Preloader

Biosynthesis of spinel nickel ferrite nanowhiskers and their biomedical applications

  • 1.

    Fu, Z. et al. Shape control of Cu/ZnO core-shell nanocubes and related structures for localized surface plasmon resonance. ACS Appl. Nano Mater. 4, 995–999 (2021).

    CAS 
    Article 

    Google Scholar 

  • 2.

    Foroughi, M. M., Jahani, S. & Rajaei, M. Facile fabrication of 3D dandelion-like cobalt oxide nanoflowers and its functionalization in the first electrochemical sensing of oxymorphone: evaluation of kinetic parameters at the surface electrode. J. Electrochem. Soc. 166, B1300–B1311. https://doi.org/10.1149/2.0511914jes (2019).

    CAS 
    Article 

    Google Scholar 

  • 3.

    Nasrollahzadeh, M., Sajjadi, M., Iravani, S. & Varma, R. S. Trimetallic nanoparticles: greener synthesis and their applications. Nanomaterials 10, 1784 (2020).

    CAS 
    PubMed Central 
    Article 
    PubMed 

    Google Scholar 

  • 4.

    Raeisi, M. et al. Magnetic cobalt oxide nanosheets: green synthesis and in vitro cytotoxicity. Bioprocess Biosyst. Eng. 44, 1423–1432 (2021).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 5.

    Khatami, M., Zafarnia, N., Bami, M. H., Sharifi, I. & Singh, H. Antifungal and antibacterial activity of densely dispersed silver nanospheres with homogeneity size which synthesized using chicory: an in vitro study. J de Mycologie Médicale 28 637–644 (2018).

    CAS 
    Article 

    Google Scholar 

  • 6.

    Mirzaei, H. et al. Direct growth of ternary copper nickel cobalt oxide nanowires as binder-free electrode on carbon cloth for nonenzymatic glucose sensing. Microchem. J. 142, 343–351. https://doi.org/10.1016/j.microc.2018.07.014 (2018).

    CAS 
    Article 

    Google Scholar 

  • 7.

    Khatami, M. et al. Calcium carbonate nanowires: greener biosynthesis and their leishmanicidal activity. RSC Adv. 10, 38063–38068. https://doi.org/10.1039/D0RA04503A (2020).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 8.

    Dong, P. et al. Controllable synthesis of exceptionally small-sized superparamagnetic magnetite nanoparticles for ultrasensitive MR imaging and angiography. J. Mater. Chem. B 9, 958–968 (2021).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 9.

    Wang, Z. et al. Large-scale one-pot synthesis of water-soluble and biocompatible upconversion nanoparticles for dual-modal imaging. Colloids Surf B Biointerfaces 198, 111480 (2021).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 10.

    Chen, Z. et al. Fabrication of cellulosic paper containing zeolitic imidazolate framework and its application in removal of anionic dye from aqueous solution. BioResources 16 2644–2654 (2021).

    CAS 
    Article 

    Google Scholar 

  • 11.

    Hesaraki, M. et al. Knowledge, attitude, practice and clinical recommendations of health care workers towards COVID-19: a systematic review. Review. Environm.l Health 35, 1–13 (2020).

    Article 

    Google Scholar 

  • 12.

    Dai, Z., Guo, S., Gong, Y. & Wang, Z. Semiconductor flexoelectricity in graphite-doped SrTiO3 ceramics. Ceram. Int. 47, 6535–6539 (2021).

    CAS 
    Article 

    Google Scholar 

  • 13.

    Safaei, M. et al. A review on metal-organic frameworks: Synthesis and applications. TrAC Trend. Analytic. Chem 118, 401–425 (2019).

    CAS 
    Article 

    Google Scholar 

  • 14.

    Rabiee, N. et al. Diatoms with invaluable applications in nanotechnology, biotechnology, and biomedicine: recent advances. ACS Biomater. Sci. Eng. https://doi.org/10.1021/acsbiomaterials.1c00475 (2021).

    Article 
    PubMed 

    Google Scholar 

  • 15.

    Sargazi, S. et al. Synthesis, characterization, toxicity and morphology assessments of newly prepared microemulsion systems for delivery of valproic acid. J. Mol. Liq. 338, 116625. https://doi.org/10.1016/j.molliq.2021.116625 (2021).

    CAS 
    Article 

    Google Scholar 

  • 16.

    Sabouri, Z., Akbari, A., Hosseini, H. A., Khatami, M. & Darroudi, M. Egg white-mediated green synthesis of NiO nanoparticles and study of their cytotoxicity and photocatalytic activity. Polyhedron 178, 114351. https://doi.org/10.1016/j.poly.2020.114351 (2020).

    CAS 
    Article 

    Google Scholar 

  • 17.

    VillaVelázquez-Mendoza, C. I. et al. Simultaneous synthesis of β-Si3N4 nanofibers and pea-pods and hand-fan like Si2N2O nanostructures by the CVD method. Mater. Lett. 175, 139–142. https://doi.org/10.1016/j.matlet.2016.04.028 (2016).

    CAS 
    Article 

    Google Scholar 

  • 18.

    Guo, J., Gao, J., Xiao, C., Chen, L. & Qian, L. Mechanochemical reactions of GaN-Al 2 O 3 interface at the nanoasperity contact: roles of crystallographic polarity and ambient humidity. Friction 2021, 1–14 (2021).

    Google Scholar 

  • 19.

    Dolete, G., Ilie, C. F., Nicoară, I. F., Vlăsceanu, G. M. & Grumezescu, A. M. in Nanobiomaterials in Dentistry (ed Alexandru Mihai Grumezescu) 27–47 (William Andrew Publishing, 2016).

  • 20.

    Gopi, S., Kargl, R., Kleinschek, K. S., Pius, A. & Thomas, S. Chitin nanowhisker–Inspired electrospun PVDF membrane for enhanced oil-water separation. J. Environ. Manage. 228, 249–259 (2018).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 21.

    Liu, M., Xue, Z., Zhang, H. & Li, Y. Dual-channel membrane capacitive deionization based on asymmetric ion adsorption for continuous water desalination. Electrochem. Commun. 125, 106974 (2021).

    CAS 
    Article 

    Google Scholar 

  • 22.

    Haghighi, H. et al. Characterization of bio-nanocomposite films based on gelatin/polyvinyl alcohol blend reinforced with bacterial cellulose nanowhiskers for food packaging applications. Food Hydrocolloids 113, 106454 (2021).

    CAS 
    Article 

    Google Scholar 

  • 23.

    Tang, H. et al. High-strength paper enhanced by chitin nanowhiskers and its potential bioassay applications. Int. J. Biol. Macromol. 150, 885–893 (2020).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 24.

    Dash, R. & Ragauskas, A. J. Synthesis of a novel cellulose nanowhisker-based drug delivery system. RSC Adv. 2, 3403–3409 (2012).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 25.

    Zou, Q., Xing, P., Wei, L. & Liu, B. Gene2vec: gene subsequence embedding for prediction of mammalian N6-methyladenosine sites from mRNA. RNA 25, 205–218 (2019).

    CAS 
    PubMed 
    PubMed Central 
    Article 

    Google Scholar 

  • 26.

    Zhao, H. et al. Comprehensive landscape of epigenetic-dysregulated lncRNAs reveals a profound role of enhancers in carcinogenesis in BC subtypes. Mol. Therapy-Nucleic Acids 23, 667–681 (2021).

    CAS 
    Article 

    Google Scholar 

  • 27.

    Rahimi, S., Poormohammadi, A., Salmani, B., Ahmadian, M. & Rezaei, M. Comparing the photocatalytic process efficiency using batch and tubular reactors in removal of methylene blue dye and COD from simulated textile wastewater. Journal of Water Reuse and Desalination 6, 574–582. https://doi.org/10.2166/wrd.2016.190 (2016).

    CAS 
    Article 

    Google Scholar 

  • 28.

    Xu, J. et al. UBQLN1 mediates sorafenib resistance through regulating mitochondrial biogenesis and ROS homeostasis by targeting PGC1β in hepatocellular carcinoma. Signal Transduct. Target. Ther. 6, 1–13 (2021).

    Article 
    CAS 

    Google Scholar 

  • 29.

    Krishnan, V. et al. Vortex-aligned fullerene nanowhiskers as a scaffold for orienting cell growth. ACS Appl. Mater. Interfaces. 7, 15667–15673 (2015).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 30.

    Vedrtnam, A., Kalauni, K., Dubey, S. & Kumar, A. A comprehensive study on structure, properties, synthesis and characterization of ferrites. AIMS Mater. Sci. 7, 800–835 (2020).

    CAS 
    Article 

    Google Scholar 

  • 31.

    Ordoukhanian, J., Nezhadali, A. & Mehri, L. Electrosynthesis of Co, Ni and Zn ferrites nanoparticles in the presence of external magnetic field. Ceram. Int. 47, 16841–16844 (2021).

    CAS 
    Article 

    Google Scholar 

  • 32.

    Amiri, M., Salavati-Niasari, M. & Akbari, A. Magnetic nanocarriers: evolution of spinel ferrites for medical applications. Adv. Coll. Interface. Sci. 265, 29–44 (2019).

    CAS 
    Article 

    Google Scholar 

  • 33.

    Patil, S., Naik, H. B., Nagaraju, G., Viswanath, R. & Rashmi, S. Sugarcane juice mediated eco-friendly synthesis of visible light active zinc ferrite nanoparticles: application to degradation of mixed dyes and antibacterial activities. Mater. Chem. Phys. 212, 351–362 (2018).

    CAS 
    Article 

    Google Scholar 

  • 34.

    Malakotian, M. et al. Protocol encompassing ultrasound/Fe3O4 nanoparticles/persulfate for the removal of tetracycline antibiotics from aqueous environments. Clean Technol. Environ. Policy 21, 1665–1674. https://doi.org/10.1007/s10098-019-01733-w (2019).

    CAS 
    Article 

    Google Scholar 

  • 35.

    Seid-Mohammadi, A., Gh, A., Sammadi, M., Ahmadian, M. & Poormohammadi, A. Removal of humic acid from synthetic water using chitosan as coagulant aid in electrocoagulation process for Al and Fe electrodes. Res. J. Chem. Environ 18, 5 (2014).

    Google Scholar 

  • 36.

    Kefeni, K. K., Mamba, B. B. & Msagati, T. A. Application of spinel ferrite nanoparticles in water and wastewater treatment: a review. Sep. Purif. Technol. 188, 399–422 (2017).

    CAS 
    Article 

    Google Scholar 

  • 37.

    Xia, S. et al. Preparation of porous zinc ferrite/carbon as a magnetic-assisted dispersive miniaturized solid phase extraction sorbent and its application. J. Chromatogr. A 1567, 73–80 (2018).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 38.

    Hussain, K., Amin, N. & Arshad, M. I. Evaluation of structural, optical, dielectric, electrical, and magnetic properties of Ce3+ doped Cu0. 5Cd0. 25Co0. 25Fe2-xO4 spinel nano-ferrites. Ceramics Int. 47, 3401–3410 (2021).

    CAS 
    Article 

    Google Scholar 

  • 39.

    Lee, C., Kahar, S. & Voon, C. Microwave synthesis of silicon carbide nanowhiskers: Effect of molar ratio. Mater. Today Proc. 37, 119–121 (2021).

    CAS 
    Article 

    Google Scholar 

  • 40.

    Lao, X., Xu, X., Jiang, W., Liang, J. & Miao, L. Influences of Al metal and Al–Si alloys on in-situ synthesis of SiC nanowhiskers in porous Al2O3–SiC composites obtained by carbothermal reduction. J. Alloys Compd. 854, 157182 (2021).

    CAS 
    Article 

    Google Scholar 

  • 41.

    Ghadimi, Z., Esfahani, H. & Mazaheri, Y. Control on nanostructured quaternary Ti–Al–O–B composite synthesized via electrospinning method, from nanoparticles to nanowhiskers. J. Sol-Gel. Sci. Technol. 98, 127–137 (2021).

    CAS 
    Article 

    Google Scholar 

  • 42.

    Ma, M.-G., Dong, Y.-Y., Fu, L.-H., Li, S.-M. & Sun, R.-C. Cellulose/CaCO3 nanocomposites: microwave ionic liquid synthesis, characterization, and biological activity. Carbohyd. Polym. 92, 1669–1676 (2013).

    CAS 
    Article 

    Google Scholar 

  • 43.

    Yılmaz Öztürk, B., Yenice Gürsu, B. & Dağ, İ. Antibiofilm and antimicrobial activities of green synthesized silver nanoparticles using marine red algae Gelidium corneum. Process Biochem. 89, 208–219 (2020).

    Article 
    CAS 

    Google Scholar 

  • 44.

    Raessi, M. et al. Barium carbonate nanostructures: Biosynthesis and their biomedical applications. Ceram. Int. https://doi.org/10.1016/j.ceramint.2021.04.106 (2021).

    Article 

    Google Scholar 

  • 45.

    Mohammadinejad, R., Karimi, S., Iravani, S. & Varma, R. S. Plant-derived nanostructures: types and applications. Green Chem. 18, 20–52. https://doi.org/10.1039/C5GC01403D (2016).

    Article 

    Google Scholar 

  • 46.

    Sun, M. et al. Effects of NaClO shock on MBR performance under continuous operating conditions. Environ. Sci.: Water Res. Technol. 7, 396–404 (2021).

    ADS 
    CAS 

    Google Scholar 

  • 47.

    Zhang, L. et al. Effect of Fe3+ on the sludge properties and microbial community structure in a lab-scale A2O process. Sci. Total Environ. 780, 146505 (2021).

    ADS 
    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 48.

    Hamidian, K., Saberian, M. R., Miri, A., Sharifi, F. & Sarani, M. Doped and un-doped cerium oxide nanoparticles: biosynthesis, characterization, and cytotoxic study. Ceram. Int. 47, 13895–13902. https://doi.org/10.1016/j.ceramint.2021.01.256 (2021).

    CAS 
    Article 

    Google Scholar 

  • 49.

    Azhdari, S. et al. Metallic SPIONP/AgNP synthesis using a novel natural source and their antifungal activities. RSC Adv. 10, 29737–29744 (2020).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 50.

    Khatami, M. et al. Greener synthesis of rod shaped zinc oxide nanoparticles using lilium ledebourii tuber and evaluation of their leishmanicidal activity. Iran. J. Biotechnol. 18, e2196–e2196. https://doi.org/10.30498/IJB.2020.119481.2196 (2020).

    Article 
    PubMed 
    PubMed Central 

    Google Scholar 

  • 51.

    Alinaghi Langari, A. et al. CeO2 foam-like nanostructure: biosynthesis and their efficient removal of hazardous dye. Bioprocess Biosyst. Eng. 44, 517–523. https://doi.org/10.1007/s00449-020-02464-9 (2021).

    CAS 
    Article 
    PubMed 

    Google Scholar 

  • 52.

    Khatami, M. et al. Simplification of gold nanoparticle synthesis with low cytotoxicity using a greener approach: opening up new possibilities. RSC Adv. 11, 3288–3294. https://doi.org/10.1039/D0RA08822F (2021).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 53.

    Mirgorod, Y. A., Borshch, N. A., Fedosyuk, V. M. & Yurkov, G. Y. Magnetic properties of nickel ferrite nanoparticles prepared using flotation extraction. Inorg. Mater. 49, 109–114. https://doi.org/10.1134/S0020168512110064 (2013).

    CAS 
    Article 

    Google Scholar 

  • 54.

    Nafari, A. et al. Nanoparticles: New agents toward treatment of leishmaniasis. arasite epidemiology and control, 10, e00156 (2020).

    Article 

    Google Scholar 

  • 55.

    Guo, J. et al. Interplay between counter-surface chemistry and mechanical activation in mechanochemical removal of N-faced GaN surface in humid ambient. Tribol. Int. 159, 107004 (2021).

    CAS 
    Article 

    Google Scholar 

  • 56.

    Rahdar, A. et al. Deferasirox-loaded pluronic nanomicelles: Synthesis, characterization, in vitro and in vivo studies. J. Mol. Liquids 323, 114605 (2021).

    CAS 
    Article 

    Google Scholar 

  • 57.

    Kumar, R. et al. Development of high efficacy peptide coated iron oxide nanoparticles encapsulated amphotericin B drug delivery system against visceral leishmaniasis. Mater. Sci. Eng., C 75, 1465–1471 (2017).

    CAS 
    Article 

    Google Scholar 

  • 58.

    Iqbal, J. et al. Green synthesis and characterizations of Nickel oxide nanoparticles using leaf extract of Rhamnus virgata and their potential biological applications. Appl. Organometal. Chem. 33, e4950 (2019).

    Article 
    CAS 

    Google Scholar 

  • 59.

    Alijani, H. Q., Pourseyedi, S., Torkzadeh-Mahani, M., Seifalian, A. & Khatami, M. Bimetallic nickel-ferrite nanorod particles: greener synthesis using rosemary and its biomedical efficiency. Artif. Cells Nanomed. Biotechnol. 48, 242–251. https://doi.org/10.1080/21691401.2019.1699830 (2020).

    CAS 
    Article 
    PubMed 

    Google Scholar 

  • Source link