• Title/Summary/Keyword: hairless

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Differential Gene Expression after treatment with 2,3,7,8-tetrachlorodibenzo-p-dioxin in Hairless Mice Skin

  • Kang, Mi-Kyung;Kang, Ho-Il;Ryeom, Tai-Kyung;Eom, Mi-Ok;Park, Mi-Sun;Jee, Seung-Wan;Kim, Ok-Hee
    • Proceedings of the Korea Society of Environmental Toocicology Conference
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    • 2003.10a
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    • pp.172-172
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    • 2003
  • 2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD), a prototype of many halogenated aromatic hydrocarbons, is a ubiquitous, persistent environmental contaminant and displays high toxicity in animals and has been implicated in human carcinogenesis. Although the mechanism of carcinogenesis by TCDD is unclear, it is considered to be a non-genotoxic and tumor promoter. In this study, we investigated the tumor promotion effect of TCDD on the two-stage skin chemical carcinogenesis using hairless mouse (SKH1). We induced papillomas after treatment with N-methyl -N'-nitro-N-nitorsoguanidine (MNNG) as a initiator and TCDD as a promoter for 30 weeks. We found that the incidence or multiplicity of papillomas and hyperplastic nodules was maximally induced at MNNG-TCDD group compare to control, MNNG, and TCDD alone. These results suggesting that TCDD can acts as a potent promoter in the hairless mouse skin. In addition, we used cDNA microarray to detect the differential gene expression in normal, tumor surrounding, and tumor regions induced in hairless mouse skin by MNNG plus TCDD protocol. We found that 49 and 42 genes out of 5,592 genes associated with protein synthesis, cell organization, lipid transport and oxidative stress in tumor and surrounding regions were up- or down- regulated two fold or more, respectively. We are currently investigating how these genes play a role in TCDD-mediated chemical carcinogenesis.

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Prevention of Photoaging and Wrinkle Formation in Hairless Mice by Korean Red Gnseng and Fagopyrum Esculentum Extract Mixture (Hairless mouse에서 홍삼 . 교맥 복합물의 피부주름 생성 예방 효과)

  • Kim, Dae-Sung;Jeon, Byoung-Kook;Choi, Mi-Eun;Mun, Yeun-Ja;Park, Seok-Don;Woo, Won-Hong
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.23 no.3
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    • pp.695-699
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    • 2009
  • UV irradiation causes skin-aging involving coarse wrinkles, thickening, dyspigmentation, and rough skin surface. This study was carried out to develop health & functional food by using Korean red ginsneg and Fagopyrum esculentum extract mixture (RGFE) for prevention of skin wrinkles. The RGFE-treated group showed the more effective collagenase inhibition rate than the red ginseng (RG)-treated group. To investigate photo protective effects of RGFE on UV-induced damaged skin, SKH hairless male mice were orally administerd RGFE and regional treatment and irradiated with UV for up to 8 weeks. In RGFE-treated group, better skin, and less wrinkle formation were observed compared with UV group. Epidermal thickness of hairless mouse was significantly decreased in RGFE, RG, and Fagopyrum esculentum (FE) groups compared with UV group. These results demonstrate RGFE have photo-protective effects on UV-damaged hairless mouse skin.

LC/MS/MS Method for the Determination of Lidocaine in Hairless Rat Plasma and Pharmacokinetic Applications of Lidocaine Patch (LC/MS/MS를 이용한 혈장 중 리도카인의 정량 및 리도카인 패치제의 약물동태학적 평가)

  • Hwang, Ji-Yeon;Kim, Chul-Jun;Shin, Young-Hee
    • YAKHAK HOEJI
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    • v.56 no.3
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    • pp.158-163
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    • 2012
  • Lidocaine has been studied for many chronic pain conditions, including postherpetic neuralgia (PHN) and recently it has also been increasingly used in transdermal drug delivery systems. In this study, pharmacokinetics of a lidocaine patch was studied in four hairless male rats. The plasma concentration was determined by a validated LC/MS/MS method after applying a $3{\times}2cm^2$ (30mg) patch for 12 hours. From the plasma lidocaine concentration vs time curves, $AUC_{0-20h}$, Cmax, and Tmax of lidocaine patch were $2,926.32{\pm}335.28ng{\cdot}h/ml$, $256.86{\pm}29.63ng/ml$, and $6.00{\pm}2.31h$, respectively.

The Effects of Bombyx mori Silk Protein for the Expression of Epithelial Growth factor in the Wound Healing Process of the Hairless Mouse (Hairless mouse의 피부상처 후 실크단백질 처리가 표피성장인자의 발현에 미치는 영향)

  • Han, Sang-Mi;Lee, Kwang-Gill;Yeo, Joo-Bong;Kweon, Hae-Yong;Woo, Soon-Ok;Baek, Ha-Ju;Park, Kwan-Kyu
    • Journal of Sericultural and Entomological Science
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    • v.48 no.2
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    • pp.56-60
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    • 2006
  • This study was performed to investigate the effect of silk protein (BM-1) treatment on epidermal growth factor (EGF) expression in the wound healing process by excision on the hairless mouse. Significant wound healing activity was observed BM-1 treated group. In BM-1 treated groups ($100{\sim}116 ug/day$), epithelialization of the incision wound was laster with a high rate of wound contraction. In expression of EGF and EGF mRNA, the lesion of BM-1 treated group made EGF to more induce significantly than control lesion. These data suggest that silk protein (BM-1) treatment have wound healing effect by excision on the hairless mouse.

Effects of Vehicles and Enhancers on the Permeation Properties of Tizanidine Hydrochloride through Strat-MMTM Artificial Membrane and Hairless Mouse Skin (용제와 투과촉진제가 Strat-MTM 인공막 및 무모마우스 피부를 통한 티자니딘염산염의 투과 특성에 미치는 영향)

  • Park, Myung Shin;Chun, In Koo
    • YAKHAK HOEJI
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    • v.60 no.1
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    • pp.36-45
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    • 2016
  • This study was aimed to enhance the percutaneous absorption of tizanidine hydrochloride (TZ) across Strat-M$^{TM}$ artificial membrane and excised hairless mouse skin using various vehicles and chemical permeation enhancers. Solubility studies were performed using hydrophilic and lipophilic vehicles. To initially evaluate vehicle effects on skin permeation, Strat-M$^{TM}$ membrane was adopted using Franz-type diffusion cells loaded with 0.4 mg donor dose. Effects of fatty acids on the permeation of TZ from PG and PGMC were compared, and the effects of various hydrophilic vehicles in the presence of linoleic acid were studied using excised hairless mouse skin specimens. The mean solubility (mg/ml) of TZ in hydrophilic vehicles was higher: water > PG > DMSO > ethanol > PEG 200 > NMP > PEG 300 > PEG 400 > DGME, and solubilities in lipophilic vehicles such as PGMC, PGMC, IPM, Captex 200 and Captex 300 were much less than 1.0 mg/ml. Permeation rates through StratTM membrane from pure vehicles were in the rank order: PGMC ${\geq}$ LBF > DMSO ${\geq}$ NMP ${\geq}$ PGML ${\geq}$ PG ${\geq}$ PEG 200 ${\geq}$ DGME ${\geq}$ EtOH. However, permeation rates of TZ through hairless mouse skin from pure vehicles were very low, although PG showed the highest flux ($1.66{\pm}0.28{\mu}g/cm^2{\cdot}hr$). Therefore, PG was selected in further studies. Addition of enhancers (3 v/v%) into PG markedly increased the flux (${\mu}g/cm^2{\cdot}hr$): oleyl alcohol ($14.9{\pm}3.1$) ${\geq}$ oleic acid ($14.5{\pm}1.6$) ${\geq}$ linoleic acid ($13.7{\pm}1.3$) > capric acid ($4.4{\pm}0.6$) > caprylic acid ($2.1{\pm}0.4$). Among hydrophilic vehicles with linoleic acid, PG and DMSO revealed relatively higher permeation for TZ. Increase of donor dose in PG resulted in dose-dependent permeation fluxes. These results suggest that permeation properties of TZ from nonaqueous solutions are markedly different between Strat-$M^{TM}$ membrane and excised hairless mouse skin, and transdermal delivery of TZ would be feasible with a combination of PG and enhancers.

Effect of Vehicles and Penetration Enhancers onthe Percutaneous Absorption of Ketorolac Tromethamine across Hairless Mouse Skin

  • Cho, Young-Ah;Gwak, Hye-Sun
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.234.1-234.1
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    • 2003
  • The effects of vehicles and penetration enhancers on the in vitro permeation of ketorolac tromethamine (KT) across excised hairless mouse skins were investigated. Among pure vehicles examined, propylene glycol monolaurate (PGML) showed the highest permeation flux, which was 94.3${\pm}$17.3 mg/cm$^2$/hr. Even though propylene glycol monocaprylate (PGMC) alone did not show high permeation rate, the skin permeability of DT was markedly increased by the addition of diethylene glycol monoethyl ether (DGME); the enhancement factors were 19.0 and 17.1 at 20 and 40% of DGME, respectively. (omitted)

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Effect of pomegranate concentration solution on photoaging (석류농축액의 광노화에 의한 주름 개선 효과)

  • Kang, Su Jin;Choi, Beom Rak;Kim, Seung Hee;Yi, Hae Yeon;Park, Hye Rim;Song, Chang Hyun;Park, Soo Jin;Ku, Sae Kwang;Lee, Young Joon
    • Journal of Society of Preventive Korean Medicine
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    • v.19 no.1
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    • pp.109-116
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    • 2015
  • Objective : Solar ultraviolet (UV) light can cause photoaging of human skin. Many researchers have focused on effective prevention to mitigate the aging process. This study was aimed to investigate anti-wrinkle effects of pomegranate concentration solution (PCS) using photoaged hairless mouse model. Method : To clarify the protective effect of PCS against UVB-induced photo-damage, water capacity was measured with transepidermal water loss (TEWL) in SKH-1 hairless mice. In addition, image of skin replicas was analyzed. Results : Our results showed that the PCS treatment protects skin against UVB-induced photoaging, based on the parameters including moisture capacity and TEWL. According to visual assessment of skin replica, application of 1 ml/kg PCS inhibited UV-induced wrinkle formation in mice skin as compared to the vehicle-applied control mice. Conclusion : Taken together, these results indicated that PCS could improve skin wrinkle formation induced by UVB irradiation in SHK-1 hairless mice. PCS could be applied as an anti-wrinkle agent.

Simultaneous Determination of Prostaglandin E1 and Prostaglandin E1 Ethyl Ester in Hairless Mouse Skin Homogenate by High-Performance Liquid Chromatography

  • Choi, Han-Gon;Kim, Ji-Hyun;Li, Dong-Xun;Piao, Ming-Guan;Kwon, Tae-Hyub;Woo, Jong-Soo;Choi, Young-Wook;Yoo, Bang-Kyu;Yong, Chul-Soon
    • Journal of Pharmaceutical Investigation
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    • v.35 no.5
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    • pp.375-381
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    • 2005
  • A rapid and specific high-performance liquid chromatographic method was developed and validated for the simultaneous determination of prostaglandin $E_{1}\;(PGE_{1})$ and prostaglandin $E_{1}$ ethyl ester $(PGE_{1}-EE)$ in hairless mouse skin homogenate. The sample treatment procedure involved deproteination and precipitation by acetonitrile. $PGE_{1}$ and $PGE_{1}-EE$ in supernatant were separated in a reversed-phase C18 column without being interfered by other components present in hairless mouse skin homogenate. 9-Anthracenecarboxylic acid was used as an internal standard. The retention times of $PGE_{1}$, 9-anthracenecarboxylic acid and $PGE_{1}-EE$ were, 4.5, 9.5 and 18.0 min, respectively. The assay showed linearity from 1 to $40\;{\mu}g/ml$ for both $PGE_{1}$ and $PGE_{1}-EE$. Precision expressed as RSD ranged from 2.3 to 14.1 % for $PGE_{1}$ and 1.6 to 11.0% for $PGE_{1}-EE$. Accuracy ranged from 100.5 to 119.6 % for $PGE_{1}$ and from 98.0 to 103.7% for $PGE_{1}-EE$. This method was employed successfully to follow the time course of concentrations of $PGE_{1}$ and $PGE_{1}-EE$ in hairless mouse skin homogenate for stability study.

Iontophoretic Transdermal Delivery of Alendronate in Hairless Mouse Skin (In-vitro에서 전기이온영동법을 이용한 알렌드로네이트의 경피약물전달)

  • Jyoung, Jy-Young;Shim, Bae-Sun;Hwang, In-Sik;Cho, Dong-Eon
    • Polymer(Korea)
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    • v.33 no.3
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    • pp.237-242
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    • 2009
  • This study examined the transdermal delivery of alendronate across hairless mouse skin. The effects of iontophoresis, perforation with a microneedle, and a combination of a microneedle pretreatment and iontophoresis were evaluated in vitro test. Hydrogel patches were polymerized by UN polymerization to supply a hydrogel patch to the iontophoretic transdermal drug delivery system. The alendronate content in the iontophoretic delivery patch was $5.0\;mg/cm^3$. The amounts of alendronate that permeated across the hairless mouse skin when current densities of 0.25 and $0.50\;mA/cm^2$ were supplied to the iontophoretic alendronate patch were $0.80{\pm}0.03$ and $2.00{\pm}0.02{\mu}g$, respectively. After pretreatment with a microneedle, the amounts of alendronate that permeated across the hairless mouse skin increased to $70.65{\pm}0.37$ and $162.23{\pm}0.40{\mu}g$, respectively. The biocompatibility of the iontophoretic alendronate patch was examined according to the international standardization organization 10993.

Photoprotective effects of topical ginseng leaf extract using Ultraflo L against UVB-induced skin damage in hairless mice

  • Hong, Yang Hee;Lee, Hyun-Sun;Jung, Eun Young;Han, Sung-Hee;Park, Yooheon;Suh, Hyung Joo
    • Journal of Ginseng Research
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    • v.41 no.4
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    • pp.456-462
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    • 2017
  • Background: Abnormal activation of matrix metalloproteinases (MMPs) plays an important role in UV-induced wrinkle formation, which is a major dermatological problem. This formation occurs due to the degeneration of the extracellular matrix (ECM). In this study, we investigated the cutaneous photoprotective effects of Ultraflo L treated ginseng leaf (UTGL) in hairless mice. Methods: SKH-1 hairless mice (6 weeks of age) were randomly divided into four groups (8 mice/group). UTGL formulation was applied topically to the skin of the mice for 10 weeks. The normal control group received nonvehicle and was not irradiated with UVB. The UV control (UVB) group received nonvehicle and was exposed to gradient-UVB irradiation. The groups (GA) receiving topical application of UTGL formulation were subjected to gradient-UVB irradiation on $0.5mg/cm^2$ [GA-low (GA-L)] and $1.0mg/cm^2$ [(GA-high (GA-H)] of dorsal skin area, respectively. Results: We found that topical treatment with UTGL attenuated UVB-induced epidermal thickness and impairment of skin barrier function. Additionally, UTGL suppressed the expression of MMP-2, -3, and -13 induced by UVB irradiation. Our results show that topical application of UTGL protects the skin against UVB-induced damage in hairless mice and suggest that UTGL can act as a potential agent for preventing and/or treating UVB-induced photoaging. Conclusion: UTGL possesses sunscreen properties and may exhibit photochemoprotective activities inside the skin of mice. Therefore, UTGL could be used as a potential therapeutic agent to protect the skin against UVB-induced photoaging.