| Literature DB >> 35408725 |
Shuo-Bei Qiu1, Pei-Yao Liu2, Bo-Cheng Wang3, Pin-Rui Chen3, Jing-Han Xiao3, Ting-Yu Hsu3, Kuan-Lin Pan3, Zhi-Yin Lai3, Yi-Wei Chen4, Ying-Chuan Chen2, Jen-Kun Chen1,5, Po-Shen Pan3.
Abstract
In this report, 19 boron-containing depsipeptides were synthesized via microwave-assisted Passerini three-component reaction (P-3CR) in an aqueous environment. The linker-free DAHMI fluorescent tagging approach was used on selected boron-containing compounds to study the relationship between their structures and their level of cellular uptake of HEK293 cells. The biological data retrieved from the DAHMI experiments indicated that while the structures of tested compounds may be highly similar, their bio-distribution profile could be vastly distinctive. The reported optimized one-pot synthetic strategy along the linker-free in vitro testing protocol could provide an efficient platform to accelerate the development of boron-containing drugs.Entities:
Keywords: DAHMI; boronic acid; depsipeptide(s); microwave-assisted; multicomponent; passerini; α-acyloxyamide
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Year: 2022 PMID: 35408725 PMCID: PMC9000886 DOI: 10.3390/molecules27072325
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Boron-containing pharmaceuticals.
Optimization of P-3CR using formylphenyl boronic acids 2 a, b, c.
| Entry | Solvent | Time (h) | Yield (%) | |
|---|---|---|---|---|
| 1 | Ether | 25 | 2.5 | ND |
| 2 | DCM | 25 | 2.5 | ND |
| 3 | MeOH | 25 | 2.5 | ND |
| 4 | H2O | 25 | 2.5 | 5 |
| 5 | H2O | 25 | 24 | 57 |
| 6 | H2O | 45 | 2.5 | 56 |
| 7 | H2O | MW, 45 | 1.0 | 55 |
| 8 | H2O | MW, 45 | 2.5 | 68 |
| 9 | H2O | MW, 45 | 4.0 | 33 |
| 10 | H2O | MW, 65 | 2.5 | 63 |
| 11 | H2O | MW, 85 | 2.5 | 53 |
a Reaction conditions: 1a (1.2 equiv), 2a (1.0 equiv) and 3a (1.2 equiv) were stirred at corresponding temperature. b ND = not detected. c Isolated yield.
Optimization of P-3CR using boronobenzoic acids 1 a, b.
| Entry | Solvent | Time (h) | Yield (%) | |
|---|---|---|---|---|
| 1 | H2O | 25 | 2.5 | 63 |
| 2 | H2O | 25 | 24 | 62 |
| 3 | H2O | 85 | 2.5 | 53 |
| 4 | H2O | MW, 45 | 2.5 | 55 |
| 5 | H2O | MW, 65 | 2.5 | 74 |
| 6 | H2O | MW, 85 | 2.5 | 89 |
| 7 | H2O | MW, 95 | 2.5 | 53 |
a Reaction conditions: 1b (1.2 equiv), 2b (1.0 equiv) and 3a (1.2 equiv) were stirred at corresponding temperature. b Isolated yield.
Scheme 1Synthesis of P-3CR boronic acids 4 using formylphenyl boronic acids 2 a, b.
Scheme 2Synthesis of P-3CR boronic acids 5 using boronobenzoic acids 1 a, b.
Figure 2Postulate mechanistic model of P-3CR that involves (a) formylphenyl Boronic Acid (PAS); (b) Boronobenzoic Acid (CS).
Electron density diagram of HOMO/LUMO states in PAS and CS.
| Entry | Dihedral Angle | HOMO-Side | LUMO-Side | HOMO-Top | LUMO-Top |
|---|---|---|---|---|---|
| 1 | 0.00069° |
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| 2 | −0.01869° |
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Calculated projected density of state values (pDOS, %) for the HOMO/LUMO orbital of PAS and CS.
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| Dihedral | HOMO | LUMO | ||||||
|---|---|---|---|---|---|---|---|---|---|
| 1 | PAS 0.00069° | OO | B | Ph | COHH | OO | B | Ph | COHH |
| 2 | CS −0.01869° | OO | B | Ph | COHH | OO | B | Ph | COHH |
Figure 3Two model reactions for 11B NMR Study (a) Model A: Passerini-3CR with formylphenyl boronic acid; (b) Model B: Passerini-3CR with boronobenzoic acid.
Cellular bio-distribution of compound 4a, 5b, 5f, 5g and 5k a.
| Compound | Bright Field | DAHMI Stain b | Merged Image |
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a All compounds synthesized by Passerini-3CR in this report were racemic mixtures. b Cells were stained with DAHMI (2.0 mM) for 20 min at 37 °C (ex:358 nm).