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Application of a kind of human cryptochrome protein i (hcry1) in the preparation of anti-ultraviolet radiation preparations
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A pigment protein, ultraviolet radiation technology, applied in the application field of preparations, can solve the problems of toxic side effects, opacity, poor shading effect, etc.
Active Publication Date: 2020-12-18
GUANGZHOU DOUBLLE BIOPRODUCT CO LTD
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[0005] In order to develop safe, environmentally friendly, non-toxic sunscreen sunscreens, researchers have conducted a lot of research. However, the current sunscreens have the characteristics of toxic side effects and non-broad-spectrum absorption, poor shading effect and opacity. Therefore, it is urgent to develop a preparation process with simple, safe, light-transmitting, water-soluble and broad-spectrum absorption properties.
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[0030]Source of raw materials: UVA ultraviolet lamp (Guanya Optoelectronics, wave peak 360nm), UVB ultraviolet lamp (Guanya Optoelectronics, wave peak 320nm), UVC ultraviolet lamp (Beijing Stone, wave peak 257nm), UV illuminance meter (Taiwan Xianchi), enzymelabel Instrument (Bio-Rad), fluorescent quantitative PCR instrument (Stratagene MX 3000P), hCRY1 recombinant human cryptochrome protein solution (Dubbio, E. coli expression and fermentation purification), CCK-8 kit (Shanghai Yisheng Biotechnology), 6 -8-week-old SD rats (Guangzhou Youdi Biotechnology), Anti-MMP-1 antibody (Bioss), SPF30 sunscreen (purchased from Meikaina), SYBR Green MIX (Shanghai Yisheng Biotechnology).
[0031]Preparation:
[0032](1) Cell culture: The HaCaT cells were resuscitated and cultured in DMEM medium containing 10% FBS, successively passaged, and the 3-10th passage cells were taken for experiment.
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Abstract
The invention discloses an application of human cryptochrome protein I (hCRY1) in the preparation of an anti-ultravioletradiation preparation, and belongs to the field of biopharmaceutical technology. This application carried out cell experiments and animal experiments respectively, through tissue morphologystaining and immunohistochemical staining, and related genemRNA expression levels to reveal and observe skinphotoaging changes and gene expression differences in animal models, and then determine whether hCRY1 has UV protection function. hCRY1 is a potential new biological UV sunscreen in this study. Compared with physical sunscreens that are opaque, chemical sunscreens that have toxic side effects and non-broad-spectrum absorption, hCRY1 is safe, light-transmitting, water-soluble, and broad-spectrum. Features of absorbing 100‑400nm ultraviolet rays.
Description
Technical field[0001]The invention belongs to the field of biopharmaceutical technology, and specifically relates to the application of human cryptochrome protein I (hCRY1) in the preparation of anti-ultravioletradiation preparations.Background technique[0002]Currently, sunscreen products on the market are mainly divided into physical sunscreens and chemical sunscreens. Physical sunscreens usually reflect or scatter ultraviolet and visible light. Commonly used substances include talc, zincoxide, titanium dioxide, magnesiumoxide, and kaolin. Chemical sunscreens usually absorb ultraviolet rays, and they have different effects depending on the wavelength of ultraviolet rays. For example, the sunscreens that absorb long-wave ultraviolet (wavelength range 320-400nm) include benzophenone, 4-tert-butyl-4-methoxymethane and 4-isopropyldiphenylmethane; absorb medium-wave ultraviolet (wavelength range) (290-320nm) sunscreens include p-aminobenzoic acid and its derivatives, cinnamate and s...
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