Your browser doesn't support javascript.
loading
Structural and optical variation of pseudoisocyanine aggregates nucleated on DNA substrates.
Chiriboga, Matthew; Green, Christopher M; Mathur, Divita; Hastman, David A; Melinger, Joseph S; Veneziano, Remi; Medintz, Igor L; Díaz, Sebastián A.
Affiliation
  • Chiriboga M; Center for Bio/Molecular Science and Engineering Code 6900, U. S. Naval Research Laboratory, 4555 Overlook Ave. S.W. Washington, DC 20375, United States of America.
  • Green CM; Department of Bioengineering. College of Engineering and Computing, George Mason University, 4400 University Drive, Fairfax, VA 22030, United States of America.
  • Mathur D; Center for Bio/Molecular Science and Engineering Code 6900, U. S. Naval Research Laboratory, 4555 Overlook Ave. S.W. Washington, DC 20375, United States of America.
  • Hastman DA; Center for Bio/Molecular Science and Engineering Code 6900, U. S. Naval Research Laboratory, 4555 Overlook Ave. S.W. Washington, DC 20375, United States of America.
  • Melinger JS; Department of Chemistry, Case Western Reserve University, 10900 Euclid Avenue, Cleveland, OH 44106, United States of America.
  • Veneziano R; Center for Bio/Molecular Science and Engineering Code 6900, U. S. Naval Research Laboratory, 4555 Overlook Ave. S.W. Washington, DC 20375, United States of America.
  • Medintz IL; Electronics Sciences and Technology Division, U.S. Naval Research Laboratory, 4555 Overlook Ave. S.W. Washington, DC 20375, United States of America.
  • Díaz SA; Department of Bioengineering. College of Engineering and Computing, George Mason University, 4400 University Drive, Fairfax, VA 22030, United States of America.
Methods Appl Fluoresc ; 11(1)2023 Jan 31.
Article in En | MEDLINE | ID: mdl-36719011
ABSTRACT
Coherently coupled pseudoisocyanine (PIC) dye aggregates have demonstrated the ability to delocalize electronic excitations and ultimately migrate excitons with much higher efficiency than similar designs where excitations are isolated to individual chromophores. Here, we report initial evidence of a new type of PIC aggregate, formed through heterogeneous nucleation on DNA oligonucleotides, displaying photophysical properties that differ significantly from previously reported aggregates. This new aggregate, which we call the super aggregate (SA) due to the need for elevated dye excess to form it, is clearly differentiated from previously reported aggregates by spectroscopic and biophysical characterization. In emission spectra, the SA exhibits peak narrowing and, in some cases, significant quantum yield variation, indicative of stronger coupling in cyanine dyes. The SA was further characterized with circular dichroism and atomic force microscopy observing unique features depending on the DNA substrate. Then by integrating an AlexaFluorTM647 (AF) dye as an energy transfer acceptor into the system, we observed mixed energy transfer characteristics using the different DNA. For example, SA formed with a rigid DNA double crossover tile (DX-tile) substrate resulted in AF emission sensitization. While SA formed with more flexible non-DX-tile DNA (i.e. duplex and single strand DNA) resulted in AF emission quenching. These combined characterizations strongly imply that DNA-based PIC aggregate properties can be controlled through simple modifications to the DNA substrate's sequence and geometry. Ultimately, we aim to inform rational design principles for future device prototyping. For example, one key conclusion of the study is that the high absorbance cross-section and efficient energy transfer observed with rigid substrates made for better photonic antennae, compared to flexible DNA substrates.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Quinolines Language: En Journal: Methods Appl Fluoresc Year: 2023 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Quinolines Language: En Journal: Methods Appl Fluoresc Year: 2023 Document type: Article Affiliation country: United States
...