Controllable synthesis of protein-conjugated lead sulfide nanocubes by using bovine hemoglobin as a capping agent
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  • 作者:Guangrui Yang (1)
    Dezhi Qin (2)
    Li Zhang (2)
  • 关键词:Lead sulfide ; Nanocubes ; Bovine hemoglobin ; Protein ; assisted synthesis ; Nanobiotechnology
  • 刊名:Journal of Nanoparticle Research
  • 出版年:2014
  • 出版时间:June 2014
  • 年:2014
  • 卷:16
  • 期:6
  • 全文大小:
  • 参考文献:1. Aizenberg J (2004) Crystallization in patterns: a bio-inspired approach. Adv Mater 16:1295-302 CrossRef
    2. Arachchige IU, Brock SL (2007) Sol–gel methods for the assembly of metal chalcogenide quantum dots. Acc Chem Res 40:801-09 CrossRef
    3. Arami H, Mazloumi M, Khalifehzadeh R, Sadrnezhaad SK (2007) Sonochemical preparation of TiO2 nanoparticles. Mater Lett 61:4559-561 CrossRef
    4. Baruwati B, Polshettiwar V, Varma RS (2009) Glutathione promoted expeditious green synthesis of silver nanoparticles in water using microwaves. Green Chem 11:926-30 CrossRef
    5. Biswas S, Chaudhuri S (2008) Biomolecule assisted hydrothermal synthesis of chainlike network of silver sulfide nanostructures. J Nanosci Nanotechnol 8:986-92
    6. Cao Y, Wang H, Cao C, Sun Y, Yang L, Wang B, Zhou J (2011) Inhibition effects of protein-conjugated amorphous zinc sulfide nanoparticles on tumor cells growth. J Nanopart Res 13:2759-767 CrossRef
    7. Chen D, Gao L (2005) Microemulsion-mediated synthesis of cadmium zinc sulfide nanocrystals with composition-modulated optical properties. Solid State Commun 133:145-50 CrossRef
    8. Chen T, Shao M, Xu H, Wen C, Lee S (2012) Control over the crystal phase, crystallinity, morphology of AgVO3 via protein inducing process. J Colloid Interf Sci 366:80-7 CrossRef
    9. Chi Z, Liu R, Yang B, Zhang H (2010) Toxic interaction mechanism between oxytetracycline and bovine hemoglobin. J Hazard Mater 180:741-47 CrossRef
    10. Dickerson MB, Sandhage KH, Naik RR (2008) Protein- and peptide-directed syntheses of inorganic materials. Chem Rev 108:4935-978 CrossRef
    11. Garabagiu S (2011) A spectroscopic study on the interaction between gold nanoparticles and hemoglobin. Mater Res Bull 46:2474-477 CrossRef
    12. Guo Y, Zhang J, Yang L, Wang H, Wang F, Zheng Z (2010) Syntheses of amorphous and crystalline cupric sulfide nanoparticles and study on the specific activities on different cells. Chem Commun 46:3493-495 CrossRef
    13. Khalilian M, Abdi Y, Arzi E (2011) Formation of well-packed TiO2 nanoparticles on multiwall carbon nanotubes using CVD method to fabricate high sensitive gas sensors. J Nanopart Res 13:5257-264 CrossRef
    14. Kong Y, Chen J, Gao F, Li W, Xu X, Pandoli O, Yang H, Ji J, Cui D (2010) A multifunctional ribonuclease-A-conjugated CdTe quantum dot cluster nanosystem for synchronous cancer imaging and therapy. Small 6:2367-373 CrossRef
    15. Kumar VV, Nithya S, Shyam A, Subramanian NS, Anthuvan JT, Anthony SP (2013) Natural amino acid based phenolic derivatives for synthesizing silver nanoparticles with tunable morphology and antibacterial studies. Bull Korean Chem Soc 34:2702-706 CrossRef
    16. Larson DR, Zipfel WR, Williams RM, Clark SW, Bruchez MP, Wise FW, Webb WW (2003) Water-soluble quantum dots for multiphoton fluorescence imaging in vivo. Science 300:1434-436 CrossRef
    17. Liu B, Yang C, Yan X, Wang J, Zhang J, Lu Y (2012) Interaction of moxifloxacin with bovine hemoglobin and effect of the coexistent drugs on the reaction. Spectrosc Lett 45:175-83 CrossRef
    18. Lu F, Cai W, Zhang Y (2008) ZnO hierarchical micro/nanoarchitectures: solvothermal synthesis and structurally enhanced photocatalytic performance. Adv Funct Mater 18:1047-056 CrossRef
    19. Navaneethan M, Nisha KD, Ponnusamy S, Muthamizhchelvan C (2009) Optical and surface morphological properties of triethylamine passivated lead sulfide nanoparticles. Mater Chem Phys 117:443-47 CrossRef
    20. Patolsky F, Weizmann Y, Lioubashevski O, Willner I (2002) Au-nanoparticle nanowires based on DNA and polylysine templates. Angew Chem 114:2429-433 CrossRef
    21. Pentia E, Pintilie L, Matei I, Botila T, Pintilie I (2003) Combined chemical–physical methods for enhancing IR photoconductive properties of PbS thin films. Infrared Phys Technol 44:207-11 CrossRef
    22. Pighini G, Aymes D, Millot N, Saviot L (2007) Low-frequency Raman characterization of size-controlled anatase TiO2 nanopowders prepared by continuous hydrothermal syntheses. J Nanopart Res 9:309-15 CrossRef
    23. Qin DZ, Ma XM, Yang L, Zhang L, Ma ZJ, Zhang J (2008) Biomimetic synthesis of HgS nanoparticles in the bovine serum albumin solution. J Nanopart Res 10:559-66 CrossRef
    24. Rahmelow K, Hubner W (1996) Secondary structure determination of protein aqueous solution by infrared spectroscopy: a comparison of multivariate data analysis methods. Anal Biochem 241:5-3 CrossRef
    25. Rastogi L, Arunachalam J (2013) Synthesis and characterization of bovine serum albumin-copper nanocomposites for antibacterial applications. Colloid Surf B 108:134-41 CrossRef
    26. Rodriguez F, Glawe DD, Naik RR, Hallinan KP, Stone MO (2004) Study of the chemical and physical influences upon in vitro peptide-mediated silica formation. Biomacromolecules 5:261-65 CrossRef
    27. Wakeling BR, Degamber B, Kister G, Lane DW, Bailey MJ, Jeynes C (2012) In situ analysis of cadmium sulphide chemical bath deposition by an optical fibre monitor. Thin Solid Films 525:1- CrossRef
    28. Wang Y, Chen LQ, Li YF, Zhao XJ, Peng L, Huang CZ (2010) A one-pot strategy for biomimetic synthesis and self-assembly of gold nanoparticles. Nanotechnology 21:1-
    29. Wilson GJ, Matijasevich AS, Mitchell DRG, Schulz JC, Will GD (2006) Modification of TiO2 for enhanced surface properties: finite Ostwald ripening by a microwave hydrothermal process. Langmuir 22:2016-027 CrossRef
    30. Xiang J, Cao H, Wu Q, Zhang S, Zhang X, Watt AAR (2008) l -cysteine-assisted synthesis and optical properties of Ag2S nanospheres. J Phys Chem C 112:3580-584 CrossRef
    31. Yang D, Chen S, Huang P, Wang X, Jiang W, Pandoli O, Cui D (2010) Bacteria-template synthesized silver microspheres with hollow and porous structures as excellent SERS substrate. Green Chem 12:2038-042 CrossRef
    32. Zhu J, Liu S, Palchik O, Koltypin Y, Gedanken A (2000) A novel sonochemical method for the preparation of nanophasic sulfides: synthesis of HgS and PbS nanoparticles. J Solid State Chem 153:342-48 CrossRef
    33. Zhu J, Yang D, Geng J, Chen D, Jiang Z (2008) Synthesis and characterization of bamboo-like CdS/TiO2 nanotubes composites with enhanced visible-light photocatalytic activity. J Nanopart Res 10:729-36 CrossRef
  • 作者单位:Guangrui Yang (1)
    Dezhi Qin (2)
    Li Zhang (2)

    1. Institute of Environmental and Municipal Engineering, North China University of Water Conservancy and Electric Power, Zhengzhou, 450011, People’s Republic of China
    2. College of Chemistry and Chemical Engineering, Pingdingshan University, Pingdingshan, 467000, People’s Republic of China
  • ISSN:1572-896X
文摘
A simple, convenient, and controllable strategy was reported in this contribution for protein-assisted synthesis BHb-conjugated PbS nanocubes. Powder X-ray diffraction, energy disperse X-ray spectroscopy, transmission electron microscopy, high-resolution transmission electron microscopy, and selected-area electron diffraction characterizations were used to determine the structure and morphology of BHb-conjugated PbS nanocubes. The prepared PbS nanocrystals with cubic rock salt structure were uniform and monodispersed with homogeneous size around 12?nm. The results of Fourier transform infrared and circular dichroism assay proved that Pb2+/PbS had coordination interaction with functional groups of BHb besides physical-binding effect, and the secondary structure of protein significantly changed with this interaction. Thermogravimetric analysis results confirmed the existence of BHb in PbS nanocrystals and indicated that the conjugate bonds existed between PbS and BHb. A clear perspective was shown here that special nanostructure could be created by using proteins as a mediating template at the inorganic–organic interface.

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