| Literature DB >> 28144316 |
Constantin Mamat1, Marc Pretze2, Matthew Gott3, Martin Köckerling4.
Abstract
Novel, functionalized piperazine derivatives were successfully synthesized and fully characterized byEntities:
Keywords: Staudinger ligation; building blocks; coalescence; dynamic NMR; labeling
Year: 2016 PMID: 28144316 PMCID: PMC5238536 DOI: 10.3762/bjoc.12.242
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Preparation of the nitro derivatives 4a and 5a and the fluorine-containing compounds 4b and 5b. Reagents and conditions: a) 1a, Et3N, CHCl3, 0 °C, 2 h, 0 °C then 2 h, rt; b) 1b, acetonitrile, 1 M HCl, rt, 4 h; c) 4-tosylbutyne, Et3N, THF, 60 °C, 3 d; d) 3-azidopropyl tosylate, Et3N, THF, 60 °C, 3 d.
Figure 11H NMR spectra of compound 3a measured in five different solvents: (A) CDCl3, (B) DMSO-d6, (C) acetone-d6, (D) methanol-d4 and (E) acetonitrile-d3 (orange: region of interest).
Figure 2HSQC and H,H-COSY (small spectrum) of compound 3a measured in CDCl3 at 25 °C. The independent coupling of the NCH2 groups is marked.
Figure 3Illustration of the general partial double bond character of an amide bond and the limited isomerization of the amine nitrogen atom which results in possible conformers of piperazine compounds.
NMR parameters Δν and kexc of nitro compound 3a measured in dependence of the solvent.
| solvent | Δν1 [Hz] | Δν2 [Hz] | ||
| CDCl3 | 59.5 | 176.2 | 132.2 | 391.4 |
| acetonitrile- | 55.2 | 162.2 | 122.6 | 360.3 |
| DMSO- | 49.5 | 157.6 | 110.0 | 350.1 |
| methanol- | 53.3 | 155.8 | 118.4 | 346.1 |
| acetone- | 30.4 | 133.2 | 67.5 | 295.9 |
Figure 4Temperature-dependent 1H NMR spectra of 3a measured in DMSO-d6 (aliphatic region of the piperazine protons from 2.00 to 4.00 ppm is shown).
Evaluation of the Gibb’s energy ΔG#exc of compounds 3a, 3b, 4a and 5a from NMR data measured in DMSO-d6.
| Δν1 | Δν2 | Δ | Δ | |||||
| 49.5 | 157.6 | 110.0 | 350.1 | 323 | 340 | 66.7 | 67.1 | |
| n.d. | 106.6 | n.d. | 236.8 | n.d. | 306 | n.d. | 61.1 | |
| 48.5 | 154,0 | 107.7 | 342.1 | 320 | 338 | 66.1 | 66.7 | |
| 48.6 | 154.9 | 108.0 | 344.1 | 315 | 338 | 65.0 | 66.7 | |
Figure 5Molecular structure of compound 3a (ORTEP plot with 50% probability level).
Figure 6Molecular structure of compound 4b (ORTEP plot with 50% probability level).
Figure 7Superimposition fit of the two conformers, which exist in the ratio of 1:1 in the solid state structure of compound 4b (label A marks the atoms of the second conformer).
Scheme 2Peptide labeling using the Huisgen-click reaction and building block 4b. Reagents and conditions: a) 4b, CuSO4, Na ascorbate, PBS buffer (pH 7.4), 40 °C, 16 h.
Scheme 3The traceless Staudinger ligation to yield compound 9. Reagents and conditions: a) acetonitrile/water 10:1 (v/v), 60 °C, 3 h.
Scheme 4Preparation of the radiolabeling building blocks [18F]4b and [18F]5b. Reagents and conditions: a) K[18F]F, Kryptofix K 2.2.2, DMSO, 150 °C, 60 min.
Figure 8Radio-TLC (eluent: ethanol) of [18F]5b (Rf = 0.50; reaction mixture).
Figure 9(Radio)HPLC of 5a (tR = 7.7 min, UV trace, red), 5b (tR = 6.7 min, UV trace: blue) and [18F]5b (tR = 7.1 min, γ-trace, green). The differences in the retention times of 5b and [18F]5b occurs due to the setup of UV- and γ-detector of the HPLC device.