LyfeBrew Changa Research Citations

Scientific Research Citations from PubMed Central

This page contains peer-reviewed scientific citations for Reishi mushroom research. Each citation links directly to the full study on PubMed Central.

Note: Citations are organized by relevance and include study titles, authors, publication details, and direct links to full-text articles.
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LyfeBrew Changa Research Citations

LyfeBrew Changa Research Citations

Scientific Research Citations from PubMed Central

This page contains peer-reviewed scientific citations for Reishi mushroom research. Each citation links directly to the full study on PubMed Central.

Note: Citations are organized by relevance and include study titles, authors, publication details, and direct links to full-text articles.
Loading: Citations are being loaded from the source file. This may take a moment for large files.
  • 1.
    Revitalization of the Endophytic Fungus Acremonium sp. MEP2000 and Its Impact on the Growth and Accumulation of Bioactive Compounds in Inonotus obliquus.
    Wu H, et al.
    J Microbiol Biotechnol. 2025.
    PMCID: PMC11876012
  • 2.
    Anticancer potentials of chaga and notoginseng against dog bladder cancer organoids.
    Shinohara Y, et al.
    J Vet Med Sci. 2025.
    PMCID: PMC11830434
  • 3.
    Fungal polysaccharides from Inonotus obliquus are agonists for Toll-like receptors and induce macrophage anti-cancer activity.
    Wold CW, et al.
    Commun Biol. 2024.
    PMCID: PMC10891174
  • 4.
    Synergistic Cytotoxicity of Extracts of Chaga Mushroom and Microalgae against Mammalian Cancer Cells In Vitro.
    Wagle S, et al.
    Oxid Med Cell Longev. 2024.
    PMCID: PMC10807943
  • 5.
    Inonotus obliquus upregulates muscle regeneration and augments function through muscle oxidative metabolism.
    You CL, et al.
    Int J Biol Sci. 2023.
    PMCID: PMC10539711
  • 6.
    Integrated omic profiling of the medicinal mushroom Inonotus obliquus under submerged conditions.
    Hao J, et al.
    BMC Genomics. 2023.
    PMCID: PMC10507853
  • 7.
    Protective Effects of Lanostane Triterpenoids from Chaga Mushroom in Human Keratinocytes, HaCaT Cells, against Inflammatory and Oxidative Stresses.
    Park J, et al.
    Int J Mol Sci. 2023.
    PMCID: PMC10454022
  • 8.
    Comparison of Bioactive Secondary Metabolites and Cytotoxicity of Extracts from Inonotus obliquus Isolates from Different Host Species.
    Sułkowska-Ziaja K, et al.
    Molecules. 2023.
    PMCID: PMC10343780
  • 9.
    Methanol extract of Inonotus obliquus improves type 2 diabetes mellitus through modifying intestinal flora.
    Ye X, et al.
    Front Endocrinol (Lausanne). 2023.
    PMCID: PMC9852891
  • 10.
    Microporous Biocarbons Derived from Inonotus obliquus Mushroom and Their Application in the Removal of Liquid and Gaseous Impurities.
    Bazan-Wozniak A, et al.
    Int J Mol Sci. 2022.
    PMCID: PMC9779400
Page 2
  • 11.
    Carbon Source Affects Synthesis, Structures, and Activities of Mycelial Polysaccharides from Medicinal Fungus Inonotus obliquus.
    He H, et al.
    J Microbiol Biotechnol. 2021.
    PMCID: PMC9705997
  • 12.
    Comparative Analyses of Bioactive Compounds in Inonotus obliquus Conks Growing on Alnus and Betula.
    Drenkhan R, et al.
    Biomolecules. 2022.
    PMCID: PMC9496626
  • 13.
    Evaluation of Toxicity and Efficacy of Inotodiol as an Anti-Inflammatory Agent Using Animal Model.
    Nguyen TMN, et al.
    Molecules. 2022.
    PMCID: PMC9331631
  • 14.
    Genome sequencing of Inonotus obliquus reveals insights into candidate genes involved in secondary metabolite biosynthesis.
    Duan Y, et al.
    BMC Genomics. 2022.
    PMCID: PMC9020118
  • 15.
    Interference of Chaga mushroom terpenoids with the attachment of SARS-CoV-2; in silico perspective.
    Elshemey WM, et al.
    Comput Biol Med. 2022.
    PMCID: PMC8988443
  • 16.
    Supercritical CO2 Extraction of Triterpenoids from Chaga Sterile Conk of Inonotus obliquus.
    Huynh N, et al.
    Molecules. 2022.
    PMCID: PMC8955864
  • 17.
    Chaga mushroom-induced oxalate nephropathy that clinically manifested as nephrotic syndrome: A case report.
    Kwon O, et al.
    Medicine (Baltimore). 2022.
    PMCID: PMC8913114
  • 18.
    Biological Synthesis of Bioactive Gold Nanoparticles from Inonotus obliquus for Dual Chemo-Photothermal Effects against Human Brain Cancer Cells.
    Shukurov I, et al.
    Int J Mol Sci. 2022.
    PMCID: PMC8880898
  • 19.
    Inotodiol From Inonotus obliquus Chaga Mushroom Induces Atypical Maturation in Dendritic Cells.
    Maza PAMA, et al.
    Front Immunol. 2021.
    PMCID: PMC7994266
  • 20.
    Inonotus obliquus extract alleviates myocardial ischemia/reperfusion injury by suppressing endoplasmic reticulum stress.
    Wu Y, et al.
    Mol Med Rep. 2020.
    PMCID: PMC7716405
Page 3
  • 21.
    Extracts of Phellinus linteus, Bamboo (Sasa senanensis) Leaf and Chaga Mushroom (Inonotus obliquus) Exhibit Antitumor Activity through Activating Innate Immunity.
    Fang J, et al.
    Nutrients. 2020.
    PMCID: PMC7469031
  • 22.
    Development of End Stage Renal Disease after Long-Term Ingestion of Chaga Mushroom: Case Report and Review of Literature.
    Lee S, et al.
    J Korean Med Sci. 2020.
    PMCID: PMC7234858
  • 23.
    Renoprotective Impacts of Inonotus obliquus Ethanol-Ethyl Acetate Extract on Combined Streptozotocin and Unilateral Nephrectomy-Induced Diabetic Nephropathy in Mice.
    Chiang KH, et al.
    Int J Mol Sci. 2023.
    PMCID: PMC10002342

© 2025 LyfeBrew. Scientific research citations compiled from PubMed Central.