Pharmaceutical composition for treating dentin allergy and preparation method and application thereof
A composition and drug technology, applied in the direction of drug combination, pharmaceutical formula, allergic diseases, etc., can solve the problems that natural NCPs are not easy to obtain and have limited wide application, so as to promote deposition and directional growth, ensure blockage, and improve the effect of treatment
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Embodiment 1
[0034] Preparation and experiment of embodiment 1 amphiphilic oligopeptide
[0035] 1. Preparation of amphiphilic oligopeptides
[0036] The amphipathic oligopeptide consists of a hydrophilic peptide sequence ()ASN-ASN-CYS-CYS-CYS-CYS-ARG-ARG-GLU-SER ((p)) mimicking CEMP1 and a hydrophobic Tail (C 16 h 31 COOH) composition. Oligopeptides were synthesized by solid-phase peptide synthesis, stepwise from the C-terminus to the N-terminus using an automated synthesizer.
[0037] The oligopeptide powder was dissolved in deionized water, and the self-assembly of the amphiphilic oligopeptide was initiated with 1 M calcium chloride solution.
[0038] Afterwards, the suspension was ultrasonically mixed to promote the diffusion of calcium ions, and then incubated at 4°C to obtain self-assembled oligopeptides.
[0039] The secondary structure of self-assembled oligopeptides was characterized by far ultraviolet circular dichroism chromatography. The self-assembled oligopeptides were ...
Embodiment 2
[0051] Embodiment 2 results and characterization
[0052] 1. Preparation of amphiphilic oligopeptides
[0053] Loss of enamel, superficial dentin, and cementum on the dentin surface is probably the most common cause of dentin tubule exposure. Therefore, the reconstruction of dental hard tissue is an important research field for the treatment of dentin sensitivity. The formation of inorganic minerals in dental tissue, such as nucleation, phase transition, and orientation growth, requires the regulation of organic biomolecules. In the present invention, the oligopeptide was designed based on the principle of the functional amino acid sequence of CEMP1 responsible for cementum mineralization and amphiphile. Amphiphilic oligopeptides can self-assemble into supramolecular structures through hydrophobic interactions. Therefore, exposure of bioactive peptides to an aqueous environment modulates mineralization.
[0054] In the present invention, Ca 2+ Used to trigger self-assembl...
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