Page 352 - GreenChemistry2023 Emhetgel
P. 352

Бактериологийн шинжилгээ хийхэд туслалцаа үзүүлсэн “МОН ТАРИУР” ХХК-н микробиологич
        Н.ХОНГОРЗУЛ-д талархал илэрхийлье.

        Ном зүй
  (1)   Tripathi, N.; Goshisht, M. K. Recent Advances and Mechanistic Insights into Antibacterial Activity, Antibiofilm
        Activity,  and  Cytotoxicity  of  Silver  Nanoparticles.  ACS  Appl  Bio  Mater  2022,  5  (4),  1391–1463.
        https://doi.org/10.1021/ACSABM.2C00014/ASSET/IMAGES/MEDIUM/MT2C00014_0055.GIF.
  (2)   Kalwar, K.; Shan, D. Antimicrobial Effect of Silver Nanoparticles (AgNPs) and Their Mechanism  – a Mini
        Review. Micro Nano Lett 2018, 13 (3), 277–280. https://doi.org/10.1049/MNL.2017.0648.

  (3)   Synthesis  and  Study  of  Silver  Nanoparticles  for  Antibacterial  Activity  against  Escherichia  Coli  and
        Staphylococcus Aureus. 2018. https://doi.org/10.1088/2043-6254/aac58f.
  (4)   Ahmad, S.; Munir, S.; Zeb, N.; Ullah, A.; Khan, B.; Ali, J.; Bilal, M.; Omer, M.; Alamzeb, M.; Salman, S. M.;
        Ali,  S.  <p>Green  Nanotechnology: A  Review  on  Green  Synthesis  of  Silver  Nanoparticles  —  an
        Ecofriendly Approach</P>. Int J Nanomedicine 2019, 14, 5087–5107. https://doi.org/10.2147/IJN.S200254.

  (5)   Alavi, M.; Karimi, N.; Valadbeigi, T. Antibacterial, Antibiofilm, Antiquorum Sensing, Antimotility, and Antioxidant
        Activities of Green Fabricated Ag, Cu, TiO2, ZnO, and Fe3O4 NPs via Protoparmeliopsis Muralis Lichen
        Aqueous  Extract  against  Multi-Drug-Resistant  Bacteria.  ACS  Biomater Sci  Eng  2019,  5 (9),  4228–4243.
        https://doi.org/10.1021/ACSBIOMATERIALS.9B00274/ASSET/IMAGES/MEDIUM/AB9B00274_0016.GIF.

  (6)   Sowmya,  B.;  Hemavathi, A.  B.;  Panda,  P.  K.  Poly  (ε-Caprolactone)-Based  Electrospun  Nano-Featured
        Substrate for Tissue Engineering Applications: A Review. Progress in Biomaterials 2021 10:2 2021, 10 (2),
        91–117. https://doi.org/10.1007/S40204-021-00157-4.
  (7)   Mercante, L. A.; Pavinatto, A.; Pereira, T. S.; Migliorini, F. L.; dos Santos, D. M.; Correa, D. S. Nanofibers
        Interfaces  for  Biosensing:  Design  and  Applications.  Sensors  and  Actuators  Reports  2021,  3,  100048.
        https://doi.org/10.1016/J.SNR.2021.100048.

  (8)   Amarjargal, A.; Brunelli, M.; Fortunato, G.; Spano, F.; Kim, C. S.; Rossi, R. M. On-Demand Drug Release
        from  Tailored  Blended  Electrospun  Nanofibers.  J  Drug  Deliv  Sci  Technol  2019,  52,  8–14.
        https://doi.org/10.1016/j.jddst.2019.04.004.

  (9)   Stack,  M.  E.;  Mishra,  S.;  Parimala  Chelvi  Ratnamani,  M.;  Wang,  H.;  Gold,  L.  I.;  Wang,  H.  Biomimetic
        Extracellular  Matrix  Nanofibers  Electrospun  with  Calreticulin  Promote  Synergistic  Activity  for  Tissue
        Regeneration.      ACS      Appl      Mater      Interfaces    2022,      14     (46),     51683–51696.
        https://doi.org/10.1021/ACSAMI.2C13887/SUPPL_FILE/AM2C13887_SI_001.PDF.

  (10)  Su, Y.; Toftdal, M. S.; Friec, A. Le; Dong, M.; Han, X.; Chen, M. 3D Electrospun Synthetic Extracellular Matrix
        for Tissue Regeneration. Small Science 2021, 1 (7), 2100003. https://doi.org/10.1002/SMSC.202100003.

  (11)  Amarjargal, A.; Tijing, L. D.; Park, C. H.; Im, I. T.; Kim, C. S. Controlled Assembly of Superparamagnetic Iron
        Oxide  Nanoparticles  on Electrospun  PU  Nanofibrous  Membrane: A  Novel  Heat-Generating  Substrate  for
        Magnetic     Hyperthermia     Application.    Eur    Polym     J     2013,    49     (12),   3796–3805.
        https://doi.org/10.1016/J.EURPOLYMJ.2013.08.026.

  (12)  Pant, H. R.; Park, C. H.; Tijing, L. D.; Amarjargal, A.; Lee, D. H.; Kim, C. S. Bimodal Fiber Diameter Distributed
        Graphene Oxide/Nylon-6 Composite Nanofibrous Mats via Electrospinning. Colloids Surf A Physicochem Eng
        Asp 2012, 407, 121–125.

  (13)  Cui, H.; Liu, M.; Yu, W.; Cao, Y.; Zhou, H.; Yin, J.; Liu, H.; Que, S.; Wang, J.; Huang, C.; Gong, C.; Zhao, G.
        Copper Peroxide-Loaded Gelatin Sponges for Wound Dressings with Antimicrobial and Accelerating Healing
        Properties.     ACS       Appl      Mater      Interfaces     2021,      13      (23),     26800–26807.
        https://doi.org/10.1021/ACSAMI.1C07409/SUPPL_FILE/AM1C07409_SI_001.PDF.
   347   348   349   350   351   352   353   354   355   356   357