Organic bio-iodine and its use

A technology of organic biology and edible salt, applied in the fields of application, food science, drug combination, etc., can solve the problems of high value, poor safety, and difficult absorption.

Inactive Publication Date: 2005-09-07
赵波
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, all countries in the world use chemical iodine—potassium iodide, potassium iodate, etc., which are used in medicine or table salt. Potassium iodide and potassium iodate are not easy to absorb and have poor safety.
In 1992, Yale University in the United States developed the method of synthesizing or extracting tyrosine organic bioiodine from seaweed, and tested it with tadpoles, which proved that the safety and absorption of tyrosine organic bioiodine were better than inorganic iodine (potassium iodide, iodic acid) Potassium), but tyrosine organic iodine has poor stability and is only limited to storage in the dark and at a temperature of 0-3°C, and is very expensive and cannot be commercialized

Method used

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  • Organic bio-iodine and its use
  • Organic bio-iodine and its use
  • Organic bio-iodine and its use

Examples

Experimental program
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Effect test

Embodiment Construction

[0010] First, seaweed iodine is extracted from kelp and seaweed. Seaweed iodine contains organic active iodine (i.e. tyrosine iodine) and monovalent chemical iodine (i.e. potassium iodide). After seaweed iodine is purified and decolorized, tyrosine iodine accounts for 10-29%, and the remaining 71-90% is potassium iodide. Then the concentrated seaweed iodine is added to the spirulina culture pool. Due to the photosynthetic autotrophy of spirulina, through photosynthesis and biological reactions, the tyrosine iodine in the seaweed iodine is absorbed by the spirulina cells, and the potassium iodide in the seaweed iodine is absorbed by the spirulina cells. After separation and removal, after purification and decolorization, it becomes white or light yellow powder, and 98% of 1-2 iodotyrosine is obtained, of which 1-iodotyrosine content is 96%. The chemical structural formula is:

[0011]

[0012] The content of 2-iodotyrosine is 2%, and the structural formula is:

[0013]

...

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Abstract

The present invention relates to an organic biological iodine. It is mainly composed of 96% of 1-iodotyrosine, 2% of 2-iodotyrosine and 2% of sodium alginate. Sand organic biological iodine contains no any chemical inorganic iodine, and is similar to the thyroxine in endocrine thyroid gland of human body, after having been absorbed into human body it can participate in the metabolism in molecular form, and it is safe and stable in the iodine-supplementing effect, and does not result into iodism reaction.

Description

technical field [0001] The invention relates to an organic biological iodine and the application of the organic biological iodine. Background technique [0002] Iodine is an indispensable chemical element in the human body. People can only get iodine by eating iodine-containing substances. At present, all countries in the world use chemical iodine—potassium iodide, potassium iodate, etc., which are used in medicine or salt. Potassium iodide and potassium iodate are not easy to absorb, and their safety is poor. In 1992, Yale University in the United States developed the method of synthesizing or extracting tyrosine organic bioiodine from seaweed, and tested it with tadpoles, which proved that the safety and absorption of tyrosine organic bioiodine were better than inorganic iodine (potassium iodide, iodic acid) Potassium), but tyrosine organic bioiodine has poor stability and is only limited to storage under conditions of no light and a temperature of 0...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A23L33/165A61K9/20A61K31/198A61P3/02
Inventor 赵波
Owner 赵波
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