Pandey et al, 2021 CrossRef
  42. null
    Achintya Kumar Dolui, 2021 CrossRef
  43. Bioactive Compounds of Seaweeds and Their Effects on Certain Types of Cancer
    Omniya M. Abd-Elazeem et al, 2020, Avicenna J Med Biochem CrossRef
  44. Integrated Network Pharmacology Analysis and In Vitro Validation Revealed the Potential Active Components and Underlying Mechanistic Pathways of Herba Patriniae in Colorectal Cancer
    Huihai Yang et al, 2021, Molecules CrossRef
  45. Laminarin, a Major Polysaccharide in Stramenopiles
    Jichen Chen et al, 2021, Marine Drugs CrossRef
  46. Optimisation of cellulase-assisted extraction of laminarin from the brown seaweed Ecklonia maxima, using response surface methodology
    Daniel Van Breda et al, 2021, Biomass Conv. Bioref. CrossRef
  47. null
    Abhishek Jha et al, 2022 CrossRef
  48. null
    Arunkumar Ramu et al, 2021 CrossRef
  49. null
    Olesya S. Malyarenko et al, 2022 CrossRef
  50. Modular and mechanistic changes across stages of colorectal cancer.
    Sara Rahiminejad et al, 2022, BMC Cancer CrossRef
  51. Laminarin Attenuates ROS-Mediated Cell Migration and Invasiveness through Mitochondrial Dysfunction in Pancreatic Cancer Cells
    Woonghee Lee et al, 2022, Antioxidants CrossRef
  52. Isolation, identification, and biochemical characterization of a novel bifunctional phosphomannomutase/phosphoglucomutase from the metagenome of the brown alga Laminaria digitata
    Stephen A. Jackson et al, 2022, Front. Microbiol. CrossRef
  53. Potential of Seaweeds in preventing cancer and HIV infection in Humans
    Indra Rautela et al, 2022, Process Biochemistry CrossRef
  54. Marine Natural Products from the Russian Pacific as Sources of Drugs for Neurodegenerative Diseases
    Yuri S. Khotimchenko et al, 2022, Marine Drugs CrossRef
  55. The carboxymethylated derivative of laminaran from brown alga Saccharina cichorioides: Structure, anticancer and anti-invasive activities in 3D cell culture
    Olesya S. Malyarenko et al, 2022, International Journal of Biological Macromolecules CrossRef
  56. Combination of marine bioactive compounds and extracts for the prevention and treatment of chronic diseases
    Belgheis Ebrahimi et al, 2023, Front. Nutr. CrossRef
  57. Emerging Role of Plant-Based Dietary Components in Post-Translational Modifications Associated with Colorectal Cancer
    Carmen Rodríguez-García et al, 2023, Life CrossRef
  58. null
    Soraya Paz-Montelongo et al, 2023 CrossRef
  59. Transcriptome and proteome analysis reveals the anti-cancer properties of Hypnea musciformis marine macroalga extract in liver and intestinal cancer cells
    Rodiola Begolli et al, 2023, Hum Genomics CrossRef
  60. In vitro anticancer potential of laminarin and fucoidan from Brown seaweeds
    Elumalai Sanniyasi et al, 2023, Sci Rep CrossRef
  61. IDENTIFICATION AND FUNCTIONAL ANALYSIS OF microRNA AS PROSPECTIVE PROGNOSTIC MARKERS OF COLORECTAL CANCER
    S.V. Maliborska et al, 2023, Oncology CrossRef
  62. Bioactive substances of cyanobacteria and microalgae: Sources, metabolism, and anticancer mechanism insights
    Abdelhakim Bouyahya et al, 2024, Biomedicine & Pharmacotherapy CrossRef
  63. Potential therapeutic target for polysaccharide inhibition of colon cancer progression
    Jiawei Fan et al, 2024, Front. Med. CrossRef
  64. Algae-derived bioactive compounds as potential nutraceuticals for cancer therapy: A comprehensive review
    Lubna Anjum Minhas et al, 2024, Algal Research CrossRef
  65. Novel Biodegradable Laminarin Microparticles for Biomedical Applications
    Edgar J Castanheira et al, 2020 CrossRef
  66. null
    Rajalakshmy Menon et al, 2023 CrossRef
  67. Fluorescent imaging probes for in vivo ovarian cancer targeted detection and surgery
    Roberta Solidoro et al, 2024, Medicinal Research Reviews CrossRef