• Title/Summary/Keyword: $Tego^{(R)}$ care 450

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Transdermal Delivery of Quercetin Using Elastic Liposomes: Preparation, Characterization and In Vitro Skin Permeation Study (탄성 리포좀을 사용한 쿼세틴의 경피 전달: 제조, 특성 그리고 In Vitro 피부 투과 연구)

  • Park, Soo Nam;Lim, Myoung Sun;Park, Min A;Kwon, Soon Sik;Han, Seat Byeol
    • Polymer(Korea)
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    • v.36 no.6
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    • pp.705-711
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    • 2012
  • In this study, the elastic liposome consisted of egg phospholipids and edge activator ($Tego^{(R)}$ care 450) was prepared in order to supplement the defect of the conventional liposome. We prepared elastic liposome containing quercetin, known as natural antioxidant, and evaluated the vesicles size, elasticity, loading efficiency, stability, and in vitro skin permeation. The mean diameter of quercetin loaded elastic liposome formulations ranged between 208.2~303.4 nm and loading efficiency was observed 64.1~87.5%. The highest loading efficiency (87.5%) and deformability (28.3) were observed at the optimal ratio of 90 : 10 (egg phospholipids : $Tego^{(R)}$ care 450) among 0.1% quercetin loaded elastic liposome formulations. The elastic liposome formulation was selected for further transdermal permeation study. The elastic liposome ($129.9{\mu}g/cm^2$) exhibited more skin permeability than general liposome ($114.8{\mu}g/cm^2$) and 1,3-butylene glycol ($75.1{\mu}g/cm^2$) solution. This results suggest that the elastic liposome formulation using $Tego^{(R)}$ care 450 as a major edge activator could be useful for the delivery of active ingredient through the skin transdermal.

Physical Characterizations and In Vitro Skin Permeation of Elastic Liposomes for Transdermal Delivery of Polygonum aviculare L. Extract (마디풀 추출물의 경피 전달을 위한 탄성 리포좀의 물리적 특성 및 In Vitro 피부 투과 연구)

  • Han, Saet Byeol;Kwon, Soon Sik;Jeong, Yoo Min;Kong, Bong Ju;Yu, Eun Ryeong;Park, Soo Nam
    • Polymer(Korea)
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    • v.38 no.6
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    • pp.694-701
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    • 2014
  • In this study, Polygomun aviculare L. (P. aviculare L.) extract loaded elastic liposomes (ELPs) were investigated to enhance the transdermal delivery of P. aviculare L. extract composed of various flavonoids. ELPs were composed of egg phospholipids (PC) and edge activator ($Tego^{(R)}$ care 450) and the physical properties and in vitro permeation studies of ELPs were performed. Particle size ranged from 148.1 to 262.2 nm and deformability index was recorded as 11.5~25.4. Loading efficiency was from 53.1 to 66.3%. In vitro skin permeation studies using Franz diffusion cell demonstrated that ELP-4 having ratio of 85:15 for PC to $Tego^{(R)}$ care 450 exhibited the higher skin permeability than ELP-1, the general liposome without $Tego^{(R)}$ care 450. It was visually seen by fluorescence image restoration microscopy. The findings suggest that ELP-4 selected as the optimal formulation could be used as useful formulation for transdermal delivery of the extract.

Elastic Liposome Formulation for Transdermal Delivery of Rutin (루틴의 피부 흡수 증진을 위한 탄성 리포좀 제형 연구)

  • Lim, Myoung-Sun;Han, Seat-Byeol;Kwon, Soon-Sik;Park, Min-A;Park, Soo-Nam
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.38 no.2
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    • pp.147-154
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    • 2012
  • In this study, we prepared elastic liposome containing rutin, known as antioxidants, and evaluated the physical characterization and enhanced skin permeation effect. The elastic liposome was prepared using the different ratios of egg phospholipids and $Tego^{(R)}$ care 450. The mean diameter of rutin loaded elastic liposomes formulations ranged between 205.7 ~ 298.0 nm and deforability 20.9 ~ 42.5, The loading efficiency was observed to be 52.0 ~ 71.0 %. The highest loading efficiency (71.0 %) and deformability (42.5) were observed at the optimal ratio of 85 : 15 (egg phospholipids : $Tego^{(R)}$ care 450) in the 0.1 % rutin loaded elastic liposome formulations. The elastic liposome formulation was selected for further transdermal permeation study. The elastic liposome(129.9 ${\mu}g/cm^2$) exhibited a significantly higher skin permeation compared with general liposome (98.0 ${\mu}g/cm^2$) and 1,3-butylene glycol (76.3 ${\mu}g/cm^2$) solution. These results suggest that the elastic liposome formulation using $Tego^{(R)}$ care 450 as a major edge activator could be useful for the delivery of active ingredient through the skin barrier.

Cellular Protective Effect and Liposome Formulation for Enhanced Transdermal Delivery of Persicaria hydropiper L. Extract (여뀌 추출물의 세포 보호 작용과 피부 흡수 증진을 위한 리포좀 제형 연구)

  • Kim, Jung-Eun;Lee, Hye-Jin;Lim, Myoung-Sun;Park, Min-A;Park, Soo-Nam
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.38 no.1
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    • pp.15-31
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    • 2012
  • In our previous studies, the antioxidant, anti-aging, and antibacterial activities of Persicaria hydropipier L. extract, and the moisturizing effect of cream containing P. hydropipier extract were investigated. In this study, the cellular protective effects of P. hydropipier extract and isoquercitrin, main component from P. hydropipier in $^1O_2$-induced photohemolysis of human erythrocytes and ultraviolet B (UVB)-exposed HaCaT cells were investigated. Liposomes such as ethosome and elastic liposome for enhanced transdermal delivery were prepared. Size, loading efficiency, stability, and cumulative permeated amounts of ethosomes and elastic liposomes were evaluated. P. hydropipier extract and isoquercitrin showed more prominent cellular protective effect than (+)-${\alpha}$-tocopherol, known as lipid antioxidant at $5{\mu}g/mL$. P. hydropipier extract didn't show any characteristics of cytotoxicity at $50{\mu}g/mL$. When HaCaT cells were exposed to a single large dose ($400mJ/cm^2$) of UVB, the extract protected the cells against UVB radiation in a concentration dependent manner ($12.5{\sim}50{\mu}g/mL$). Cell viability of HaCaT cells exposed to UVB $400mJ/cm^2$ was increased by treatment with P. hydropipier extract or isoquercitrin from 36 % (cell viability of positve control groups) to 90 % (cell viability of P. hydropipier extract or isoquercitrin- treated groups). The size of 0.04 % P. hydropiper extract loaded ethosomes was 173.0 nm and the loading efficiency was 55.58 %. 0.04 % P. hydropiper extract loaded ethosomes were stable with as monodisperse particles for 1 week. The ethosome exhibited more skin permeability than general liposome and ethanol solution. The optimal ratio of lipid to surfactant ($Tego^{(R)}$ care 450) of 0.1 % P. hydropiper extract loaded elastic liposomes was observed to be 95 : 5. Vesicle size of 0.1 % P. hydropiper extract loaded elastic liposome was 176.5 nm. The deformability index of the elastic liposome was 16.4. The loading efficiency was 68.8 %. The elastic liposome containing P. hydropiper extract showed more skin permeability than liposome without surfactant ($Tego^{(R)}$ care 450).