| Literature DB >> 29364846 |
Andrew Levitz1, Fahad Marmarchi2, Maged Henary3,4.
Abstract
Heptamethine cyanine dyes are a class of near infrared fluorescence (NIRF) probes of great interest in bioanalytical and imaging applications due to their modifiability, allowing them to be tailored for particular applications. Generally, modifications at the meso-position of these dyes are achieved through Suzuki-Miyaura C-C coupling and SRN1 nucleophilic substitution of the chlorine atom at the meso-position of the dye. Herein, a series of 15 meso phenyl-substituted heptamethine cyanines was synthesized utilizing a modified dianil linker. Their optical properties, including molar absorptivity, fluorescence, Stokes shift, and quantum yield were measured. The HSA binding affinities of two representative compounds were measured and compared to that of a series of trimethine cyanines previously synthesized by our lab. The results indicate that the binding of these compounds to HSA is not only dependent on hydrophobicity, but may also be dependent on steric interferences in the binding site and structural dynamics of the NIRF compounds.Entities:
Keywords: HSA binding; NIRF; absorbance; fluorescence; heptamethine cyanine dyes; physiochemical properties
Mesh:
Substances:
Year: 2018 PMID: 29364846 PMCID: PMC6017188 DOI: 10.3390/molecules23020226
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthetic routes of heptamethine dyes containing a phenyl ring at the meso-position.
Figure 1The structures of the three NIR standards used for the study.
Spectral Characteristics of dyes Cy-7, IR-780 and 6a–o. All optical properties of the dyes were measured in ethanol.
| Dye | λmax (nm) | λemission (nm) | Stokes Shift (nm) | ε (L·mol−1·cm−1) | Φ (%) | Molecular Brightness (M−1·cm−1) |
|---|---|---|---|---|---|---|
| 753 | 775 | 22 | 200,000 | 28 | 56,000 | |
| 779 | 799 | 20 | 274,000 | 8.0 | 20,800 | |
| 759 | 774 | 15 | 265,700 | 31 | 82,000 | |
| 765 | 780 | 15 | 261,000 | 34 | 88,700 | |
| 767 | 783 | 16 | 275,600 | 35 | 96,500 | |
| 782 | 802 | 20 | 249,500 | 10 | 25,000 | |
| 798 | 810 | 12 | 255,400 | 16 | 40,900 | |
| 760 | 781 | 21 | 263,900 | 39 | 102,300 | |
| 769 | 785 | 16 | 286,600 | 38 | 109,300 | |
| 770 | 786 | 16 | 282,900 | 42 | 119,200 | |
| 786 | 804 | 18 | 143,500 | 12 | 17,200 | |
| 797 | 810 | 13 | 231,800 | 17 | 39,400 | |
| 763 | 780 | 17 | 198,500 | 45 | 89,300 | |
| 772 | 787 | 15 | 123,400 | 47 | 58,000 | |
| 773 | 788 | 15 | 239,200 | 48 | 113,600 | |
| 789 | 805 | 16 | 249,900 | 11 | 27,100 | |
| 800 | 812 | 12 | 226,600 | 17 | 38,500 |
Figure 2Absorption spectra of dye 6m in ethanol.
Figure 3Emission spectra of dye 6m in ethanol with excitation wavelength of 750 nm.
Physicochemical properties (in silico) of dyes MHI-06 and 6a–o calculated using ChemAxon. The data calculated (at pH 7.4) include: logD, polarizability, dipole moment (debye), number of rotatable bonds, volume (Å3), molecular surface area (Å3), and molar mass (g/mol).
| Dye | log | Polarizability | Dipole Moment | Rot. Bonds | Volume | Molec. Surface Area | Molar Mass |
|---|---|---|---|---|---|---|---|
| 4.97 | 59.45 | 2.48 | 8 | 441.44 | 693.216 | 584.54 | |
| 6.07 | 65.57 | 8.35 | 4 | 519.85 | 814.001 | 652.66 | |
| 7.28 | 69.15 | 12.3 | 4 | 547.45 | 845.982 | 721.55 | |
| 7.61 | 70.67 | 13.02 | 4 | 556.15 | 854.732 | 810.46 | |
| 5.75 | 70.51 | 27.66 | 6 | 569.71 | 907.778 | 712.72 | |
| 8.05 | 80.82 | 11.87 | 4 | 604.27 | 936.392 | 752.78 | |
| 6.75 | 69.26 | 3.2 | 6 | 552.14 | 874.685 | 680.72 | |
| 7.99 | 72.84 | 4.81 | 6 | 579.48 | 906.491 | 749.6 | |
| 8.32 | 74.35 | 4.97 | 6 | 588.47 | 915.629 | 838.51 | |
| 6.47 | 74.2 | 25.29 | 8 | 603.83 | 969.908 | 740.77 | |
| 8.76 | 84.51 | 4.59 | 6 | 638.63 | 999.272 | 7803.84 | |
| 8.72 | 76.65 | 2.85 | 10 | 620.01 | 996.744 | 736.81 | |
| 9.92 | 80.23 | 4.63 | 10 | 647.91 | 1029.597 | 805.71 | |
| 10.25 | 81.71 | 4.96 | 10 | 656.64 | 1038.143 | 894.62 | |
| 8.40 | 81.59 | 26.66 | 12 | 672.63 | 1094.66 | 796.88 | |
| 10.69 | 91.9 | 3.96 | 10 | 708.29 | 1124.8 | 836.95 |
Figure 4The emission specra of 6a (0.2 μM) binding with various concentration of HSA, in PBS buffer at excitation wavelength of 740 nm.