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1.
Chinese Journal of Medical Aesthetics and Cosmetology ; (6): 213-217, 2022.
Article in Chinese | WPRIM | ID: wpr-958713

ABSTRACT

Objective:To evaluate the effects and adverse reactions of external skin care products containing oltides and bio-polysaccharides on epidermaligopep barrier function of sensitive skin.Methods:From December 2019 to July 2020, there were 30 sensitive skin volunteers diagnosed and treated in the dermatology clinic of Beijing Tongren Hospital, including 3 males and 27 females, aged 18-57 years, with an average of 34 years, and the course of disease was 1-10 years, with an average of 5.75 years. They were treated once with products containing oligopeptides and biopolysaccharides on the day of enrollment. Before treatment, 1 week and 4 weeks after treatment, we observed and evaluated through VISIA analysis; skin physiological index measurement, subjective and objective improvement assessment, and product safety were evaluated through questionnaire surveys.Results:The VISIA data showed that the red zone was significantly lower than the baseline, and the data at the 4th week and before treatment were significantly improved ( P<0.05). On skin physiology, the test showed that after treatment, the difference between two follow-up visits and the water content before was statistically significant ( P<0.05). TEWL value after 4 weeks of treatment was significantly improved as compared with the baseline ( P<0.05). During the entire study process, no adverse reactions related to the product occurred. Conclusions:This skin care product containing oligopeptides and biopolysaccharides can increase the water content of the sensitive skin, reduce the water loss through the skin, and improve the skin barrier function. Meanwhile, no server adverse reaction is detected through the whole experiment.

2.
Korean Journal of Dermatology ; : 1181-1187, 2002.
Article in Korean | WPRIM | ID: wpr-175957

ABSTRACT

BACKGROUND: Among the various methods for chemical peeling, it is possible to select a wide range of peeling agents for particular patients. OBJECTIVES: The objective of present study was to investigate the effects of various chemical peeling agents on the epidermal permeability barrier of hairless mice skin and to clarify the histologic alteration in epidermal structure, thus to apply in the clinical practices. METHODS: We have applied 35% and 70% glycolic acid (GA) aqueous solutions, 30% of salicylic acid (SA) solution of PEG400, Jessner's solution and 15%, 30% and 50% of trichloroacetic acid (TCA) aqueous solution to the flank of hairless mice. TEWL (trans-epidermal water loss) values were measured before and immediately after the application and 3, 6, 12 and 24 hours following treatment. Biopsy specimens were evaluated with light and electron microscopy for epidermal structural changes. RESULTS: There were no significant changes in TEWL for the GA and SA solution treated skin, regardless of their concentration. For the TCA and Jessner's solution, TEWL increased immediately after treatment and recovered the basal levels about 90% after 24 hours for Jessner's solution and low concentrated TCA solution, but did not recovered for high concentrated TCA solution. On light and electron microscopic examination, exfoliating effect was seen in every case and as for SA and Jessner's solution treated skin, keratolysis at hair follicles was also seen. Slight epidermal necrosis was seen in every case, except in GA treated skin. CONCLUSION: The present results suggest that using topical agents such as glycolic acid can induce the change in the architecture of the epidermis without disrupting the skin barrier.


Subject(s)
Animals , Humans , Mice , Biopsy , Epidermis , Hair Follicle , Mice, Hairless , Microscopy, Electron , Necrosis , Permeability , Salicylic Acid , Skin , Trichloroacetic Acid
3.
Korean Journal of Dermatology ; : 1053-1059, 1995.
Article in Korean | WPRIM | ID: wpr-206052

ABSTRACT

BACKGROUND: In eczematous skin it is expected that altered defense mechanisms are employed against an injury, which mechanisms include alterations in the stratum corneum barrier function and lipid contents. OBJECTIVE: To investigaten aspect of pathophysiology of hand eczema by comparing the water holding capacities and transepidermal water loss(TEWL) after injuries on the skin and by comparing the epidermal lipid contents between hand eczema and normal subjects. METHODS: The water holding capacities were checked by corneometer, and the TEWL were checked after epidermal barrie! destruction with acetone or adhesive tapes. The epidermal lipids were extracted with acetone, ther (1: 1 v/v) mixture solvent and analysed by HP- TLC. RESULTS: The water holdingapacities were decreased in eczema of the palm, but the recoveries of TEWL and the lipid content did not differ between hand eczema and normal subjects. CONCLUSION: The water holding capacities were decreased in the eczematous skin. But there were no significant differencies in the recovery of destructed epidermal barrier and the epidermal lipid contents.


Subject(s)
Acetone , Adhesives , Defense Mechanisms , Eczema , Hand , Skin , Water
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