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        육종용 추출물의 미백과 항노화 효과

        양원태,김경숙,권용삼,김두현,김도훈,Yang, Won Tae,Kim, Kyoung Sook,Kwon, Yong Sham,Kim, Du Hyun,Kim, Doh Hoon 한국식물생명공학회 2016 식물생명공학회지 Vol.43 No.4

        본 연구는 육종용을 이용한 기능성 화장품 소재 개발을 목적으로 육종용 추출물의 피부 미백 및 항노화 효능 검정을 위해 수행되었다. 육종용 추출물의 세포 생존율은 B16F10 melanoma 세포를 이용하여 MTT assay를 수행하여 측정한 결과, 육종용 추출물 4 mg/ml 농도에서 90% 이상의 세포 생존율을 보였다. 육종용 추출물을 처리한 B16F10 melanoma 세포를 이용하여 RT-PCR로 유전자 발현을 검정한 결과 tyrosinase, collagenase 및 elastase 유전자의 발현을 육종용 추출물 4 mg/ml 농도에서 각각 80.9%, 37.6%, 70.9% 억제 하였다. 육종용 추출물의 DPPH 라디칼 소거능 측정을 이용한 항산화 활성은 2 ~ 10 mg/ml 농도에서 70.6% ~ 82.6%로 높게 나타났다. 육종용 추출물의 미백과 항노화 효과를 검정하기 위하여 육종용 추출물을 2, 4, 6, 8 및 10 mg/ml 농도로 처리하여 확인하였다. 육종용 추출물의 tyrosinase 저해활성은 66.8% ~ 78.5%, elastase 저해활성은 67.6% ~ 79.3%, collagenase 저해활성은 72.3% ~ 83.6%로 각각 나타났으며, hyaluronidase 저해활성은 65.8% ~ 69.2%로 나타났다. 따라서 육종용은 피부 미백 및 노화방지를 위한 기능성 화장품 소재로 우수한 것으로 평가되며, 세포생존율과 각종 효능을 고려할 때, 육종용 추출물 4 mg/ml 농도가 적정농도로 판단된다. This study assessed the whitening and anti-aging effects of the Cistanche deserticola extract, to develop a cosmetic substance. The cell viability of the Cistanche deserticola extract was evaluated in B16F10 melanoma cells by the MTT (3-(4,5-dimethylthaiazol-2-yl)-2,5-diphenyl tetrazolium bromide) assay. The cell viability of the extract was determined to be 90% at 4mg/ml concentration. Furthermore, the tyrosinase, collagenase, and elastase mRNA expression level were measured by RT-PCR, using the Cistanche deserticola extract treated B16F10 melanoma cells. At 4 mg/ml concentration, mRNA expression level of tyrosinase, collagenase, and elastase was dramatically decreased to 80.9%, 37.6%, and 70.9%, respectively. The antioxidant activity of the Cistanche deserticola extract was determined by DPPH free radical scavenging. The DPPH free radical scavenging capacities ranged from 70.6% to 82.6%, when evaluated from 2 mg/ml to 10mg/ml concentrations. The effects of whitening and anti-aging of the Cistanche deserticola extracts were examined at 2, 4, 6, 8, and 10 mg/ml concentration. Tyrosinase activities were inhibited from 66.8% to 78.5%, elastase activities were inhibited from 67.6% to 79.3%, collagenase activities were inhibited from 72.3% to 83.6%, and hyaluronidase activities were inhibited from 65.8% to 69.2%, respectively. These data suggest that the Cistanche deserticola extract is effective in whitening and anti-aging; therefore, it is considered to be a functional cosmetic material in cosmetic products.

      • KCI등재

        육종용 추출물의 미백과 항노화 효과

        양원태,김경숙,권용삼,김두현,김도훈 한국식물생명공학회 2016 JOURNAL OF PLANT BIOTECHNOLOGY Vol.43 No.4

        This study assessed the whitening and anti-aging effects of the Cistanche deserticola extract, to develop a cosmetic substance. The cell viability of the Cistanche deserticola extract was evaluated in B16F10 melanoma cells by the MTT (3-(4,5-dimethylthaiazol-2-yl)-2,5-diphenyl tetrazolium bromide) assay. The cell viability of the extract was determined to be 90% at 4mg/ml concentration. Furthermore, the tyrosinase, collagenase, and elastase mRNA expression level were measured by RT-PCR, using the Cistanche deserticola extract treated B16F10 melanoma cells. At 4 mg/ml concentration, mRNA expression level of tyrosinase, collagenase, and elastase was dramatically decreased to 80.9%, 37.6%, and 70.9%, respectively. The antioxidant activity of the Cistanche deserticola extract was determined by DPPH free radical scavenging. The DPPH free radical scavenging capacities ranged from 70.6% to 82.6%, when evaluated from 2 mg/ml to 10mg/ml concentrations. The effects of whitening and anti-aging of the Cistanche deserticola extracts were examined at 2, 4, 6, 8, and 10 mg/ml concentration. Tyrosinase activities were inhibited from 66.8% to 78.5%, elastase activities were inhibited from 67.6% to 79.3%, collagenase activities were inhibited from 72.3% to 83.6%, and hyaluronidase activities were inhibited from 65.8% to 69.2%, respectively. These data suggest that the Cistanche deserticola extract is effective in whitening and anti-aging; therefore, it is considered to be a functional cosmetic material in cosmetic products. 본 연구는 육종용을 이용한 기능성 화장품 소재 개발을목적으로 육종용 추출물의 피부 미백 및 항노화 효능 검정을 위해 수행되었다. 육종용 추출물의 세포 생존율은B16F10 melanoma 세포를 이용하여 MTT assay를 수행하여 측정한 결과, 육종용 추출물 4 mg/ml 농도에서 90% 이상의 세포 생존율을 보였다. 육종용 추출물을 처리한B16F10 melanoma 세포를 이용하여 RT-PCR로 유전자 발현을 검정한 결과 tyrosinase, collagenase 및 elastase 유전자의 발현을 육종용 추출물 4 mg/ml 농도에서 각각 80.9%, 37.6%, 70.9% 억제 하였다. 육종용 추출물의 DPPH 라디칼 소거능 측정을 이용한 항산화 활성은 2 ~ 10 mg/ml 농도에서 70.6% ~ 82.6%로 높게 나타났다. 육종용 추출물의미백과 항노화 효과를 검정하기 위하여 육종용 추출물을2, 4, 6, 8 및 10 mg/ml 농도로 처리하여 확인하였다. 육종용 추출물의 tyrosinase 저해활성은 66.8% ~ 78.5%, elastase 저해활성은 67.6% ~ 79.3%, collagenase 저해활성은 72.3% ~ 83.6%로 각각 나타났으며, hyaluronidase 저해활성은 65.8% ~ 69.2%로 나타났다. 따라서 육종용은 피부 미백 및 노화방지를 위한 기능성 화장품 소재로 우수한 것으로 평가되며, 세포생존율과 각종 효능을 고려할 때, 육종용 추출물4 mg/ml 농도가 적정농도로 판단된다.

      • KCI등재
      • KCI등재

        The Burholderia pyrrocinia Purple Acid Phosphatase Pap9 Mediates Phosphate Acquisition in Plants

        Xiaoli Zhu,이승엽,양원태,이선우,백동원,Ming Shun Li,김도훈 한국식물학회 2019 Journal of Plant Biology Vol.62 No.5

        Increasing the expression level of purple acidphosphatases (PAPs), which hydrolyze organic phosphate toinorganic phosphate (Pi), is an important response to Pi starvationin plants. PAPs are widely distributed in eukaryotes likemammals and plants but distributed in limited microorganisms. A PAP-like protein named Pap9 from Burkholderia pyrrociniaCH-67 was isolated. The enzyme had optimal activity atatypical pH of 8.5 and temperature of 85°C. When pap9 wasoverexpressed in Arabidopsis thaliana, the APase activity inthe transgenic plants was about 15% to 40% higher underacidic conditions and had an approximately four-fold increaseunder alkaline conditions compared with wild type. Overexpression of pap9 in plants enhanced APase activityunder Pi-deficient conditions more than under Pi-sufficientconditions. In-gel assays revealed that Pap9 exists as amonomer in transgenic plants. Root surface-associatedAPase activity in transgenic plants increased dramaticallyduring acidic and Pi-deficient conditions. These resultsindicated that bacterial Pap9 in transgenic plants wassecreted onto the root surface and released into the rhizosphere. The transgenic plants have significantly enhanced biomassthat have the potential for use in biotechnologicalapplications.

      • KCI등재

        Dietary Exposure to Transgenic Rice Expressing the Spider Silk Protein Fibroin Reduces Blood Glucose Levels in Diabetic Mice: The Potential Role of Insulin Receptor Substrate-1 Phosphorylation in Adipocytes

        박지은,정연재,박준범,김혜영,유영현,이광식,양원태,김도훈,김종민 한국발생생물학회 2019 발생과 생식 Vol.23 No.3

        Type 2 diabetes mellitus (T2DM) is characterized by insulin resistance (IR). T2DM is correlated with obesity and most T2DM medications have been developed for enhancing insulin sensitivity. Silk protein fibroin (SPF) from spiders has been suggested as an attractive biomaterial for medical purposes. We generated transgenic rice (TR) expressing SPF and fed it to diabetic BKS.Cg-m+/+Leprdb mice to monitor the changes in blood glucose levels and adipose tissue proteins associated with energy metabolism and insulin signaling. In the present study, the adipocyte size in abdominal fat in TR-SPF-fed mice was remarkably smaller than that of the control. Whereas the adenosine monophosphate-activated protein kinase (AMPK)-activated protein kinase and insulin receptor substrate 1 (IRS1) protein levels were increased in abdominal adipose tissues after TR-SPF feeding, levels of six-transmembrane protein of prostate 2 (STAMP2) proteins decreased. Phosphorylation of AMPK at threonine 172 and IRS1 at serine 307 and tyrosine 632 were both increased in adipose tissues from TR-SPFfed mice. Increased expression and phosphorylation of IRS1 at both serine 307 and tyrosine 632 in adipose tissues indicated that adipocytes obtained from abdominal fat in TR-SPF-fed mice were more susceptible to insulin signaling than that of the control. STAMP2 protein levels decreased in adipose tissues from TR-SPF-fed mice, indicating that STAMP2 proteins were reducing adipocytes that were undergoing lipolysis. Taken together, this study showed that TR-SPF was effective in reducing blood glucose levels in diabetic mice and that concurrent lipolysis in abdominal adipocytes was associated with alterations of AMPK, IRS1, and STAMP2. Increased IRS1 expression and its phosphorylation by TR-SFP were considered to be particularly important in the induction of lipolysis in adipocytes, as well as in reducing blood glucose levels in this animal model.

      • KCI등재

        Protocorm-like body를 이용한 호접란 형질전환 연구

        허연재(Yeon-Jae Hur),김은영(Eun-Young Kim),양원태(Won-Tae Yang),이영병(Young-Byoung Lee),이재헌(Jae-Hun Lee),정영수(Young-Soo Jung),남재성(Jae-Sung Nam),윤대진(Dae-Jin Yun),이기환(Ki-Hwan Yi),김도훈(Doh-Ho Kim) 한국생명과학회 2009 생명과학회지 Vol.19 No.3

        본 연구는 Agrobacterium을 이용한 효율적인 호접란 형질전환 시스템의 확립을 위해 실시하였고, 호접란 PLB의 대량증식을 위한 배지 조성은 하이포넥스 기본 배지에 활성탄 1g/l, 티아민 0.1 mg/l 및 sucrose 30 g/l을 배지에 첨가한 경우 PLB가 안정적으로 증식되었다. 계대 배양시 PLB 절단 방법이 PLB의 생존과 증식에 큰 영향을 미치며, PLB 위쪽으로부터 1/3 부위를 절단하여 계대 배양한 경우 90% 이상의 가장 높은 증식률을 나타났다. Agrobacterium 접종 시 균이 묻어 있는 침으로 PLB를 찔러 상처를 내는 dipping 방법을 이용하여 형질전환 효율을 높일 수 있었다. Agrobacterium 배양액의 흡광도 값이 0.8일 때 형질전환 효율이 가장 높았고, 형질전환된 PLB의 선발은 1 ㎎/l 정도의 저농도 hygromycin을 함유한 배지에 계대배양 하는 것이 효율적이었다. 호접란 형질전환체를 먼저 GUS assay를 통하여 선발하였고, 선발된 개체로부터 genomic DNA를 추출하여 GUS 특이적 primer와 probe로 PCR과 Southern blot 분석을 수행하고 유전자의 도입여부를 조사한 결과 GUS 염색된 형질전환체에서 정상적으로 GUS 유전자가 도입된 것을 확인할 수 있었다. Agrobacterium tumefaciens-mediated transformation procedure for the phalaenopsis orchid, established by using Protocormlike bodies (PLBs), was aimed at the introduction of target genes into individuals with divergent genetic backgrounds. PLBs obtained from the axillary bud of a peduncle were maintained on a hyponex medium supplemented with 1 g/l of activated charcoal, 30 g/l of sucrose and 0.1 mg/l thiamine. The multiplication rate of PLBs was about 90% in case of subculture PLBs to be cut transversely into 1/3 part from top position. The PLBs were inoculated with Agrobacterium strain EHA105 harboring both β-glucuronidase (GUS) and hygromycin-resistant genes for 20 minutes after dipping treatment. Transformation efficiency was the highest with a Agrobacterium culture medium and dipping treatment of O.D. 0.8. Newly induced PLBs were put on selection medium containing 1 ㎎/l hygromycin for 2 months. Hygromycin-resistant phalaenopsis plants that regenerated after the selection culture of PLBs showed histochemical blue staining due to GUS. Transgene integration of the hygromycin-resistant plants was confirmed by PCR and Southern blot using GUS specific primers and probe.

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