• Title/Summary/Keyword: in vitro metabolism

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Transfer of Isolated Mitochondria to Bovine Oocytes by Microinjection (미세주입을 이용한 난자로의 분리된 미토콘드리아 전달)

  • Baek, Sang-Ki;Byun, June-Ho;Kim, Bo Gyu;Lee, A ram;Cho, Young-Soo;Kim, Ik-Sung;Seo, Gang-Mi;Chung, Se-Kyo;Lee, Joon-Hee;Woo, Dong Kyun
    • Journal of Life Science
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    • v.27 no.12
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    • pp.1445-1451
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    • 2017
  • Mitochondria play a central role in energy generation by using electron transport coupled with oxidative phosphorylation. They also participate in other important cellular functions including metabolism, apoptosis, signaling, and reactive oxygen species production. Therefore, mitochondrial dysfunction is known to contribute to a variety of human diseases. Furthermore, there are various inherited diseases of energy metabolism due to mitochondrial DNA (mtDNA) mutations. Unfortunately, therapeutic options for these inherited mtDNA diseases are extremely limited. In this regard, mitochondrial replacement techniques are taking on increased importance in developing a clinical approach to inherited mtDNA diseases. In this study, green fluorescence protein (GFP)-tagged mitochondria were isolated by differential centrifugation from a mammalian cell line. Using microinjection technique, the isolated GFP-tagged mitochondria were then transferred to bovine oocytes that were triggered for early development. During the early developmental period from bovine oocytes to blastocysts, the transferred mitochondria were observed using fluorescent microscopy. The microinjected mitochondria were dispersed rapidly into the cytoplasm of oocytes and were passed down to subsequent cells of 2-cell, 4-cell, 8-cell, morula, and blastocyst stages. Together, these results demonstrate a successful in vitro transfer of isolated mitochondria to oocytes and provide a model for mitochondrial replacement implicated in inherited mtDNA diseases and animal cloning.

Production of porcine fibroblasts carrying a vector enforced specific expression of CD73 to endothelial cells (돼지 혈관내피세포 특이적 CD73 발현 벡터가 도입된 돼지 섬유아세포 생산)

  • Oh, Keon Bong;Lee, Haesun;Hwang, Seongsoo;Ock, Sun-A;Chung, Hak-Jae;Byun, Sung June;Lee, Poongyeon;Im, Gi-Sun
    • Journal of Embryo Transfer
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    • v.31 no.3
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    • pp.161-168
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    • 2016
  • Nucleotide metabolism in endothelium is variable between different species. Recent studies demonstrated that this variability could contribute coagulation dysfunction, even though organs of the alpha 1,3-galactosyltransferase gene knockout pig were transplanted into the primate. CD73 (ecto-5'-nucelotidase) is an enzyme at cell surface catalyzing the hydrolysis of adenosine triphosphate to adenosine, which plays role on a substance for anti-inflammatory and anti-coagulant. Thus, overexpression of CD73 in endothelial cells of the pig is considered as an approach to reduce coagulopathy. In this study, we constructed a human CD73 expression vector under control of porcine Icam2 promoter (pIcam2-hCD73), which is expressed specifically at endothelial cells, and of CMV promoter as a control (CMV-CD73). First, we transfected the CMV-CD73 vector into HEK293 cells, and then confirmed CD73 expression at cell surface by flow cytometry analysis. Next, we transfected the pIcma2-CD73 and CMV-CD73 vectors into primary porcine fibroblasts and endothelial cells. Consequence was that the pIcma2-CD73 vector was expressed only at the porcine endothelial cells, meaning that the pIcam2 promoter lead to endothelial cell-specific expression of CD73 in vitro. Finally, we nucleofected the pIcam2-hCD73 vector into passage 3 fibroblasts, and enforced hygromycin selection of 400mg/ml. We were able to obtain forty three colonies harboring pIcam2-CD73 to provide donor cells for transgenic cloned porcine production.

Effect of Tartary Buckwheat Sprout on Non-Alcoholic Fatty Liver Disease through Anti-Histone Acetyltransferase Activity (쓴메밀 새싹 추출물의 히스톤 아세틸화 효소 활성 저해에 의한 비알코올성 지방간 억제 효능)

  • Hwang, Jin-Taek;Nam, Tae Gyu;Chung, Min-Yu;Park, Jae Ho;Choi, Hyo-Kyoung
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.46 no.2
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    • pp.169-176
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    • 2017
  • Non-alcoholic fatty liver disease (NAFLD) is caused by chronic lipid accumulation due to dysregulation of lipid metabolism in the liver, and it is associated with various human diseases such as obesity, dyslipidemia, hypertension, and diabetes. Histone acetylation is a representative epigenetic mechanism regulated by histone acetyltransferases (HATs) and deacetylases. We observed that tartary buckwheat sprout (TBS) suppressed lipid accumulation in HepG2 cells through its anti-HAT activity. We showed that TBS was a novel HAT inhibitor with specificity for the major HAT enzyme p300. Importantly, TBS reduced acetylation of total and histone proteins, H3K9, H3K36, and H4K8, resulting in decreased transcriptional activities of sterol regulatory element-binding protein 1c, ATP citrate lyase, and fatty acid synthase. These results suggest that TBS inhibits the NAFLD transcription-modulating activity of lipogenesis-related genes through modification of histone acetylation.

Effect of Garlic Enzymatic Hydrolysates and Natural Color Resource Composites on Lipid Metabolism in Rat Fed a High Fat Diet (마늘 효소분해물과 천연색소 소재의 복합물이 고지방 식이성 흰쥐의 지질대사에 미치는 영향)

  • Hwang, Cho-Rong;Kang, Jae-Ran;Shim, Hye-Jin;Kang, Min-Jung;Shin, Jung-Hye
    • Journal of Life Science
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    • v.25 no.6
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    • pp.663-672
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    • 2015
  • The study was performed to investigate the effects of enzyme treated garlic (EG) and its natural resources composites on lipid levels in serum and liver of rats fed a high fat diet. Four different types of EG-composite extracts prepared: EG and EG + grape peel (EGG), EG + Persimmon (EGP) and EG + Catechu (EGC) by mixed 9.5:0.5, 9:1 and 8:2 (w/w) ratios, respectively. DPPH and ABTS radical scavenging activity in vitro, show the highest in EG + Catechu (EGC) composite by mixed 8:2 (w/w). EG and EG-composites extracts (8:2, w/w) were administered orally to SD-male rats at a concentration of 2.5 g/kg/day for 5 weeks. Total lipid and cholesterol contents in serum were significantly lower in EGC group than control group, and triglyceride content was the lowest in EGP group by 54.29 mg/dL. HDL-cholesterol contents were significantly higher in EGP and EGC groups. LDL-cholesterol content was lower in EG group than EG-composite groups, and VLDL cholesterol content was the lowest in EGP group. GOT, GPT and ALP activity was significantly lower in EGP group. Total lipid, cholesterol and triglyceride contents in liver were significantly lower in EGP and EGC group than control group. Antioxidant activity in serum was the highest in EGC groups by 50.86%, in liver was the highest in EGP groups. TBARS content in serum and liver was the lowest in EGP group. In these results, we suggest that EGP composites could have hypolipidemic and anti-obesity effects in rats fed a high fat diet.

The effects of a combination of calcium sulfate and platelet-derived growth factor on periodontal ligament cells in vitro (Calcium sulfate와 혈소판 유래성장인자의 혼합사용이 치주인대세포에 미치는 영향)

  • Kim, Jun-Seong;Choi, Seong-Ho;Yu, Yun-Jung;Chai, Jung-Kiu;Kim, Chong-Kwan;Cho, Kyoo-Sung
    • Journal of Periodontal and Implant Science
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    • v.27 no.4
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    • pp.785-804
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    • 1997
  • It was well known that calcium sulfate was biocompatible, resorbed rapidly in the body, had potential as a good barrier membrane. Platelet-derived growth factor(PDGF) was one of polypeptide growth factor that had been reported as a biological mediator which regulates activities of wound healing process including the cell proliferation, migration and metabolism. The purpose of this study was to evaluate the effects of a combination of calcium sulfate and PDGF on periodontal ligament cells in vitro to use as a regeneration promoting agent of periodontal tissue. Human periodontal ligament cells were prepared from the premolar tooth extracted for the orthodontic treatment. Cells were cultured in ${\alpha}-MEM$ contained with 20% FBS, at the $37^{\circ}C$, 100% of humidity, 5% $Co_2$ incubator. Cells were inoculated and cultured into 96 well culture plate with $1{\times}10^4cells/well$ of ${\alpha}-MEM$ for 1 day. After discarding the medium, those cells were cultured in ${\alpha}-MEM$ contained with 10% FBS alone(control group), in calcium sulfate(calcium sulfate group), in calcium sulfate treated with 15ng/ml of PDGF-BB(calcium sulfate+PDGF group), in ${\alpha}-MEM$ contained with 10% FBS treated with 15ng/ml of PDGF-BB(PDGF group) for 1, 2, 3 day respectively. And then each group was characterized by examining of the cell counting, MTT assay, collagen synthesis. The results were as follows. 1. In the analysis of cell proliferation by cell counting, both calcium sulfate group and calcium sulfate plus PDGF group showed no stastically significant difference compared to control group, but there was stastically significant difference between PDGF group and calcium sulfate group at 1, 2 day(P<0.05). 2. In the analysis of cell proliferation by MTT assay in calcium sulfate extracts, both calcium sulfate group and calcium sulfate plus PDGF group showed no stastically significant difference compared to control group, but there was stastically significant difference between PDGF group and calcium sulfate group at 2, 3 day, and between calcium sulfate plus PDGF group and calcium sulfate group at 2 day(P

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Effects of Ethanol Extracts from Red Pepper (Capsicum annuum L.) Seeds on Cholesterol Adsorption Capacity and UDP-Glucuronyl Transferase Activity (고추씨 에탄올 추출물이 콜레스테롤 흡착능 및 UDP-glucuronyl transferase 활성에 미치는 영향)

  • Song, Won-Young;Kim, Yu-Na;Chun, Sung-Sik;Ku, Kyung-Hyung;Choi, Jeong-Hwa
    • Journal of Life Science
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    • v.21 no.6
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    • pp.829-837
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    • 2011
  • The purpose of this study was to investigate the effects of ethanol extracts from red pepper seeds on cholesterol adsorption capacity and UDP-glucuronyl transferase activity. In vitro cholesterol adsorption capacity of 2%, 5% and 10% ethanol extracts from red pepper seed groups were significantly higher than that of the control group. Sprague-Dawley strain male rats weighing $100{\pm}10$ g were randomly assigned to one normal diet N group and experimental groups fed high fat and high cholesterol diet, which were divided into HF (0.0%), HEA (0.1%), HEB (0.2%), and HEC (0.5%) groups according to the amount of ethanol extracts from red pepper seeds added to their basal diet. The body weight gain in the HF group was higher than that in the N group, and those in the HEA, HEB and HEC groups were lower than that in the HF group However, there were no statistically significant differences among the all the groups. The hepatic triglyceride and total cholesterol contents in the N group was significantly lower than that in the HF group, and those in the HEA, HEB and HEC groups were lower than that in the HF group. The hepatic UDP-glucuronyl transferase activity in the N group was lower than that of the HF group and those in the HEA, HEB and HEC groups were lower than that of the HF group. The serum total cholesterol and triglyceride contents of the HF group were significantly higher than that of the N group, and those of the HEA, HEB and HEC groups were lower than that of the HF group. The serum HDL-cholesterol contents in all groups supplemented with the ethanol extracts from red pepper seeds were significantly higher than that of the HF group. The serum LDL-cholesterol contents of the HF group were significantly higher than that of the N group, and those of the HEA, HEB and HEC groups were lower than that of the HF group. The fecal total cholesterol contents were significantly higher in the HF group compared to the N group, and those of the HEB and HEC groups were lower than that of the HF group. The fecal triglyceride contents in the N group was higher than that of the HF group, and those of the HEA, HEB and HEC groups were lower than that of the HF group. This study suggested that the ethanol extracts from red pepper seeds have powerful health benefits by the UDP-glucuronyl transferase activity and lipid metabolism.

Biological Activities of Hominis Placenta Herbal Acupuncture prepared by Hydrochloric Acid Hydrolysis (염산 가수분해 추출법으로 조제된 자하거 약침액의 생리활성 효과)

  • Seo, Geun-Young;Lee, Sung-Won;Park, Sung -Joo;Kim, Sung-Chul;Sohn, In-Chul;Hwang, Sung-Yeoun;Ahn, Seong-Hun
    • Journal of Pharmacopuncture
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    • v.13 no.2
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    • pp.5-12
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    • 2010
  • Reactive Oxygen Species(ROS) are continuously produced at a high rate as a by-product of aerobic metabolism. Since tissue damage by free radical increases with age, the reactive oxygen species(ROS) such as hydrogen peroxide($H_2O_2$), nitric oxide(NO). Several lines of evidence provided that ROS appears to cause to develop aging-related various diseases such as cancer, arthritis, cardiovascular disease. In this study, we have conducted to investigate the biological activities of Hominis Placenta Herbal Acupuncture by measuring total polyphenol content, DPPH radical scavenging, ABTS radical scavenging, Superoxide dismutase(SOD)-like activity, Nitrite scavenging ability in vitro. The total polyphenol contents of Hominis Placenta Herbal Acupuncture was $24.6m{\ell}/m{\ell}$. Elctron donation ability on DPPH was 49.4%. The 2,2'-azinobis-3-ehtlbezothiazoline-6-sulfonic acid radical decolorization (ABTS) was 50.01%, similar 10 the DPPH free radical scavenging. The superoxide dismutase (SOD)-like activities of hominis placenta herbal acupuncture was 50.876%. The nitrite scavenging abilities at pH 1.5, pH 3.0, pH 6.0 were 52.8%, 29.4%, 15.4%, respectively; these abilities decreased as pH increased. We conclude that Hominis Placenta Herbal Acupuncture may be useful as potential sources of antioxidant.

Inhibition of Type II Diabetes in ob/ob Mice and Enhancement of Mitochodrial Biogenesis in C2C12 Myotubes by Korean Mistletoe Extract (한국산 겨우살이 추출물(KME)의 2형 당뇨 억제 및 근육세포 미토콘드리아 생성 증가 효과)

  • Jung, Hoe-Yune;Yoo, Yung Choon;Kim, Inbo;Sung, Nak Yun;Choi, Ok-Byung;Choi, Bo-Hwa;Kim, Jong-Bae
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.3
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    • pp.324-330
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    • 2015
  • In this study, the anti-diabetic activity of a cold water extract of Korean mistletoe (KME) was investigated in C57BL/6J Lep ob (ob/ob) mice. Oral administration of KME (50 or 100 mg/kg/d) significantly inhibited the level of blood glucose of ob/ob mice after 5 days from the beginning of KME treatment. And the anti-diabetic effect of KME was stabilized 10 days after oral administration, showing a substantial reduction of blood glucose levels by more than 20% as compared with control mice. The results of oral glucose tolerance test (OGTT) revealed that oral administration of KME gave rise to a remarkable improvement in overall glucose response. Oral administration of KME in ob/ob diabetic mice also significantly reduced blood total cholesterol (TCHO) and triglyceride (TG) levels compared with the diabetic control mice. Moreover, in an in vitro experiment using C2C12 myotubes, treatment of KME prominently increased glucose uptake. Interestingly, KME significantly increased the expression of peroxisome proliferator-activated receptor gamma coactivator 1-${\alpha}$ ($PGC-1{\alpha}$), a head regulator of mitochondrial biogenesis and oxidative metabolism, and $PGC-1{\alpha}$-associated genes such as glucose transporter type 4 (GLUT4), estrogen-related receptor-${\alpha}$ ($ERR-{\alpha}$), nuclear respiratory factor-1 (NRF-1), and mitochondrial transcription factor A (TmfA) in C2C12 cells. These results suggest that KME has potential as a novel therapeutic agent for diabetes, and its anti-diabetic activity may be related to the regulation of mitochondrial biogenesis.

Effects of the Oriental Medicinal Prescriptions, Jahyulyangeuntang and Yanghyuljangeunkeonbohwan, on Calcium Absorption in the Human Colon Carcinoma Cell Line (Caco-2 Cells) (자혈양근탕 및 양혈장근건보환이 인체 소장 상피세포주 (Caco-2) 모델에서 칼슘 흡수에 미치는 영향)

  • 박태선;임현정;황귀서
    • Journal of Nutrition and Health
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    • v.35 no.4
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    • pp.446-453
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    • 2002
  • Effects of the two oriental medicinal prescriptions, Jahyulyangeuntang (JH) and Yanghyuljangeunkeonbohwan (YH), on intestinal calcium absorption were examined in the human colon carcinoma tell line, Caco-2 cells. Intestinal calcium absorption was evaluated at the level of Ca uptake into the cells across the brush border membranes, as well as at the level of net Ca transport (implying the amount of intestinal Ca transported into the blood stream). When the Caco-2 cells were incubated for 4, 8, 16 and 24 days post seeding, the cells were differentiated continuously, and showed progressively increased activities of Ca uptake (1.13 $\pm$ 0.04, 1.19 $\pm$ 0.02, 1.94 $\pm$ 0.03, and 2.40 $\pm$ 0.12 nmole.mg protein$^{-1}$ .30 min$^{-1}$ , respectively). Pretreatment of confluent Caco-2 cells with 50 $\mu\textrm{g}$/ml of YH for 24 hours resulted in a 30% increase in Ca uptake (p < 0.07), while pretreatment of the cells with the same concentration of JH for 6 hours resulted in a 24% increase (p < 0.05) in Ca uptake, compared to the value for the control cells (2.34 $\pm$ 0.10 nmole.mg protein$^{-1}$ .30 min$^{-1}$ ). When the cells were pretreated with varied concentrations (5-100 $\mu\textrm{g}$/ml) of the test samples for 6 hours, maximal increases in Ca uptake were observed in the cells pretreated with 100 $\mu\textrm{g}$/ml of YH (a 23% increase), and 50 $\mu\textrm{g}$/ml of JH (a 28% increase), respectively : however, no influence was seen on the net Ca transport activity. These results show that pretreatment with JH or YH, the two oriental medicinal prescriptions commonly used for improvement of bone metabolism, could possibly increase Ca accumulation inside the cells. but not the intestinal Ca net transport in vitro.

Ginsenoside compound K protects against cerebral ischemia/ reperfusion injury via Mul1/Mfn2-mediated mitochondrial dynamics and bioenergy

  • Qingxia Huang;Jing Li;Jinjin Chen;Zepeng Zhang;Peng Xu;Hongyu Qi;Zhaoqiang Chen;Jiaqi Liu;Jing Lu;Mengqi Shi;Yibin Zhang;Ying Ma;Daqing Zhao;Xiangyan Li
    • Journal of Ginseng Research
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    • v.47 no.3
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    • pp.408-419
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    • 2023
  • Background: Ginsenoside compound K (CK), the main active metabolite in Panax ginseng, has shown good safety and bioavailability in clinical trials and exerts neuroprotective effects in cerebral ischemic stroke. However, its potential role in the prevention of cerebral ischemia/reperfusion (I/R) injury remains unclear. Our study aimed to investigate the molecular mechanism of ginsenoside CK against cerebral I/R injury. Methods: We used a combination of in vitro and in vivo models, including oxygen and glucose deprivation/reperfusion induced PC12 cell model and middle cerebral artery occlusion/reperfusion induced rat model, to mimic I/R injury. Intracellular oxygen consumption and extracellular acidification rate were analyzed by Seahorse multifunctional energy metabolism system; ATP production was detected by luciferase method. The number and size of mitochondria were analyzed by transmission electron microscopy and MitoTracker probe combined with confocal laser microscopy. The potential mechanisms of ginsenoside CK on mitochondrial dynamics and bioenergy were evaluated by RNA interference, pharmacological antagonism combined with co-immunoprecipitation analysis and phenotypic analysis. Results: Ginsenoside CK pretreatment could attenuate mitochondrial translocation of DRP1, mitophagy, mitochondrial apoptosis, and neuronal bioenergy imbalance against cerebral I/R injury in both in vitro and in vivo models. Our data also confirmed that ginsenoside CK administration could reduce the binding affinity of Mul1 and Mfn2 to inhibit the ubiquitination and degradation of Mfn2, thereby elevating the protein level of Mfn2 in cerebral I/R injury. Conclusion: These data provide evidence that ginsenoside CK may be a promising therapeutic agent against cerebral I/R injury via Mul1/Mfn2 mediated mitochondrial dynamics and bioenergy.