1. Uzbekistan Uses: Used to treat cancer, diabetes, and dyspepsia, and as antiseptic DOI: 10.3390/jof9090922 PubMed: 37755030
1. Fruiting Body Heterogeneity, Dimorphism and Haustorium-like Structure of Naematelia aurantialba (Jin Er Mushroom). Yang Y and Dong C (2024). J Fungi (Basel). DOI: 10.3390/jof10080557 PubMed: 39194883
2. Stereuins A-F: Isopentenyl benzene congeners with antibacterial and neurotrophic activities from Stereum hirsutum HFG27. Zhao ZZ et al (2024). Phytochemistry. DOI: 10.1016/j.phytochem.2024.114253 PubMed: 39168425
3. Innovative chitin-glucan based material obtained from mycelium of wood decay fungal strains. Vadivel D et al (2024). Heliyon. DOI: 10.1016/j.heliyon.2024.e28709 PubMed: 38590850
4. Establishment of a Single Temperature Incubation Approach for Environmental Monitoring Samples with Focus on Mold Recoveries. Poloni A et al (2023). PDA J Pharm Sci Technol. DOI: 10.5731/pdajpst.2022.012769 PubMed: 37848200
5. In Vitro Evaluation of Some Endophytic Bacillus to Potentially Inhibit Grape and Grapevine Fungal Pathogens. Boiu-Sicuia OA et al (2023). Plants (Basel). DOI: 10.3390/plants12132553 PubMed: 37447114
6. NMR-Based Characterization of Wood Decay Fungi as Promising Novel Foods: Abortiporus biennis, Fomitopsis iberica and Stereum hirsutum Mycelia as Case Studies. Phytochemistry Goppa L et al (2023). Foods. DOI: 10.3390/foods12132507 PubMed: 37444245
7. Biological control of some wood-decay fungi with antagonistic fungi. Hınçal S and Yalçın M (2023). Biodegradation. DOI: 10.1007/s10532-023-10045-2 PubMed: 37436664
8. White-rot fungi scavenge reactive oxygen species, which drives pH-dependent exo-enzymatic mechanisms and promotes CO(2) efflux. Jofré-Fernández I, Matus-Baeza F and Merino-Guzmán C (2023). Front Microbiol. DOI: 10.3389/fmicb.2023.1148750 PubMed: 37362943
9. A basidomycetous hydroxynaphthalene-prenylating enzyme exhibits promiscuity toward prenyl donors. Martin A et al (2023). Appl Microbiol Biotechnol. DOI: 10.1007/s00253-023-12621-1 PubMed: 37326682
10. Synthesis of Antimicrobial Chitosan-Silver Nanoparticles Mediated by Reusable Chitosan Fungal Beads. Antimicrobial Hermosilla E et al (2023). Int J Mol Sci. DOI: 10.3390/ijms24032318 PubMed: 36768640
11. Identification and Mechanism of Action of the Global Secondary Metabolism Regulator SaraC in Stereum hirsutum. Hu QY et al (2022). Microbiol Spectr. DOI: 10.1128/spectrum.02624-22 PubMed: 36409127
12. Agro-industrial wastes revalorization as feedstock: production of lignin-modifying enzymes extracts by solid-state fermentation using white rot fungi. Contreras E et al (2023). Prep Biochem Biotechnol. DOI: 10.1080/10826068.2022.2109048 PubMed: 35980820
13. Structure elucidation of linear triquinane sesquiterpenoids, hirsutuminoids A-Q, from the fungus Stereum hirsutum and their activities. Zhao ZZ et al (2022). Phytochemistry. DOI: 10.1016/j.phytochem.2022.113227 PubMed: 35533837
14. Sterehirsutynes A - C: three new acetylenic aromatic metabolites from Stereum hirsutum. Liu F et al (2023). Nat Prod Res. DOI: 10.1080/14786419.2022.2047046 PubMed: 35232300
15. Mushroom Species Stereum hirsutum as Natural Source of Phenolics and Fatty Acids as Antioxidants and Acetylcholinesterase Inhibitors. Neuroscience Mišković J et al (2021). Chem Biodivers. DOI: 10.1002/cbdv.202100409 PubMed: 34467660
16. Production of minor ginsenosides by combining Stereum hirsutum and cellulase. Yang W et al (2021). PLoS One. DOI: 10.1371/journal.pone.0255899 PubMed: 34358262
17. Sesquiterpenoids and their quaternary ammonium hybrids from the mycelium of mushroom Stereum hirsutum by medium optimization. Pu XJ et al (2021). Phytochemistry. DOI: 10.1016/j.phytochem.2021.112852 PubMed: 34175550
18. Bioactivity of EtOH and MeOH Extracts of Basidiomycetes Mushroom (Stereum hirsutum) on Atherosclerosis. Sevindik M et al (2021). Arch Razi Inst. DOI: 10.22092/ari.2019.126283.1340 PubMed: 33818961
19. Stereumamides E-H, four new minor quaternary ammonium hybrids from Stereum hirsutum. Hu QY et al (2022). Nat Prod Res. DOI: 10.1080/14786419.2020.1779266 PubMed: 32538673
20. Structurally diverse vibralactones produced by the fungus Stereum hirsutum. Liang Y et al (2020). Bioorg Chem. DOI: 10.1016/j.bioorg.2020.103760 PubMed: 32251946
21. Two new phenol derivatives from Stereum hirsutum FP-91666. Duan YC et al (2015). J Asian Nat Prod Res. DOI: 10.1080/10286020.2014.959439 PubMed: 25295617
22. Antibiotics from Stereum hirsutum. HEATLEY NG, JENNINGS MA and FLOREY HW (1947). Br J Exp Pathol. PubMed: 20290305