Skip Navigation
Skip to contents

Journal of Microbiology : Journal of Microbiology

OPEN ACCESS
SEARCH
Search

Articles

Page Path
HOME > J. Microbiol > Volume 51(6); 2013 > Article
Research Support, Non-U.S. Gov't
Reduction of Organic and Inorganic Selenium Compounds by the Edible Medicinal Basidiomycete Lentinula edodes and the Accumulation of Elemental Selenium Nanoparticles in Its Mycelium
Elena Vetchinkina , Ekaterina Loshchinina , Viktor Kursky , Valentina Nikitina
Journal of Microbiology 2013;51(6):829-835.
DOI: https://doi.org/10.1007/s12275-013-2689-5
Published online: December 19, 2013
Institute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences, Saratov 410049, Russian FederationInstitute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences, Saratov 410049, Russian Federation
Corresponding author:  Ekaterina Loshchinina , Tel: +7-8452-970403, 
Received: 13 December 2012   • Accepted: 9 June 2013
prev next
  • 38 Views
  • 0 Download
  • 54 Crossref
  • 69 Scopus

Citations

Citations to this article as recorded by  Crossref logo
  • A recent advances in antimicrobial activity of green synthesized selenium nanoparticle
    Durgadevi Ravi, Bhuvaneshwari Gunasekar, Vishwanathan Kaliyaperumal, Shyamaladevi Babu
    OpenNano.2024; 20: 100219.     CrossRef
  • Myco‐remediation of selenium contaminated environment and future prospects: An overview
    Seema Siddharthan, Sheela Thangaraj, Sobanadevi Paulraj, Beemashafreen RajaMohmed, KrishnaPriya Rakkamuthu, Vithya Dharmaraj, Madura Renganathan, Pongiya Umadevi
    Environmental Quality Management.2024; 33(4): 869.     CrossRef
  • A review on synthesis and antibacterial potential of bio-selenium nanoparticles in the food industry
    Bo Ao, Qingquan Du, Decheng Liu, Xiaoshan Shi, Junming Tu, Xian Xia
    Frontiers in Microbiology.2023;[Epub]     CrossRef
  • A State-of-the-Art Systemic Review on Selenium Nanoparticles: Mechanisms and Factors Influencing Biogenesis and Its Potential Applications
    Jit Sarkar, Deepanjan Mridha, Mubarak Ali Davoodbasha, Jishnu Banerjee, Sumeddha Chanda, Kasturi Ray, Tarit Roychowdhury, Krishnendu Acharya, Joy Sarkar
    Biological Trace Element Research.2023; 201(10): 5000.     CrossRef
  • An insight into biofabrication of selenium nanostructures and their biomedical application
    Naghmeh Satarzadeh, Amin Sadeghi Dousari, Bagher Amirheidari, Mojtaba Shakibaie, Amin Ramezani Sarbandi, Hamid Forootanfar
    3 Biotech.2023;[Epub]     CrossRef
  • Theranostic applications of selenium nanomedicines against lung cancer
    Shaowei Liu, Weifeng Wei, Jinlin Wang, Tianfeng Chen
    Journal of Nanobiotechnology.2023;[Epub]     CrossRef
  • A Review of Selenium (Se) Nanoparticles: From Synthesis to Applications
    Yanhua Huang, Qingli Chen, Hai Zeng, Chen Yang, Guan Wang, Li Zhou
    Particle & Particle Systems Characterization.2023;[Epub]     CrossRef
  • Pivotal biological processes and proteins for selenite reduction and methylation in Ganoderma lucidum
    Mengmeng Xu, Song Zhu, Qiong Wang, Lei Chen, Youran Li, Sha Xu, Zhenghua Gu, Guiyang Shi, Zhongyang Ding
    Journal of Hazardous Materials.2023; 444: 130409.     CrossRef
  • Biogenic Selenium Nanoparticles in Biomedical Sciences: Properties, Current Trends, Novel Opportunities and Emerging Challenges in Theranostic Nanomedicine
    Marjorie C. Zambonino, Ernesto Mateo Quizhpe, Lynda Mouheb, Ashiqur Rahman, Spiros N. Agathos, Si Amar Dahoumane
    Nanomaterials.2023; 13(3): 424.     CrossRef
  • Recent research progress on the synthesis and biological effects of selenium nanoparticles
    Ting Zhang, Meng Qi, Qian Wu, Peng Xiang, Dejian Tang, Qiang Li
    Frontiers in Nutrition.2023;[Epub]     CrossRef
  • Selenium Nanoparticles: Green Synthesis and Biomedical Application
    Ekaterina O. Mikhailova
    Molecules.2023; 28(24): 8125.     CrossRef
  • Selenium (Se) recovery for technological applications from environmental matrices based on biotic and abiotic mechanisms
    Zhongli Wang, Yanming Wang, Rachel L. Gomes, Helena I. Gomes
    Journal of Hazardous Materials.2022; 427: 128122.     CrossRef
  • Effect of Sodium Selenite on the Metabolite Profile of Epichloë sp. Mycelia from Festuca sinensis in Solid Culture
    Lianyu Zhou, Lu Jiao, Jiasheng Ju, Xuelan Ma
    Biological Trace Element Research.2022; 200(11): 4865.     CrossRef
  • Harnessing endophytic fungi for biosynthesis of selenium nanoparticles and exploring their bioactivities
    Heba G. Hussein, El-Sayed R. El-Sayed, Nahed A. Younis, Abd El Hamid A. Hamdy, Saadia M. Easa
    AMB Express.2022;[Epub]     CrossRef
  • A review on green synthesis and recent applications of red nano Selenium
    Pradnya B. Nikam, Jitendra D. Salunkhe, Tatiana Minkina, Vishnu D. Rajput, Beom Soo Kim, Satish V. Patil
    Results in Chemistry.2022; 4: 100581.     CrossRef
  • Diversity of Biogenic Nanoparticles Obtained by the Fungi-Mediated Synthesis: A Review
    Ekaterina A. Loshchinina, Elena P. Vetchinkina, Maria A. Kupryashina
    Biomimetics.2022; 8(1): 1.     CrossRef
  • Biotransformation of selenium in the mycelium of the fungus Phycomyces blakesleeanus
    Milan Žižić, Marina Stanić, Giuliana Aquilanti, Danica Bajuk-Bogdanović, Goran Branković, Ivanka Rodić, Miroslav Živić, Joanna Zakrzewska
    Analytical and Bioanalytical Chemistry.2022; 414(20): 6213.     CrossRef
  • Fungal-derived selenium nanoparticles and their potential applications in electroless silver coatings for preventing pin-tract infections
    Xinjin Liang, Shuai Zhang, Geoffrey Michael Gadd, John McGrath, David W Rooney, Qi Zhao
    Regenerative Biomaterials.2022;[Epub]     CrossRef
  • High-Efficiency Reducing Strain for Producing Selenium Nanoparticles Isolated from Marine Sediment
    Liying Zhang, Zhuting Li, Lei Zhang, Zhixiao Lei, Liming Jin, Jijuan Cao, Chunshan Quan
    International Journal of Molecular Sciences.2022; 23(19): 11953.     CrossRef
  • Influence of Selenium Biofortification on the Growth and Bioactive Metabolites of Ganoderma lucidum
    Mengmeng Xu, Song Zhu, Lingling Wang, Zhiyi Wei, Liting Zhao, Guiyang Shi, Zhongyang Ding
    Foods.2021; 10(8): 1860.     CrossRef
  • Enhancement the Mycosynthesis of Selenium Nanoparticles by Using Gamma Radiation
    Basma H. Amin, Hanaa Y. Ahmed, Eman M. El Gazzar, Monda M. M. Badawy
    Dose-Response.2021;[Epub]     CrossRef
  • The Advancing of Selenium Nanoparticles Against Infectious Diseases
    Wensen Lin, Junai Zhang, Jun-Fa Xu, Jiang Pi
    Frontiers in Pharmacology.2021;[Epub]     CrossRef
  • Selenium-Containing Polysaccharides—Structural Diversity, Biosynthesis, Chemical Modifications and Biological Activity
    Sandra Górska, Anna Maksymiuk, Jadwiga Turło
    Applied Sciences.2021; 11(8): 3717.     CrossRef
  • Effect of Se Concentration and Culture Time on Mineral Nutrition in Mycelia of Epichloe¨sp. from Festuca sinensis in Solid Culture
    连玉 周
    Advances in Microbiology.2021; 10(04): 189.     CrossRef
  • Influence of processing methods and exogenous selenium species on the content and in vitro bioaccessibility of selenium in Pleurotus eryngii
    Fei Zhou, Qin Peng, Min Wang, Nana Liu, Quang Toan Dinh, Hui Zhai, Mingyue Xue, Dongli Liang
    Food Chemistry.2021; 338: 127661.     CrossRef
  • Green Synthesis of Selenium and Tellurium Nanoparticles: Current Trends, Biological Properties and Biomedical Applications
    Marjorie C. Zambonino, Ernesto Mateo Quizhpe, Francisco E. Jaramillo, Ashiqur Rahman, Nelson Santiago Vispo, Clayton Jeffryes, Si Amar Dahoumane
    International Journal of Molecular Sciences.2021; 22(3): 989.     CrossRef
  • The production methods of selenium nanoparticles
    B. Khandsuren, J. Prokisch
    Acta Universitatis Sapientiae, Alimentaria.2021; 14(1): 14.     CrossRef
  • Biological and synthetic template-directed syntheses of mineralized hybrid and inorganic materials
    Chen-yu Wang, Kai Jiao, Jian-fei Yan, Mei-chen Wan, Qian-qian Wan, Lorenzo Breschi, Ji-hua Chen, Franklin R. Tay, Li-na Niu
    Progress in Materials Science.2021; 116: 100712.     CrossRef
  • Effect of selenium on mushroom growth and metabolism: A review
    Mengmeng Xu, Song Zhu, Youran Li, Sha Xu, Guiyang Shi, Zhongyang Ding
    Trends in Food Science & Technology.2021; 118: 328.     CrossRef
  • Biosynthesis of selenium nanoparticles of Monascus purpureus and their inhibition to Alicyclobacillus acidoterrestris
    Yuhan Sun, Yiheng Shi, Hang Jia, Hao Ding, Tianli Yue, Yahong Yuan
    Food Control.2021; 130: 108366.     CrossRef
  • Solid-state fermentation for enhanced production of selenium nanoparticles by gamma-irradiated Monascus purpureus and their biological evaluation and photocatalytic activities
    El-Sayed R. El-Sayed, Heba K. Abdelhakim, Ashraf S. Ahmed
    Bioprocess and Biosystems Engineering.2020; 43(5): 797.     CrossRef
  • Fungal transformation of selenium and tellurium located in a volcanogenic sulfide deposit
    Xinjin Liang, Magali Aude Marie‐Jeanne Perez, Shuai Zhang, Wenjuan Song, Joseph Graham Armstrong, Liam Adam Bullock, Jörg Feldmann, John Parnell, Laszlo Csetenyi, Geoffrey Michael Gadd
    Environmental Microbiology.2020; 22(6): 2346.     CrossRef
  • Phytogreen synthesis of multifunctional nano selenium with antibacterial and antioxidant implications
    Ishita Matai, Satish Kumar Pandey, Deepa Garg, Komal Rani, Abhay Sachdev
    Nano Express.2020; 1(1): 010031.     CrossRef
  • Biosynthesis of selenium nanoparticles mediated by fungus Mariannaea sp. HJ and their characterization
    Henglin Zhang, Hao Zhou, Jiandong Bai, Yan Li, Jing Yang, Qiao Ma, Yuanyuan Qu
    Colloids and Surfaces A: Physicochemical and Engineering Aspects.2019; 571: 9.     CrossRef
  • Fungal formation of selenium and tellurium nanoparticles
    Xinjin Liang, Magali Aude Marie-Jeanne Perez, Kenneth Chinedu Nwoko, Philipp Egbers, Joerg Feldmann, Laszlo Csetenyi, Geoffrey M. Gadd
    Applied Microbiology and Biotechnology.2019; 103(17): 7241.     CrossRef
  • Leaching of metals from end-of-life solar cells
    Mital Chakankar, Chun Hui Su, Hong Hocheng
    Environmental Science and Pollution Research.2019; 26(29): 29524.     CrossRef
  • Mycogenic Selenium Nanoparticles as Potential New Generation Broad Spectrum Antifungal Molecules
    Shreya Joshi, Savitha De Britto, Sudisha Jogaiah, Shin-ichi Ito
    Biomolecules.2019; 9(9): 419.     CrossRef
  • Micronutrient Selenium: Uniqueness and Vital Functions
    E. G. Varlamova, V. N. Maltseva
    Biophysics.2019; 64(4): 510.     CrossRef
  • Biosynthesis of Selenium Nanoparticles using yeast Nematospora coryli and examination of their anti‐candida and anti‐oxidant activities
    Mohammad Rasouli
    IET Nanobiotechnology.2019; 13(2): 214.     CrossRef
  • Selenium Species: Current Status and Potentials in Cancer Prevention and Therapy
    Heng Wee Tan, Hai-Ying Mo, Andy T. Y. Lau, Yan-Ming Xu
    International Journal of Molecular Sciences.2018; 20(1): 75.     CrossRef
  • Proteins enriched in charged amino acids control the formation and stabilization of selenium nanoparticles in Comamonas testosteroni S44
    Ding Xu, Lichen Yang, Yu Wang, Gejiao Wang, Christopher Rensing, Shixue Zheng
    Scientific Reports.2018;[Epub]     CrossRef
  • Preparation, characteristics and antioxidant activity of polysaccharides and proteins-capped selenium nanoparticles synthesized by Lactobacillus casei ATCC 393
    Chunlan Xu, Lei Qiao, Yu Guo, Li Ma, Yiyi Cheng
    Carbohydrate Polymers.2018; 195: 576.     CrossRef
  • Green synthesis of nanoparticles with extracellular and intracellular extracts of basidiomycetes
    Elena Vetchinkina, Ekaterina Loshchinina, Maria Kupryashina, Andrey Burov, Timofey Pylaev, Valentina Nikitina
    PeerJ.2018; 6: e5237.     CrossRef
  • Effects of selenium application on Se content and speciation in Lentinula edodes
    Fei Zhou, Wenxiao Yang, Mengke Wang, Yuexia Miao, Zewei Cui, Zhe Li, Dongli Liang
    Food Chemistry.2018; 265: 182.     CrossRef
  • Biogenic Synthesis of Novel Functionalized Selenium Nanoparticles by Lactobacillus casei ATCC 393 and Its Protective Effects on Intestinal Barrier Dysfunction Caused by Enterotoxigenic Escherichia coli K88
    Chunlan Xu, Yu Guo, Lei Qiao, Li Ma, Yiyi Cheng, Alexandra Roman
    Frontiers in Microbiology.2018;[Epub]     CrossRef
  • Metal and metalloid biorecovery using fungi
    Xinjin Liang, Geoffrey Michael Gadd
    Microbial Biotechnology.2017; 10(5): 1199.     CrossRef
  • Biosynthesis of nanoparticles of metals and metalloids by basidiomycetes. Preparation of gold nanoparticles by using purified fungal phenol oxidases
    Elena P. Vetchinkina, Ekaterina A. Loshchinina, Ilya R. Vodolazov, Viktor F. Kursky, Lev A. Dykman, Valentina E. Nikitina
    Applied Microbiology and Biotechnology.2017; 101(3): 1047.     CrossRef
  • In vivo synthesis of nano-selenium by Tetrahymena thermophila SB210
    Yin-Hua Cui, Ling-Li Li, Nan-Qing Zhou, Jing-Hua Liu, Qing Huang, Hui-Juan Wang, Jie Tian, Han-Qing Yu
    Enzyme and Microbial Technology.2016; 95: 185.     CrossRef
  • Reduction of selenite to Se(0) nanoparticles by filamentous bacterium Streptomyces sp. ES2-5 isolated from a selenium mining soil
    Yuanqing Tan, Rong Yao, Rui Wang, Dan Wang, Gejiao Wang, Shixue Zheng
    Microbial Cell Factories.2016;[Epub]     CrossRef
  • Effect of selenite on the morphology and respiratory activity of Phanerochaete chrysosporium biofilms
    Erika J. Espinosa-Ortiz, Yoan Pechaud, Ellen Lauchnor, Eldon R. Rene, Robin Gerlach, Brent M. Peyton, Eric D. van Hullebusch, Piet N.L. Lens
    Bioresource Technology.2016; 210: 138.     CrossRef
  • Selenium uptake, tolerance and reduction inFlammulina velutipessupplied with selenite
    Jipeng Wang, Bo Wang, Dan Zhang, Yanhong Wu
    PeerJ.2016; 4: e1993.     CrossRef
  • Biological synthesis of selenium and germanium nanoparticles by xylotrophic basidiomycetes
    E. P. Vetchinkina, E. A. Loshchinina, V. F. Kurskyi, V. E. Nikitina
    Applied Biochemistry and Microbiology.2016; 52(1): 87.     CrossRef
  • Biogenic selenium nanoparticles: current status and future prospects
    Sweety A. Wadhwani, Utkarsha U. Shedbalkar, Richa Singh, Balu A. Chopade
    Applied Microbiology and Biotechnology.2016; 100(6): 2555.     CrossRef
  • Effects of selenium oxyanions on the white-rot fungus Phanerochaete chrysosporium
    Erika J. Espinosa-Ortiz, Graciela Gonzalez-Gil, Pascal E. Saikaly, Eric D. van Hullebusch, Piet N. L. Lens
    Applied Microbiology and Biotechnology.2015; 99(5): 2405.     CrossRef
  • Cite this Article
    Cite this Article
    export Copy Download
    Close
    Download Citation
    Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

    Format:
    • RIS — For EndNote, ProCite, RefWorks, and most other reference management software
    • BibTeX — For JabRef, BibDesk, and other BibTeX-specific software
    Include:
    • Citation for the content below
    Reduction of Organic and Inorganic Selenium Compounds by the Edible Medicinal Basidiomycete Lentinula edodes and the Accumulation of Elemental Selenium Nanoparticles in Its Mycelium
    J. Microbiol. 2013;51(6):829-835.   Published online December 19, 2013
    Close
Related articles

Journal of Microbiology : Journal of Microbiology
TOP