• 제목/요약/키워드: $Micropig^{(R)}$

검색결과 4건 처리시간 0.024초

Studies on Steroid Hormone Concentration during the Estrous Cycle in the MediKinetics Micropig®

  • Seong, Hun-Ki;Seo, Kyeong-Seok;Kim, Jeong-Su;Her, Chang-Gi;Kang, Myung-Hwa;Sim, Bo-Woong;Yoon, Jong-Taek;Min, Kwan-Sik
    • Reproductive and Developmental Biology
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    • 제41권1호
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    • pp.1-6
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    • 2017
  • In all mammalian species, progesterone is essential to both the preparation for, and maintenance of, pregnancy. The $20{\alpha}$-hydroxysteroid dehydrogenase ($20{\alpha}$-HSD) enzyme predominantly converts progesterone into its biologically inactive form $20{\alpha}$-hydroxyprogesterone, thereby regulating its activity. Thus, to directly assess sexual maturation in the MediKinetics $micropig^{(R)}$, we analyzed the concentration of the steroid hormones progesterone and estradiol during the estrous cycle. Our results show that the progesterone level exhibited by the analyzed $micorpig^{(R)}$ was low at the beginning of the estrous cycle, and then abruptly increased to $30.32{\pm}10.0ng/mL$ and $46.37{\pm}11.0ng/mL$ by days 9 and 11 of the cycle, respectively. It reached the highest level $55.87{\pm}3.5ng/mL$ on day 13 of the estrous cycle, before decreasing to $46.58{\pm}13.1ng/mL$ and $10.0{\pm}7.6ng/mL$ by days 15 and 17 of the cycle, respectively. In contrast, the estradiol level was shown to be highest ($27.13{\pm}11.2ng/mL$) at the initiation of the estrous cycle, after which point it decreased to $13.29{\pm}6.5ng/mL$ and $10.94{\pm}5.9ng/mL$ by days 4 and 5 of the estrous cycle, respectively. By day 17 of the estrous cycle, the estradiol level decreased to $4.13{\pm}7.6ng/mL$. We anticipate that these results will provide useful information to enable the study of human ovulation and reproductive physiology using the MediKinetics $micoripig^{(R)}$ as a model system. We recommend further investigation to elucidate the functional mechanisms underlying the regulation of sexual maturation in the MediKinetics $micropig^{(R)}$.

In Vivo and Ex Vivo Skin Reactions after Multiple Pulses of 1,064-nm, Microlens Array-type, Picosecond Laser Treatment

  • Lyu, Herin;Park, Jinyoung;Lee, Hee Chul;Lee, Sang Ju;Kim, Young Koo;Cho, Sung Bin
    • Medical Lasers
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    • 제9권2호
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    • pp.142-149
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    • 2020
  • Background and Objectives A picosecond-domain laser treatment using a microlens array (MLA) or a diffractive optical element elicits therapeutic micro-injury zones in the skin. This study examined the patterns of tissue reactions after delivering multiple pulses of 1,064-nm, MLA-type, picosecond neodymium:yttrium-aluminum-garnet laser treatment. Materials and Methods Multiple pulses of picosecond laser treatment were delivered to ex vivo human or brown micropig skin and analyzed histopathologically. A high-speed cinematographic study was performed to visualize the multiple pulses of picosecond laser energy-induced skin reactions in in vivo human skin. Results In the ex vivo human skin, a picosecond laser treatment at a fluence of 0.3 J/cm2 over 100 non-stacking passes generated multiple lesions of thermally-initiated laser-induced optical breakdown (TI-LIOB) in the epidermis and dermis. In the ex vivo micropig skin, stacking pulses of 20, 40, 60, 80, and 100 at a fluence of 0.3 J/cm2 generated distinct round to oval zones of tissue coagulation in the mid to lower dermis. High-speed cinematography captured various patterns of twinkling, micro-spot reactions on the skin surface over 100 stacked pulses of a picosecond laser treatment. Conclusion Multiple pulses of 1,064-nm, MLA-type, picosecond laser treatment elicit marked TI-LIOB reactions in the epidermis and areas of round to oval thermal coagulation in the mid to deep dermis.

히알루론산의 각질 유동성 향상을 통한 주름 개선 펩타이드 피부 흡수 촉진 (Hyaluronic Acid Enhances the Dermal Delivery of Anti-wrinkle Peptide via Increase of Stratum Corneum Fluidity)

  • 김윤선;김대현;김유미;박선규;이천구;강내규
    • 대한화장품학회지
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    • 제44권4호
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    • pp.447-453
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    • 2018
  • 아세틸 헥사펩타이드 8 (AH8)은 보톡스 메커니즘을 응용한 주름 개선 펩타이드 소재로, 보톡스의 타겟인 synatosomal-associated protein 25 (SNAP25) N말단 서열을 모방하여 개발되었다. 주름 개선 효과가 보고되고 있지만 큰 분자량과 친수성 성질에 의하여 피부 흡수는 잘 되지 않는다는 문제가 있다. 따라서 피부보습 성분 중에서 AH8의 피부 흡수를 증가시켜 줄 수 있는 물질을 탐색하였는데, 히알루론산(HA)이 AH8의 피부 흡수를 증가시켰다. 형광물질로 표지한 AH8만 $Micropig^{(R)}$ skin 에 발라주면 대부분 각질을 투과하지 못하고 각질층에 존재하였다. 반면, HA를 함께 도포한 경우에는 각질층을 투과하여 표피, 진피로 흡수된 AH8가 증가하는 것을 형광 이미지 분석을 통해 확인했다. 특히 5 kDa 저분자량 HA가 500 kDa, 2000 kDa HA보다 피부 흡수를 더 많이 증가시켰다. HA가 피부 각질층에 미치는 영향을 푸리에변환 적외 분광법(Fourier-transform infrared spectroscopy, FTIR)으로 분석해보니, 고분자량 HA는 각질 수분 함량을 증가시키고, 저분자량 HA는 지질층의 유동성을 증가시키는 경향성이 있었다. 따라서 HA는 AH8의 피부 흡수를 증가시켜 주름 개선 효과를 향상시켜 줄 수 있을 것으로 기대된다.

돼지모델에서 상처의 모양과 부위에 따른 상처수축의 특성 (Characteristics of Wound Contraction according to the Shape and Antomical Regions of the Wound in Porcine Model)

  • 추호준;손대구;권선영;김준형;한기환
    • Archives of Plastic Surgery
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    • 제38권5호
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    • pp.576-584
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    • 2011
  • Purpose: The shape and location, the amount of the wound and the characteristics of the remaining tissues are known to influence wound contraction. The previous studies using small animals have not been an appropriate model because the wound healing mechanisms and skin structures are different from those of the human. The purpose of this study is to evaluate wound contraction according to the shape and location of the wound using a $Micropig^{(R)}$. Methods: Four $Micropigs^{(R)}$ (Medikinetics, Pyeongtaek, Korea) that were 10 months of age weighed 25 kg were used. Full thickness skin defects were made by clearing all the tissues above the fascial layer in the shape of square, a regular triangle and a circle of 9 $cm^2$ each on the back around the spine. Eight wounds were created on the back of each pig, 50 mm apart from each other. The randomly chosen wound shapes included 11 squares, 11 regular triangles, and 10 circles. Wound dressing was done every other day with polyurethane foam. The wound size was measured using a Visitrak $Digital^{(R)}$ (Smith & Nephew, Hull, UK) on every other day after surgery from day 2 to day 28. A biopsy was performed on day 3, and 1, 2, 3 and 4 weeks to investigate the degree of acute and chronic inflammation, the number of microvesssel and myofibroblast density using H & E stain and immunohistochemistry. The wound contraction rate was calculated to figure out the differences among each of the shapes and the locations. Results: The ultimate shape of the circle wound was oval, and that of the regular triangle and square were stellate. The maximum contraction rate was obtained on 8 to 10 days for all the shapes, which corresponds with the immunohistochemical finding that myofibroblast increases in the earlier 2 weeks whereas it decreases in the later 2 weeks. Epithelialization was seen in the wound margin on day 7 and afterwards. The final wound contraction rates were highest for the regular triangle shapes; however, there were no statistically significant differences. The wound contraction rates by locations showed statistically significant differences. The wound in the cephalic area presented more contractions than that of the wounds in the caudal area. Conclusion: The location of a wound is more important factor than the wound shape in wound contraction.