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Updated: Dec 6, 2025

Rapid One-step Enzymatic Synthesis and All-aqueous Purification of Trehalose Analogues
Published on: February 17, 2017
Controllable Synthesis and Biological Application of Schiff Bases from d-Glucosamine and Terephthalaldehyde
Qinghua Weng1,2, Jinquan Yi1,2, Xiaoping Chen1,2
1School of Pharmacy, Fujian Medical University, Fuzhou 350122, P R China.
Abstract:
Theoretically, the two aldehydes of terephthalaldehyde (TPA) are equivalent, so the single or double Schiff base from TPA and d-glucosamine (Glc) may be formed at the same time. However, it is preferred to produce separately a single Schiff base (L ) or double Schiff base (L ) for different synthesis systems of anhydrous methanol or water-methanol. We calculated the Δr G of the formation of compounds L and L by density functional theory (DFT). In an anhydrous methanol system, the Δr G values of L and L are both below zero and L is lower, suggesting the spontaneous formation of the two Schiff bases. Though adjusting the molar ratio of Glc to TPA, L and L 2 both were separately formed in anhydrous methanol. However, in the water-methanol system, L was absent, which is most likely due to higher Δr G (4.95 eV) and better water solubility. The results also exhibits that the positive charge of C in -CHO for TPA is smaller in a mixed solvent than that in methanol, which confirms that the nucleophilic reaction of the Schiff base is more difficult in a mixed solvent. Therefore, we could realize to control the synthesis of a pure single or double Schiff base from Glc and TPA by adjusting the molar ratio and solvent. The as-prepared two kinds of Schiff bases have strong optical properties, high bacteriostatic activity, and can be used as fluorescent probes for tumor cell imaging.
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