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활성화된 단핵구 및 대식세포의 항원제시기능에 대한 Kaempferitrin의 조절 효과
김병훈,조동하,조재열,Kim, Byung-Hun,Cho, Dong-Ha,Cho, Jae-Youl 대한약학회 2007 약학회지 Vol.51 No.6
Kaempferitrin, isolated from Kenaf (Hibiscus cannabinus), was examined to evaluate its modulatory effects on antigen-presenting cell functions of macrophages/monocytes such as phagocytosis of foreign materials, up-regulation of costimulatory molecules (CD40, CD80 and CD86), adhesion molecule activation, and antigen processing and presentation. Kaempferitrin strongly blocked up-regulation of CD40, CD80 and CD86, but not pattern recognition receptor (PRR) (e.g., TLR2). It also suppressed functional activation of CD29 (${\beta}1$-integrins), as assessed by cell-cell adhesion assay, required for T cell-antigen-presenting cell (APC) interaction. Furthermore, this compound did not block a simple activation of CD29, as assessed by cell-fibronectin adhesion assay. However, the compound did not diminish phagocytic uptake, an initial step for antigen processing, and ROS generation in RAW264.7 cells. In particular, to understand molecular mechanism of kaempferitrin-mediated inhibition, the regulatory role of LPS-induced signaling events was examined using immunoblotting analysis. Interestingly, this compound dose dependently suppressed the phosphorylation of $I{\kappa}B{\alpha}$, Src, Akt and Syk, demonstrating that it can negatively modulate the activation of these signaling enzymes. Therefore, our data suggested that kaempferitrin may be involved in regulating APC function-relevant immune responses of macrophages and monocytes by regulating intracellular signaling.
생열귀나무 종자 발아에 있어서 개갑처리, 지배렐린, 발아온도의 효과
이화영,허권,조동하,임정대,유창연,Lee, Hwa-Young,Heo, Kwon,Cho, Dong-Ha,Im, Jung-Dae,Yoo, Chang-Yeon 한국자원식물학회 2000 한국자원식물학회지 Vol.13 No.3
생열귀나무의 번식에 관한 연구로 개갑처리와 GA$_3$의 처리에 따른 발아율 향상에 대한 실험 결과는 다음과 같다. 1. 생열귀나무의 과실의 길이는 13cm, 폭은 0.9cm 였으며, 과실내의 종자수는 89개였다. 종자의 길이는 4.9mm, 폭은 2.87mm였으며 천립중은 7.76g이었다. 자연매장 보다는 15$^{\circ}C$ incubator에서 층적저장한 것이 개갑율 10.5%로 높았고 또한 4$^{\circ}C$ 저온저장후 개갑율도 46.6%로 가장 양호하였다. 2.개갑된 종자의 발아율이 비개갑된 종자에서는 보다 우세하였으며 최적 발아온도는 15$^{\circ}C$임을 알수 있었다. 개갑된 종자에서의 GA3의 효과는 농도처리에 따라 커다란 효과를 보이지 않았으며 개갑된 종자와 비개갑된 종자 모두 200ppm 이상으로 처리하면 오히려 발아율이 감소하는 경향을 나타냈다. 3. GA$_3$의 처리의 효과가 발아적온이나 개갑종류에 따라 뚜렷하지 않은 반면 비성숙된 종자의 상태(비개갑종자)와 발아 불량조건(4$^{\circ}C$, 비개갑종자)에서는 뚜렷이 나타났다. This study was conducted to investigate the suitable conditions for seed germination of Rosa davurica PALL. In the characteristics of the fruit and seed of Rosa davurica, fruit length and width was 1.3cm and 0.9cm , respectively, and seed number was eighty-nine. Artificial and low temperature storage at 4$^{\circ}C$ increased the rate of split achene pericarp until 46.6% and storage at 15$^{\circ}C$ incubator decreased the rate of split achene pericarp (10.5%). The rate of seed germination of split achene pericarp in control at 15$^{\circ}C$ was 90% and of non-split achene in GA$_3$100ppm at 15$^{\circ}C$ was 36.8%. Average germination day of split achene pericarp seeds in GA$_3$150ppm at 2$0^{\circ}C$ was 4.2 days and non-split achene pericarp in GA$_3$100ppm at 2$0^{\circ}C$ was 7.3 days. Seed germination was not different between various concentrations of GA$_3$ treatments in split achene pericarp seeds but the rate of germination was more reduced in high concentration of 200ppm. Only the treatments of GA$_3$ was increased germination rate at 4$^{\circ}C$ and immature seed of Rosa davurica.
Antioxdant Activity of Hibiscus cannabinus L. Leaves in Different Growth Time
김성무,엄석현,박형재,유창연,조동하,Jin, Cheng-Wu,Eom, Seok-Hyun,Park, Hyoung-Jae,Ghimeray, Amal Kumar,Yu, Chang-Yeon,Cho, Dong-Ha The Korean Society of Medicinal Crop Science 2009 韓國藥用作物學會誌 Vol.17 No.1
The results on the useful functional compounds of kenaf (Hibiscus cannabinus L.) leaves cultivated in reclaimed lands and the biological activity effects of extracts were as follows. On 98 days after sowing (DAS) Tainung-2 showed the highest total chlorophyll content (1.68 mg/g), and on 141 DAS Dowling showed higher chlorophyll content (1.50 mg/g) than the other two did. In all cultivars the total chlorophyll content was higher on 141 DAS than on 98 DAS. Total polyphenol and total flavonoid contents were the highest in Tainung-2 (30.50 mg/g and 57.03 mg/g, respectively), and total polyphenol and total flavonoid contents (30.50 mg/g and 57.03 mg/g, respectively) were the highest in 30% ethanol extraction. Ascorbic acid contents were higher on 141 DAS than on 98 DAS in three cultivars. SOD activities of kenaf leaf extract were generally over 90%. DPPH radical scavenging activity of Tainung-2 was higher than others.
등숙기간중 온도와 벼 이삭 지경간 곡립의 형태 형성차이
이정일,신진철,김제규,김이훈,조동하,Lee, Jeong-Il,Shin, Jin-Chul,Kim, Je-Kyu,Kim, E-Hun,Cho, Dong-Ha 한국작물학회 1995 한국작물학회지 Vol.40 No.5
To clarify the effect of temperature during ripening on grain quality, rice plant which was grown under normal natural conditions untill heading stage was subjected various temperature regimes during grain filling stage. Three varieties, Odaebyeo, Hwaseongbyeo and Dongjinbyeo were used. Grains on primary and secondary-rachis branches were harvested seperately and measured specific gravity, grain size and weight. The optimum daily temperature for grain filling of rice during ripening period was about 22$^{\circ}C$ and grain filling under alternating temperature(26/18$^{\circ}C$, day /night) was better than constant temperature (22 /22$^{\circ}C$) based on 1, 000-grain weight and yield. Grain size based on volume per grain was smallest under the constant temperature of 22 /22$^{\circ}C$. The size of secondary-rachis branches was smaller than primary-rachis branch. The difference in size between primary and secondary-rachis branches was biggest in Hwaseongbyeo, followed by Odaebyeo and Dongjinbyeo. The temperature regimes treated did not influence the grain size difference between branches so much. The 1000-grain weight was lighter under high temperature than low temperature in Odaebyeo, but reversed tendency was observed in Dongjinbyeo of secondary rachis-branches.
허권,이채곤,장민영,조동하,유창연,Heo, Kwon,Lee, Chae-Gon,Jang, Min-Young,Cho, Dong-Ha,Yoo, Chang-Yeon 한국자원식물학회 2000 한국자원식물학회지 Vol.13 No.3
금낭화의 적정 재배환경을 구명하기 위하여 금낭화의 자생지 식생 및 생육환경을 조사한 결과, 금낭화가 자생하고 있는 곳은 해발 630~690m의 북동사면 전석지 지역이었고, 경사도는 25$^{\circ}$~ 33$^{\circ}$ 범위이었다. 군락내 광도는 평균 14,0001ux 였으며, 생육초기에는 높았고 후기로 갈수록 광도는 낮아지는 경향이었다. 방형구당 금낭화 개체수는 평균 30개체 였으며, 전체 방형구에서 출현한 종수는 52종이었다. 이들 중 목본식 물은 신갈나무, 생강나무, 난티 잎개암 나무, 층층나무, 초본식물은 산괴불주머니, 개별꽃, 맑은대쑥, 관중, 천남성, 대사초, 홀아비꽃대가 우점하였다. 금낭화 자생지의 평균 토양 수분은 약 32.6%이었고, 토양산도는 5.1~6.0 범위이었으며, 유기물 함량은 1.70~2.20%, 인산함량은 평균 14mg/kg이었다. 치환성 양이온 용량은 칼륨 0.55me/100g, 칼슘 15.2me/100g 그리고 마그네슘이 3.3me/100g이었고, 전기전도도는 0.50~0.76dS/m 범위였다. 생육기인 5월과 6월의 평균기온은 각각 14.2$^{\circ}C$와 19.4$^{\circ}C$이었다. 조사결과 금낭화는 차광조건이 요구되고, pH 5.5 정도의 수분이 충분히 유지 되는 토양조건과 평균 14$^{\circ}C$~19$^{\circ}C$ 정도의 기온에서 좋은 생육을 하는 것으로 판단되었다. This study was carried out to obtain the optimum cultivation conditions of wild ornamental plant resources, Dicentra spectabilis L. The altitude of the habitat was ranged from 630m to 690m in Mt. Gujeol. Most of the habitat faced toward the northeast aspect and the gradient was ranged from 25 to 33 degrees. The light intensity of Dicentra community was 14,000lux on the average, and it was tendency to decrease by foliation of other woody plants. The appearance number of Dicentra per quadrat was 30 individuals on the average, and total appearance species in all quadrat surveyed was 52 taxa. Among them, Quercus mongolica, Lindera obtusiloba, Corylus heterophylla, Cornus controversa, woody plants, Corydalis speciosa, Pseudostellaria heterophylla, Artemisia keiskeana, Dryopteris crassirhizoma, Arisaema amurense var. serratum, Carex siroumensis, and Chloranthus japonicus, herbaceous plants, were showed as dominant species. Soil acidity in the habitat was 5.15 to 5.96, and average content of soil moisture was 32.6%. The contents of average organic matter, $P_2O_5$, K, Ca, and Mg were 1.99%, 14mg/kg, 0.55me/100g, 15.2me/100g, and 3.3me/100g, respectively. Electron conductivity was ranged from 0.50 to 0.76dS/m. Also, the average air temperature of May and June was 14.2$^{\circ}C$ and 19.4$^{\circ}C$, respectively.