706
Views
11
CrossRef citations to date
0
Altmetric
Research Article

Preparation of molecular imprinted hydrophobic polymeric nanoparticles having structural memories for lysozyme recognition

&
Pages 245-255 | Received 23 Nov 2011, Accepted 30 Dec 2011, Published online: 13 Mar 2012

References

  • Akgöl S, Öztürk N, Denizli A. 2010. New generation polymeric nanospheres for lysozyme adsorption. J. Appl. Polym. Sci. 115:1608–1615.
  • Alexander C, Andersson HS, Andersson LI, Ansell RJ, Kirsch N, Nicholls IA, Omahony J, Whitcombe MJ. 2006. Molecular imprinting science and technology: A survey of the literature for the years up to and including. J. Mol. Recognit. 19:106–180.
  • Altıntas EB, Tuzmen N, Candan N, Denizli A. 2007. Use of magnetic poly(glycidyl methacrylate) monosize beads for the purification of lysozyme in batch system J. Chromatogr B. 853:105–113.
  • Arıca MY, Oktem GA, Denizli A. 2001. Novel hydrophobic ligand-containing hydrogel membrane matrix: Preparation and application to g-globulins adsorption. Colloid. Surface. B. 21:273–283.
  • Asanuma H, Kakazu M, Shibata M, Hishiya T, Komiyama M. 1997. Imprinting polymer of cyclodextrin for efficient binding of cholesterol. Chem. Commun. 1971–1972.
  • Bangs LB. 1987. Uniform latex particles.Seragen Diagnostics Inc. Indianapolis: Seradyn Inc.
  • Başar N, Uzun L, Guner A, Denizli A. 2007. Lysozyme purification with dye-affinity beads under magnetic field. Int. J. Bıol. Macromol. 41:234–242.
  • Bereli N, Andac M, Baydemir G, Say R, Galaev IY, Denizli A. 2008. Protein recognition via ıon-coordinated molecularly ımprinted supermacroporous cryogels. J. Chromatogr. A. 1190:18–26.
  • Bossi A, Bonini F, Turner APF, Piletsky SA. 2007. Molecularly imprinted polymers for the recognition of proteins: The state of the art. Biosens. Bioelectron. 22:1131–1137.
  • Carter SR, Rimmer S. 2002. Molecular recognition of caffeine by shell molecular imprinted core-shell polymer particles in aqueous media. Adv. Mater. 14:667–670.
  • Conrad PG, Shea KJ. 2005. The use of metal coordination for controlling the microenvironment of imprinted polymers. In: Yan M, Ramstrom O. Molecularly imprinted materials: Science and technology. New York: Marcel Decker, pp. 123–180.
  • Ersoz A, Say R, Denizli A. 2004. Ni(II) ion-imprinted solid-phase extraction and preconcentration in aqueous solutions by packed-bed columns Anal. Chim Acta. 502:91–97.
  • Ertürk G, Uzun L, Tümer MA, Say R, Denizli A. 2011. Fab fragments imprinted SPR biosensor for real-time human immunoglobulin G detection. Biosens Bioelectron. 28:97–104.
  • Fu Q, Zheng N, Li YZ, Chang WB, Wang ZM. 2001. Molecular impinted polymers from nicotinamide and its positional isomers. J. Mol. Recogn. 14:151–156.
  • Ge Y, Turner APF. 2008. Too large to fit? Recent developments in macromolecular imprinting. Trends Biotechnol. 26:218–224.
  • Holthoff EL, Brıght FV. 2007. Molecularly imprinted xerogels as platforms for sensing. Acc. Chem. Res. 40:756–767.
  • Kempe M, Mosbach K. 1995. Separation of amino acids, peptides and proteins on molecularly ımprinted stationary phases. J. Chromatogr. A. 691:317–323.
  • Kugimiya A, Matsui J, Takeuchi T, Yano K, Muguruma H, Elgersma AV, Karube I. 1995. Recognition of sialic-acid using molecularly imprinted polymer. Anal. Lett. 28:2317–2323.
  • Lehn JM. 1995. Supramolecular chemistry: concepts and perspectives. Weinheim:VCH.
  • Ramstrom O, Ye L, Krook M, Mosbach K. 1998. Screening of a combinatorial steroid library using molecularly imprinted polymers. Anal Commun. 35:9–11.
  • Senel S, Akgöl S, Arıca MY, Denizli A. 2001. Dye-affinity hollow fibers and their lysozyme adsorption-desorption characteristics. Polym. Int. 50:1143–1149.
  • Sener G, Ozgur E, Yılmaz E, Uzun L, Say R, Denizli A. 2010. Quartz crystal microbalance based nanosensor for lysozyme detection with lysozyme ımprinted nanoparticles. Biosens. Bioelectron. 26:815–821.
  • Sener G, Uzun L, Say R, Denizli A. 2011. Use of molecular imprinted nanoparticles as biorecognition element on surface plasmon resonance sensor. Sensor. Actuat. B: Chem. 160:791–799.
  • Shea KJ. 1994. Molecular imprinting of synthetic network polymers: The de novo synthesis of macromolecular binding and catalytic sites. Trends Polym. Sci. 2:166–173.
  • Spivak DA, Shea KJ. 2001. Investigation into the scope and limitations of molecular imprinting with DNA molecules. Anal. Chim. Acta. 435:65–74.
  • Suarez-Rodrıguez JL, Diaz-Garcia ME. 2001. Fluorescent competitive flow-through assay for chloramphenicol using molecularly imprinted polymers. Biosens. Bioelectron. 16:955–961.
  • Tan CJ, Tong YW. 2007. The effect of protein structural conformation on nanoparticle molecular ımprinting of Ribonuclease A using miniemulsion polymerization. Langmuir 23:2722–2730.
  • Turner NW, Jeans CW, Brain KR, Allender CJ, Hlady V, Britt DW. 2006. From 3D to 2D: A review of the molecular imprinting of proteins. Biotechnol. Prog. 22:1474–1489.
  • Uygun DA, Corman ME, Ozturk N, Akgol S, Denizli A. 2010. Poly(hydroxyethyl methacrylate-co-methacryloyl amido tryptophane) nanospheres and their utilization as affinity adsorbents for porcine pancreas lipase adsorption. Mater. Sci. & Engin. C>. 30: 1285–1290.
  • Uygun DA, Karagozler AA, Akgol S, Denizli A. 2009. Magnetic hydrophobic affinity nanobeads for lysozyme separation. Mater. Sci. & Engin. C. 29:2165–2173.
  • Vasapollo G, Del Sole R, Mergola L, Lazzoi MR, Scardino A, Scorrano S, Mele G. 2011. Molecularly imprinted polymers: Present and future prospective. Int. J. Mol. Sci. 12:5908–5945.
  • Whitcombe MJ, Chianella I, Larcombe L, Piletsky SA, Noble J, Porter R, Horgan A. 2011. The rational development of molecularly imprinted polymer-based sensors for protein detection. Chem. Soc. Rev. 40:1547–1571.
  • Wulff G, Dederichs R, Grotstollen R, Jupe C. 1982. Affinity chromatography and related techniques. Amsterdam: Elsevier.
  • Wulff G, Gross T, Schönfeld R. 1997. Enzyme models based on molecularly imprinted polymers with strong esterase activity. Angew. Chem. Int. Ed. Engl. 36:1962–1964.
  • Yavuz H, Karakoc V, Turkmen D, Say R, Denizli A. 2007. Synthesis of cholesterol ımprinted polymeric particles. Int. J. Bıol. Macromol. 41:8–15.
  • Yılmaz F, Bereli N, Yavuz H, Denizli A. 2009. Supermacroporous hydrophobic affinity cryogels for protein chromatography. Bıochem. Eng. J. 43:272–279.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.