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Coenzyme Q nanostructured lipid carrier and preparation method thereof

A nanostructured lipid and coenzyme technology, applied in the field of carrier systems, can solve the problems of poor drug stability and low bioavailability of coenzyme Q, and achieve the effects of convenient preparation, simple preparation method, and easy fusion

Active Publication Date: 2013-03-06
苏州纳康生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The purpose of the present invention is to provide a water-soluble coenzyme Q nanostructure lipid carrier with high stability and good compatibility, which solves the problems of poor stability and low bioavailability of coenzyme Q drugs in the prior art

Method used

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  • Coenzyme Q nanostructured lipid carrier and preparation method thereof
  • Coenzyme Q nanostructured lipid carrier and preparation method thereof
  • Coenzyme Q nanostructured lipid carrier and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] Example 1 Preparation of Coenzyme Q Nanostructured Lipid Carrier

[0035] Composition formula

[0036]

[0037] Preparation steps:

[0038] 1. Weigh 0.5 g of O / 100G, 4.5 g of Tween 80, 3.5 g of GMS, and 1.5 g of glyceryl caprylate into a beaker, and heat in a water bath at 65°C.

[0039] 2. After the substance in the beaker is completely melted, add 1.0 g of CoQ 10 , heated and stirred evenly;

[0040] 3. Add 89 grams of distilled water at 65°C to the above system and stir evenly. At the same time, turn on the high-pressure homogenizer and preheat it with distilled water at 65°C;

[0041] 4. Put the uniformly stirred high-temperature emulsion system into a high-pressure homogenizer, adjust the homogenization pressure to 60MPa, and circulate 9 times under this pressure;

[0042] 5. Bring to room temperature to obtain a clear and transparent aqueous dispersion of CoQ10-NLC. The particle size of the dispersion measured by photon correlation spectroscopy (PCS) is 46....

Embodiment 2

[0043] Example 2 Preparation of Coenzyme Q Nanostructured Lipid Carrier

[0044] Composition formula

[0045]

[0046] Preparation steps:

[0047] 1. Weigh 0.5 grams of soybean lecithin, 4.5 grams of Tween 80, 3.5 grams of GMS, and 1.5 grams of glyceryl caprylate into a beaker, and heat in a water bath at 65°C.

[0048] 2. After the substance in the beaker is completely melted, add 2.0 grams of CoQ10, heat and stir evenly;

[0049] 3. Add 88 grams of distilled water at 65°C to the above system and stir evenly. At the same time, turn on the high-pressure homogenizer and preheat it with distilled water at 65°C;

[0050] 4. Put the uniformly stirred high-temperature emulsion system into a high-pressure homogenizer, adjust the homogenization pressure to 60MPa, and circulate 9 times under this pressure;

[0051] 5. Bring to room temperature to obtain a clear and transparent aqueous dispersion of CoQ10-NLC. The particle size of the dispersion measured by photon correlation spect...

Embodiment 3

[0052] Example 3 Preparation of Coenzyme Q Nanostructured Lipid Carrier

[0053] Composition formula

[0054]

[0055] Preparation steps:

[0056] 1. Weigh 0.5 g of hexaglyceryl monostearate, 4.5 g of Tween 80, 4.9 g of GMS, and 2.1 g of glyceryl caprylate into a beaker, and heat in a water bath at 65°C.

[0057] 2. After the substance in the beaker is completely melted, add 3.0 grams of CoQ10, heat and stir evenly;

[0058] 3. Add 85.0 grams of distilled water at 65°C to the above system and stir evenly. At the same time, turn on the high-pressure homogenizer and preheat it with distilled water at 65°C;

[0059] 4. Put the uniformly stirred high-temperature emulsion system into a high-pressure homogenizer, adjust the homogenization pressure to 60MPa, and circulate 9 times under this pressure;

[0060] 5. The aqueous dispersion of CoQ10-NLC obtained at room temperature is semi-clear and transparent, and the particle diameter of the dispersion measured by photon correlati...

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Abstract

The invention discloses a coenzyme Q nanostructured lipid carrier and a preparation method thereof. The composition is as follows according to mass percentage: 1-5 percent of coenzyme Q, 0.5-25 percent of emulsifier, 0. 5-25 percent of lipid materials and the balance of water or water solution containing water-soluble surfactant. The composition has good stability and water solubility, simple andcontrollable preparation method, and good repeatability, and can be applied to the preparation of cosmetics and health food with the coenzyme Q.

Description

technical field [0001] The invention belongs to the technical field of carrier systems in cosmetics and food preparation technology, and relates to a nanoscale carrier and a preparation method thereof, in particular to a nanostructured lipid carrier with coenzyme Q10 as an active ingredient and a preparation method thereof. Background technique [0002] Coenzyme Q is a fat-soluble quinone compound that exists widely in organisms. Coenzyme Q from different sources has different numbers of isopentenyl units in its side chain. Humans and mammals have 10 isopentenyl units, so it is called coenzyme Q. 10 . coenzyme Q 10 (CoQ 10 ) alias decene quinone, ubiquinone, chemical name 2,3-dimethyl-5-methyl-6-decyl quinone, is a fat-soluble quinone compound. The substance widely exists in animal, plant and microbial cells. [0003] CoQ 10 It is an activator of cellular respiration and cellular metabolism, and also an important antioxidant and non-specific immune enhancer. CoQ 10 It...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61K8/35A61K8/37A61K8/85A61K8/92A61K8/84A61Q19/08A23L1/29A23L33/00
Inventor 夏强王虹霞
Owner 苏州纳康生物科技有限公司
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