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Water-soluble cationic benzylidene cyclopentanone photosensitizer and preparation method and application of photosensitizer in photodynamic sterilization

A technology of benzylidene cycloalkane ketone and water-soluble cation, which is applied in the field of preparation of water-soluble cationic benzylidene cycloalkane ketone photosensitizer, which can solve the problem of affecting the efficiency of photodynamic inactivation, poor metabolism, and unclear absorption and metabolism mechanism And other issues

Active Publication Date: 2017-03-01
TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, with the widespread use and continuous upgrading of antibiotics, clinical pathogenic bacteria infections have not been completely controlled. On the contrary, many pathogenic bacteria or opportunistic pathogens have mutated into those with effective resistance to antibiotics under the pressure of the living environment. Multidrug Resistant Bacteria
The high mortality rate and high medical costs caused by infections caused by multi-drug resistant bacteria make the work of antimicrobial infections face a severe test
In 2010, the British medical journal "The Lancet" announced that the "super bacteria" carrying the "New Delhi metalloproteinase-1 (NDM-1)" gene can tolerate almost all antibiotics, but the commonly used anti-infective drugs and methods have limited efficacy against such infections
[0006] At present, there are currently existing photosensitizers for clinical photodynamic therapy such as hematoporphyrin derivatives HpD, photofrin, verteporfin, etc. These photosensitizers have different degrees of unclear effective components, unclear absorption and metabolism mechanisms in vivo, and poor metabolism. And other issues
However, the photosensitizer phenothiazine dye methylene blue (MB), which is used in clinical practice, easily forms dimers on the surface of bacteria, which seriously affects the efficiency of photodynamic inactivation.

Method used

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  • Water-soluble cationic benzylidene cyclopentanone photosensitizer and preparation method and application of photosensitizer in photodynamic sterilization
  • Water-soluble cationic benzylidene cyclopentanone photosensitizer and preparation method and application of photosensitizer in photodynamic sterilization
  • Water-soluble cationic benzylidene cyclopentanone photosensitizer and preparation method and application of photosensitizer in photodynamic sterilization

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0120] A water-soluble cationic benzylidene cycloalkanone photosensitizer, its synthetic method is as follows:

[0121] (1) Preparation of intermediate compound Q2-1:

[0122] Slowly add 52.06 g (0.25 mol) of phosphorus pentachloride into 150 mL of DMF cooled in an ice bath, continue the ice bath for 30 minutes, and then stir at room temperature for 15 minutes. Slowly add 20 g (0.12 mol) of N-ethyl-N-hydroxyethylaniline to the above system, stir at 45°C for 12 hours, return to normal temperature and neutralize the reaction solution with sodium bicarbonate solution. The reaction solution was extracted three times with dichloromethane, and the dichloromethane extract was washed with water to neutrality and then dried with anhydrous magnesium sulfate. After filtration and rotary evaporation, the dichloromethane was removed to obtain 24.9 grams of corresponding intermediate product Q2-1 (yield 98%).

[0123]

[0124] (II) Preparation of intermediate compound Q3-1:

[0125] A...

Embodiment 2

[0136] Example 1 was repeated with the difference that, Cyclooctanone, the catalyst is anhydrous sodium carbonate, with (2,2-bipyridine) replaces pyridine as the reaction raw material, and other conditions remain unchanged. The product water-soluble cationic benzylidene cycloalkanone photosensitizer was obtained with a yield of 34%.

Embodiment 3

[0138] Example 1 was repeated with the difference that, Cycloheptanone, the catalyst is anhydrous potassium carbonate, with (2-benzylpyridine) replaces pyridine as the reaction raw material, and other conditions remain unchanged. The product water-soluble cationic benzylidene cycloalkanone photosensitizer was obtained with a yield of 45%.

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Abstract

The invention discloses a water-soluble cationic benzylidene cyclopentanone photosensitizer and a synthetic method and application of the photosensitizer in photodynamic sterilization. The photosensitizer has a simple molecular structure, has a determined chemical structure, has appropriate fat-to-water ratio, has fat-water amphipathy, has mild reaction condition for synthesis, and is easy to prepare and purify. The operation is simple. The photosensitizer has high biological photodynamic activity within the 350-600 nm wavelength range, can be used for selective photodynamic inactivation of pathogenic microorganisms and avoids from damaging host cells and tissues as much as possible, has a broad-spectrum antibacterial property, and has a great application prospect in the aspect of photodynamic sterilization.

Description

technical field [0001] The present invention relates to the field of photodynamic therapy. More specifically, it relates to a preparation method of a water-soluble cationic benzylidene cycloalkanone photosensitizer and its application in photodynamic sterilization. Background technique [0002] The discovery of antibiotics once made human beings think that the era of microbial infection was about to be bid farewell. However, with the widespread use and continuous upgrading of antibiotics, clinical pathogenic bacteria infections have not been completely controlled. On the contrary, many pathogenic bacteria or opportunistic pathogens have mutated into those with effective resistance to antibiotics under the pressure of the living environment. Multidrug-resistant bacteria that kill drug-resistant mechanisms. The high mortality rate and high medical expenses caused by infections caused by multidrug-resistant bacteria make the work of antimicrobial infections face a severe test...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C07D213/127C07D213/20C07D213/22C07D221/10C07D471/04C07D215/10C07D213/50C07D219/02C07C209/12C07C211/64C07F9/54A61K41/00A61P31/04
CPCA61K41/0057C07C209/12C07C211/64C07D213/127C07D213/20C07D213/22C07D213/50C07D215/10C07D219/02C07D221/10C07D471/04C07F9/5442Y02A50/30
Inventor 吴飞鹏方艳艳赵榆霞
Owner TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI
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