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      • KCI등재후보

        PEG-free 계면활성제를 사용한 Nanoemulsion의 안정화

        김희주,정택규,김자영,윤경섭,Kim, Huiju,Jung, Taek Kyu,Kim, Ja Young,Yoon, Kyung-Sup 한국응용과학기술학회 2019 한국응용과학기술학회지 Vol.36 No.2

        폴리에틸렌글라이콜(PEG)은 계면활성제, 세정제, 유화제 등으로 화장품에 많이 사용된다. 이들은 제조 과정 중, ethylene oxide의 이량체화에 의해 인간에 몸에 유해한 1,4-dioxane이 부산물로 생성될 수 있다. 화장품 성분에 대한 소비자들의 관심이 증가함에 따라, 퍼스널케어 시장에서 PEG 성분이 없는 보다 안전한 에멀젼 연구의 필요성이 증대되고 있다. PEG-free 계면활성제로 사용되는 polyglycerol ester (PGE)는 비이온성 계면활성제로서 식품, 화장품 등의 분야에서 많이 사용되며 글리세롤과 지방산을 에스테르화 하여 생산된다. 본 연구에서는 PEG 성분을 함유하지 않은 나노에멀젼 제형의 개발 및 안정화를 목표로 하였다. 최적화된 나노에멀젼 제형 개발을 위해 RSM (Response Surface Methodology)를 사용하였다. 독립변수 및 변수의 범위 결정을 위한 예비 실험의 결과로 계면활성제 함량(2~4%), 오일 함량(4~8%), 폴리올 함량(12~24%)을 독립변수로 설정하였다. 반응변수로는 제형의 입자 크기(particle size), 제타 전위(zeta potential), 현탁도(turbidity), 다분산지수(polydispersity index)를 측정하였다. 제조한 나노에멀젼을 FIB (Focused ion beam)로 측정한 결과, 구형의 입자들이 100~200 nm의 크기를 가지고 분포되어 있는 것을 확인하였다. 제조된 제형에 대해 30일 간 각 온도별($4^{\circ}C$, $25^{\circ}C$, $45^{\circ}C$) 안정성 평가를 진행하였고, 최적의 입자 크기, 현탁도, 다분산지수, 제타 전위를 고려한 최적의 처방은 계면활성제(2%), 오일(8%), 폴리올(24%)로 확인되었다. Polyethylene glycol (PEG) is widely used in cosmetics as a surfactant, detergent and emulsifier. During the manufacturing process, 1,4-dioxane, which is toxic to humans, can be produced as a by-product by dimerization of ethylene oxide. As consumers' interest in cosmetic ingredients has increased, the need for safe emulsion research without PEG ingredients in the personal care market has increased. With increasing consumer interest in cosmetic ingredients, the need for safer emulsion research without the PEG ingredient in the personal care market has increased. In this study, we aimed to develop and stabilize nanoemulsion formulation without PEG. Response Surface Methodology (RSM) was used to develop optimized nanoemulsion formulations. Surfactant content (2~4%), oil content (4~8%) and polyol content (12~24%) were set as independent variables as a result of preliminary experiments for determining independent variables and ranges. The particle size, zeta potential, turbidity, and polydispersity index of the formulation were measured as response variables. As a result of measurement of the prepared nanoemulsion by FIB (Focused ion beam), spherical particles were found to have a size distribution of 100 to 200 nm. The stability of each formulation was evaluated for 30 days at each temperature ($4^{\circ}C$, $25^{\circ}C$, and $45^{\circ}C$). The optimal formulation considering the optimum particle size, turbidity, polydispersity index and zeta potential was found to be surfactant (2%), oil (8%) and polyol (24%).

      • KCI등재

        착용자 환경 및 시간에 대한 마스크 미생물 오염 연구

        서혜경 ( Hyekyung Seo ),권영일 ( Young-il Kwon ),이성연 ( Seong Yeoun Lee ),강병갑 ( Byoung-kab Kang ),명준표 ( Jun-pyo Myong ),장호영 ( Hoyeong Jang ),김희주 ( Huiju Kim ),심수아 ( Sua Shim ),박성욱 ( Sungwook Park ) 한국산업보건학회 2021 한국산업보건학회지 Vol.31 No.4

        Objectives: This study aims to investigate differences in microbial contamination according to the duration and environment of mask wearing. Methods: Forty-five participants were recruited from workers in an offices, multi-purpose facilities, and a schools. After wearing of KF94 mask for two. four, and six hours, the microorganisms adsorbed on the outer and inner layers of the mask were inoculated on BAP(Blood Agar Plate), Chocolate agar, and SDA plates. The bacterial count (CFUs: colony-forming units) cultured in each plate was measured and analyzed for changes in filtration efficiency. Results: The microbial contamination of masks worn in classrooms, offices, and multi-purpose facilities showed a significant difference depending on the environment (p<0.000). The measured CFUs increased significantly according to the time wearing the mask. The difference between the inner and outer layers of the mask was also significant (p<0.05). However, there was no statistical difference in the filtration efficiency of the masks by duration time (p=0.515). Conclusions: Masks worn by workers in the offices, multi-purpose facilities, and schools showed an increase of microbial contamination with the amount of time wearing the mask. The results indicate that the masks used in daily life may have adverse health effects if they are worn for a long time or reused over several days without the realizing that the masks can be contaminated with biological hazards. Guidelines on the safe threshold time for mask use should be established through further research.

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