4.8 Article

Efficient One-Step PEG-Silane Passivation of Glass Surfaces for Single-Molecule Fluorescence Studies

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 46, 页码 39505-39511

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b15796

关键词

poly(ethylene glycol); TIRF; DNA; proteins; AFM; surface functionalization

资金

  1. Vanier Canada
  2. Drug Discovery and Training Program (CIHR)
  3. NSERC
  4. Molson and Hilton Hart fellowship
  5. Fonds de recherche du Quebec-Sante (FRQS)
  6. Canadian Network on Hepatitis C (CanHepC)

向作者/读者索取更多资源

Surface passivation to inhibit nonspecific interactions is a key requirement for in vitro single-molecule fluorescent studies. Although the standard passivation methods involve the covalent attachment of poly(ethylene glycol) (PEG) in two steps preferably over quartz surfaces, this protocol and improvements thereon require extensive labor and chemicals. Herein, we report an efficient one-step surface grafting of PEG-silane that yields enhanced passivation, as evidenced by reduced nonspecific interactions, over the conventional method at a minimal time and reagent cost and on glass surfaces. Our method is rooted in a mechanistic understanding of the silane reaction with the silanol groups on the glass surface. Single-molecule fluorescence studies with fluorescently tagged proteins and DNA on PEG-silane-functionalized glass surfaces validate the enhanced performance of the method. Combined with atomic force microscopy surface characterization, our study further illustrates that few remaining pinhole defects, plausibly from defects on the glass, on PEG-silane glass-coated surfaces account for the minimal background, where typically no more than one molecule is nonspecifically attached in a given diffraction-limited spot on the surface.

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