• 제목/요약/키워드: Mean Transduction

검색결과 20건 처리시간 0.028초

Inhibitory Effect of D-chiro-inositol on Both Growth and Recurrence of Breast Tumor from MDA-MB-231 Cancer Cells

  • Kim, Yoon-seob;Park, Ji-sung;Kim, Minji;Hwang, Bang Yeon;Lee, Chong-kil;Song, Sukgil
    • Natural Product Sciences
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    • 제23권1호
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    • pp.35-39
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    • 2017
  • D-chiro-inositol (DCI) is a secondary messenger in insulin signal transduction. It is produced in vivo from myo-inositol via action of epimerase. In this study, we evaluated antitumor activity of DCI against human breast cancer both in vitro and in vivo. In order to determine the inhibitory effects of DCI on growth of human breast cancer cells (MDA-MB-231), two different assessment methods were implemented: MTT assay and mouse xenograft assay. MTT assay demonstrated downturn in cell proliferation by DCI treatment (1, 5, 10, 20 and 40 mM) groups by 18.3% (p < 0.05), 17.2% (p < 0.05), 17.5% (p < 0.05), 18.4% (p < 0.05), and 24.9% (p < 0.01), respectively. Also, inhibition of tumor growth was investigated in mouse xenograft model. DCI was administered orally at the dose of 500 mg/kg and 1000 mg/kg body weight to treat nude mouse for 45 consecutive days. On the 45th day, tumor growth of DCI (500 mg/kg and 1000 mg/kg) groups was suppressed by 22.1% and 67.6% as mean tumor volumes were $9313.8{\pm}474.1mm^3$ and $3879.1{\pm}1044.1mm^3$, respectively. Furthermore, breast cancer stem cell (CSC) phenotype ($CD44^+/C24^-$) was measured using flow cytometry. On the 46th day, CSC ratios of DCI (500 mg/kg) and co-treatment with doxorubicin (4 mg/kg) and DCI (500 mg/kg) group decreased by 24.7% and 53.9% (p < 0.01), respectively. Finally, from tumor recurrence assay, delay of 5 days in the co-treatment group compared to doxorubicin (4 mg/kg) alone group was observed. Based on these findings, we propose that DCI holds potential as an anti-cancer drug for treatment of breast cancer.

Styrene 노출에 반응을 보이는 혈청 단백질에 대한 프로테오믹스 분석 (Proteomic analysis of serum proteins responsive to styrene exposure)

  • 김기웅;허경화;원용림;정진욱;김태균;박인정
    • 한국산업보건학회지
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    • 제17권3호
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    • pp.235-244
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    • 2007
  • By comparing the proteins from the workers exposed to styrene with the ones from controls, it may be possible to identify proteins that play a role in the occurrence and progress of occupational disease and thus to study the molecular mechanisms of occupational disease. In order to find the biomarkers for assessing the styrene effects early, before clinical symptoms develop and to understand the mechanisms of adverse health effects, we surveyed 134 employees, among whom 52 workers(30 male and 22 female) were chronically exposed to styrene in 10 glass-reinforced plastic boat manufacturing factories in Korea and 82 controls had never been occupationally exposed to hazardous chemicals including styrene. The age and drinking habits and serum biochemistry such as total protein, BUN and serum creatinine in both groups were significantly different. Exposed workers were divided into three groups according to exposure levels of styrene(G1, below 1/2 TLV; G2, 1/2 TLV to TLV; G3, above TLV). The mean concentration of airborne styrene in G1 group was $10.93{\pm}11.33ppm$, and those of urinary mandelic acid(MA) and phenylglyoxylic acid(PGA) were $0.17{\pm}0.21$ and $0.13{\pm}0.11g/g$ creatinine, respectively. The mean concentration of airborne styrene in G2 and G3 groups were $47.54{\pm}22.43$ and $65.33{\pm}33.47ppm$, respectively, and levels of urinary metabolites such as MA and PGA increased considerably as expected with the increase in exposure level of styrene. The airborne styrene concentration were significantly correlated to the urinary concentration of MA(r=0.784, p=0.000) and PGA(r=0.626, p<0.001). In the 2D electrophoresis, the concentration of five proteins including complement C3 precursor, alpha-1-antitrypsin(AAT), vitamin D binding protein precursor(DBP), alpha-1-B-glycoprotein(A1BG) and inter alpha trypsin inhibitor(ITI) heavy chain-related protein were significantly altered in workers exposed to styrene compared with controls. While expression of complement C3 precursor and AAT increased by exposure to styrene, expression of DBP, A1BG and ITI heavy chain-related protein decreased. These results suggest that the exposure of styrene might affects levels of plasma proteinase, carriers of endogenous substances and immune system. In particular, increasing of AAT with the increase in exposure level of styrene can explain the tissue damage and inflammation by the imbalance of proteinase/antiproteinase and decrease of DBP, A1BG and ITI heavy chain-related protein in workers exposed to styrene is associated with dysfunction and/or declination in immune system and signal transduction

Modulatory Effect of the Tyrosine Kinase and Tyrosine Phosphatase on the ACh-activated $K^{+}$ Channel in Adult Rat Atrial Cells

  • Chang, Kyeong-Jae;Rhie, Sang-Ho;Heo, Ilo;Kim, Yang-Mi;Haan, Jae-Hee;Hong, Seong-Geun
    • The Korean Journal of Physiology
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    • 제30권2호
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    • pp.209-218
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    • 1996
  • Acetylcholine (ACh) activates the inwardly rectifying muscarinic $K^{+}$ channel in rat atrial cells via pertussis toxin (PTX)-sensitive G-protein ($G_k$) coupled with the muscarinic receptor (mAChR). Although this $K^{+}\;(K_{ACh})$ channel function has reported to be modulated by the phosphorylation process, a kinase and phosphatase involved in these processes are still unclear. Since either PKA or PKC was not effective on this ATP-modulation, the present study examined the possible involvement of the protein tyrosine kinase (PTK) and protein tyrosine phosphatase (PTP) in the function of the $K_{ACh}$ Channel. In the inside-out (I/O) patch preparation excised from the adult rat atrial cell, when activated by 10 ${\mu}M$ ACh in the pipette and 100 ${\mu}M$ GTP in the bath, the mean open time (${\tau}_{o}$) and the channel activity ($K_{ACh}$) was 1.13 ms (n=5) and 0.19 (n=6), respectively. Following the application of 1 mM ATP into the bath, ${\tau}_{o}$ increased by 34% (1.54 ms, n=5) and $K_{ACh}$ by 66% (0.28, n=6). Channel function elevated by ATP was lasted after washout of ATP. However, this ATP-induced increase in the $K_{ACh}$ channel function did not occur in pretreated cells with genistein ($50{\sim}100 {\mu}M$), a selective PTK inhibitor, but occurred in pretreated cells with equimolar daidzein, a negative control of the genistein. On the contrary, PTP which acts on tyrosine residue conversely reversed both ATP-induced increased ${\tau}_{o}$ by 32% (1.20 ms, n=3) and $K_{ACh}$ by 41% (0.15, n=3), respectively. Taken together, these results suggest that $K_{ACh}$ channel may, at least partly, be regulated by the tyrosyl phosphorylation, although it is unclear where this process exerts on the muscarinic signal transduction pathway comprising the mAChR-$G_{k}$-the $K_{ACh}$ channel.

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Effects of Chromium on Energy Metabolism in Lambs Fed with Different Dietary Protein Levels

  • Yan, Xiaogang;Zhang, Fangyu;Li, Dong;Zhu, Xiaoping;Jia, Zhihai
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권2호
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    • pp.205-212
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    • 2010
  • The effects of chromium (Cr), dietary crude protein (CP) level, and potential interactions of these two factors were investigated in term of energy metabolism in lambs. Forty-eight 9-week-old weaned lambs (Dorper${\times}$Small-tail Han sheep, male, mean initial body weight = 22.96 kg${\pm}$2.60 kg) were used in a 2${\times}$3 factorial arrangement of supplemental Cr (0 ${\mu}g$/kg, 400 $\mu{g}$/kg or 800 ${\mu}g$/kg from chromium yeast) and protein levels (low protein: 157 g/d to 171 g/d for each animal, or high protein: 189 g/d to 209 g/d for each animal). Blood samples were collected at the beginning and end of the feeding trial. The lambs were then sacrificed and tissue samples were frozen for further analysis. Chromium at 400 ${\mu}g$/kg decreased fasting insulin level and the ratio of plasma insulin to glucagon, but these differences were not statistically significant; in contrast, chromium at 800 ${\mu}g$/kg increased the ratio significantly (p<0.05). Protein at the high level increased plasma tumor necrosis factor $\alpha$ (TNF-$\alpha$) level (p = 0.060). Liver glycogen content was increased significantly by Cr (p<0.05), which also increased liver glucose-6-phosphatase (G-6-Pase) and adipose hormone-sensitive lipase (HSL) activity. At 400 ${\mu}g$/kg, Cr increased muscle hexokinase (HK) activity. High protein significantly increased G-6-Pase activities in both the liver (p<0.05) and the kidney (p<0.05), but significantly decreased fatty acid synthase (FAS) activity in subcutaneous adipose tissue (p<0.05). For HSL activity in adipose tissue, a Cr${\times}$CP interaction (p<0.05) was observed. Overall, Cr improved energy metabolism, primarily by promoting the glycolytic rate and lipolytic processes, and these regulations were implemented mainly through the modulation by Cr of the insulin signal transduction system. High protein improved gluconeogenesis in both liver and kidney. The interaction of Cr${\times}$CP indicated that 400 $\mu{g}$/kg Cr could reduce energy consumption in situations where energy was being conserved, but could improve energy utilization when metabolic rate was increased.

Background $K^+$ channel currents in WEHI-231 cells, immature B lymphocytes

  • Nam, Joo-Hyun;Woo, Ji-Eun;Kim, Tae-Jin;Uhm, Dae-Yong;Kim, Sung-Joon
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 2003년도 정기총회 및 학술발표회
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    • pp.39-39
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    • 2003
  • In our previous study, WEHI-231, an immature B cell line, showed intractable increase in [C $a^{2+}$]$_{c}$ after the B-cell receptor (BCR) ligation and treatment with 2-aminoethoxydiphenylborate (2-APB), which was never observed in Bal-17, a mature B cell line (Nam et al., 2003, FEBS Lett). In this study, a whole cell voltage clamp study revealed a specific expression of a novel type of $K^{+}$ current, namely voltage-independent background-type $K^{+}$ channels (IK-bg), in WEHI-231 cells. IK-bg was dramatically increase by the application of 2-APB (50 $\square$M), which induced severe hyperpolarization of WEHI-231 from -45 ㎷ to -90 ㎷, When dialyzed with $Mg^{2+}$ and ATP-free pipette solution, a spontaneous development of IK-bg and membrane hyperpolarization were observed. IK-bg was insensitive to classical $K^{+}$ channel blockers (TEA, glibenclamide, $Ba^{2+}$(1 mM)), whereas blocked by quinine and quinidine in a voltage-dependent manner ($IC_{50}$/=6~9 $\square$M at +60㎷). Phorbol myrstate, a PKC activator, decreased the amplitude of IK-bg. Extracellular acidification (pH 6.5) slightly inhibited IK-bg. Arachidonic acid, riluzole, or hyposmotic stress could not affect the IK-bg after the full development by the intracellular dialysis with Mg-ATP-free solution. In a cell-attached mode of single channel recording from WEHI231, we found two types of voltage-independent $K^{+}$ channels with unitary conductance of 300 pS and 120 pS, respectively. Both channels showed very short mean open times and their open probabilities were increase by the application of 2-APB. In Bal-17 cells, no such $K^{+}$ current was observed in 50 cells tested. In summary, WEHI-231 immature B cells express background $K^{+}$ channels. The pharmacological properties and the large unitary conductance suggest that novel types of two-pore domain $K^{+}$ channels (2-P-K channels) might be expressed in WEHI-231, which may provide an intriguing targets of signal transduction in the immature B lymphocytes.e B lymphocytes.

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Saos-2 세포에서 Doxorubicin에 의한 세포사멸 유도과정에서의 유전자 발현 변화 (Profile of Gene Expression Changes During Doxorubicin Induced Apoptosis of Saos-2)

  • 임정숙;배민재;백석환;김재룡;김정희;김성용
    • Journal of Yeungnam Medical Science
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    • 제22권2호
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    • pp.221-240
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    • 2005
  • 사람의 악성 골종양 세포주 Saos-2 를 이용하여 doxorubicin에 의해 발현이 증가 또는 감소하는 유전자들의 변화를 cDNA microarray를 이용하여 확인하였다. 그 결과 대조군에 비하여 2배 이상 증가 또는 감소하는 유전자 264개, 3배 이상 증가 또는 감소하는 유전자 35개를 선별할 수 있었다. Doxorubicin 처리 후 시간대 별로 발현변화가 비슷한 유전자들을 k-mean clustering으로 분석하여 5가지의 군으로 분류할 수 있었다. A군은 24시간 까지 계속 발현이 증가하는 67개 유전자, B군은 6시간까지는 변화가 없다가 24시간에는 감소하는 108개 유전자, C군은 6시간에 발현의 감소하고 24시간까지 지속되는 33개 유전자, D군은 6시간에 발현의 감소하였으나 24시간에는 다시 발현이 회복되는 5개 유전자, 그리고 E군은 6시간까지는 발현의 변화가 없다가 24시간에 발현이 증가하는 경향을 보이는 51개 유전자로 구분하였다. cDNA microarry 결과 발현차이가 현저한 22개의 유전자들을 대상으로 RT-PCR을 시행하여 발현정도를 비교하였다. cDNA microarry에서 발현증가를 보이는 13개 유전자 중에서, RT-PCR 결과 11개가 그 발현이 증가하였으며, cDNA microarry의 결과에서 발현감소를 보이는 9개 유전자 중에서 RT-PCR 결과에서 2개 유전자만 감소하였다. 이상의 결과 Saos-2 세포에서 doxorubicin에 의해 세포사멸과 세포성장, 세포신호전달, 세포골격, 세포주기, 운반, 대사 등에 관여하는 많은 유전자들의 발현이 변함을 확인할 수 있었다.

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Identification of genes involved in inbreeding depression of reproduction in Langshan chickens

  • Xue, Qian;Li, Guohui;Cao, Yuxia;Yin, Jianmei;Zhu, Yunfen;Zhang, Huiyong;Zhou, Chenghao;Shen, Haiyu;Dou, Xinhong;Su, Yijun;Wang, Kehua;Zou, Jianmin;Han, Wei
    • Animal Bioscience
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    • 제34권6호
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    • pp.975-984
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    • 2021
  • Objective: Inbreeding depression of reproduction is a major concern in the conservation of native chicken genetic resources. Here, based on the successful development of strongly inbred (Sinb) and weakly inbred (Winb) Langshan chickens, we aimed to evaluate inbreeding effects on reproductive traits and identify candidate genes involved in inbreeding depression of reproduction in Langshan chickens. Methods: A two-sample t-test was performed to estimate the differences in phenotypic values of reproductive traits between Sinb and Winb chicken groups. Three healthy chickens with reproductive trait values around the group mean values were selected from each of the groups. Differences in ovarian and hypothalamus transcriptomes between the two groups of chickens were analyzed by RNA sequencing (RNA-Seq). Results: The Sinb chicken group showed an obvious inbreeding depression in reproduction, especially for traits of age at the first egg and egg number at 300 days (p<0.01). Furthermore, 68 and 618 differentially expressed genes (DEGs) were obtained in the hypothalamus and ovary between the two chicken groups, respectively. In the hypothalamus, DEGs were mainly enriched in the pathways related to vitamin metabolism, signal transduction and development of the reproductive system, such as the riboflavin metabolism, Wnt signaling pathway, extracellular matrix-receptor interaction and focal adhesion pathways, including stimulated by retinoic acid 6, serpin family F member 1, secreted frizzled related protein 2, Wnt family member 6, and frizzled class receptor 4 genes. In the ovary, DEGs were significantly enriched in pathways associated with basic metabolism, including amino acid metabolism, oxidative phosphorylation, and glycosaminoglycan degradation. A series of key DEGs involved in folate biosynthesis (gamma-glutamyl hydrolase, guanosine triphosphate cyclohydrolase 1), oocyte meiosis and ovarian function (cytoplasmic polyadenylation element binding protein 1, structural maintenance of chromosomes 1B, and speedy/RINGO cell cycle regulator family member A), spermatogenesis and male fertility (prostaglandin D2 synthase 21 kDa), Mov10 RISC complex RNA helicase like 1, and deuterosome assembly protein 1) were identified, and these may play important roles in inbreeding depression in reproduction. Conclusion: The results improve our understanding of the regulatory mechanisms underlying inbreeding depression in chicken reproduction and provide a theoretical basis for the conservation of species resources.

Oxidative Stress Induced Damage to Paternal Genome and Impact of Meditation and Yoga - Can it Reduce Incidence of Childhood Cancer?

  • Dada, Rima;Kumar, Shiv Basant;Chawla, Bhavna;Bisht, Shilpa;Khan, Saima
    • Asian Pacific Journal of Cancer Prevention
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    • 제17권9호
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    • pp.4517-4525
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    • 2016
  • Background: Sperm DNA damage is underlying aetiology of poor implantation and pregnancy rates but also affects health of offspring and may also result in denovo mutations in germ line and post fertilization. This may result in complex diseases, polygenic disorders and childhood cancers. Childhood cancer like retinoblastoma (RB) is more prevalent in developing countries and the incidence of RB has increased more than three fold in India in the last decade. Recent studies have documented increased incidence of cancers in children born to fathers who consume alcohol in excess and tobacco or who were conceived by assisted conception. The aetiology of childhood cancer and increased disease burden in these children is lin ked to oxidative stress (OS) and oxidative DNA damage( ODD) in sperm of their fathers. Though several antioxidants are in use to combat oxidative stress, the effect of majority of these formulations on DNA is not known. Yoga and meditation cause significant decline in OS and ODD and aid in regulating OS levels such that reactive oxygen speues meditated signal transduction, gene expression and several other physiological functions are not disrupted. Thus, this study aimed to analyze sperm ODD as a possible etiological factor in childhood cancer and role of simple life style interventions like yoga and meditation in significantly decreasing seminal oxidative stress and oxidative DNA damage and thereby decreasing incidence of childhood cancers. Materials and Methods: A total of 131 fathers of children with RB (non-familial sporadic heritable) and 50 controls (fathers of healthy children) were recruited at a tertiary center in India. Sperm parameters as per WHO 2010 guidelines and reactive oxygen species (ROS), DNA fragmentation index (DFI), 8-hydroxy-2'-deoxy guanosine (8-OHdG) and telomere length were estimated at day 0, and after 3 and 6 months of intervention. We also examined the compliance with yoga and meditation practice and smoking status at each follow-up. Results: The seminal mean ROS levels (p<0.05), sperm DFI (p<0.001), 8-OHdG (p<0.01) levels were significantly higher in fathers of children with RB, as compared to controls and the relative mean telomere length in the sperm was shorter. Levels of ROS were significantly reduced in tobacco users (p<0.05) as well as in alcoholics (p<0.05) after intervention. DFI reduced significantly (p<0.05) after 6 months of yoga and meditation practice in all groups. The levels of oxidative DNA damage marker 8-OHdG were reduced significantly after 3 months (p<0.05) and 6 months (p<0.05) of practice. Conclusions: Our results suggest that OS and ODD DNA may contribute to the development of childhood cancer. This may be due to accumulation of oxidized mutagenic base 8OHdG, and elevated MDA levels which results in MDA dimers which are also mutagenic, aberrant methylation pattern, altered gene expression which affect cell proliferation and survival through activation of transcription factors. Increased mt DNA mutations and aberrant repair of mt and nuclear DNA due to highly truncatred DNA repair mechanisms all contribute to sperm genome hypermutability and persistant oxidative DNA damage. Oxidative stress is also associated with genome wide hypomethylation, telomere shortening and mitochondrial dysfunction leading to genome hypermutability and instability. To the best of our knowledge, this is the first study to report decline in OS and ODD and improvement in sperm DNA integrity following adoption of meditation and yoga based life style modification.This may reduce disease burden in next generation and reduce incidence of childhood cancers.

비소세포 폐암에서 EGFR의 발현률과 생존률에 미치는 영향 (Expression of EGFR in Non-small Cell Lung Cancer and its Effects on Survival)

  • 김학렬;정은택
    • Tuberculosis and Respiratory Diseases
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    • 제44권6호
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    • pp.1285-1295
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    • 1997
  • 연구배경 : 종양형성다단계 과정중의 하나인 EGFR(epidermal growth factor receptor)은 170KDa의 당단백질로서 세포막의 안팎에 걸친 수용체로서 EGF, TGF alph 의 자극에 의해서 신호전달체계의 시작을 담당한다. EGFR은 정상세포에도 존재가능하나 종양에서는 발현이 증가되어 있으며, EGFR의 발현이 높을수록 종양의 예후가 불량하리라 예측된다. 이에 저자들은 비소세포 폐암에서 EGFR의 발현을 확인하고 EGFR의 임상적 의의 특히 생존률과의 관계를 검색 하였다. 방 법 : 원발성 비소세포 폐암으로 확진받고, 외과적 절제술후 paraffin에 보관된 57례의 병리조직에서 면역 조직화학법으로 EGFR의 발현을 확인하고, EGFR과 암세포형, TNM 병기, 세포분화도, 유식세포 분석법에 의한 S 및 $G_1$ 주기비율 그리고 생존 기간과의 관계를 분석하였다. 결 과 : 1) 57례중 남녀비는 43 : 14였고, 중간 연령은 62세였다. EGFR과 생존기간과의 경향을 파악하기 위해, 종양세포중 EGFR 양성 세포가 20% 이상인 경우만을 발현군으로 하였을 때 56%에서 발현되었다. 2) EGFR의 발현은 병리조직형에 따른 차이는 없었고, TNM병기 그리고 세포의 분화도에 따른 차이도 없었다. 3) EGFR 발현군과 비발현군에서의 S-주기비율은 22.3(${\pm}10.5$)%, 18.0(${\pm}10.9$)% 였고, $G_1$-주기비율은 68.4(${\pm}11.6$)%, 71.1(${\pm}12.8$)%로서 모두 양군간의 유의한 차이는 없었다. 4) EGFR 발현군과 비발현군에서의 1년 생존률은 66%, 96%, 2년 생존률은 53%, 84%, 3년 생존률은 38%, 66%였고 중간 생존기간은 26개월, 53개월로서 유의한 차이가 있었다. 결 론 : 비소세포 폐암에서 EGFR은 56%에서 발현되었으며, 조직병리형, TNM 병기, 세포분화도에 따른 발현의 차이는 없었다. 발현군과 비발현군에서의 S 및 $G_1$ 주기비율은 차이가 없었다. EGFR 발현군과 비발현군의 2년 생존률은 53%, 84%였으며, 중간 생존기간은 26개월, 53개월이었다 (p<0.05). 즉 결과적으로 EGFR 발현이 높을수록 생존기간은 불량하여 예후추정인자로서의 이용이 가능하리라 판단된다.

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면역체계가 Retroviral Vector로 이입한 Herpes Simplex Virus Thymidine Kinase 유전자치료에 미치는 영향 (Effect of Immune System on Retrovirus-Mediated Herpes Simplex Virus Thymidine Kinase Gene Therapy)

  • 박재용;주소영;장희진;손지웅;김관영;김정석;김창호;박재호;이종기;정태훈
    • Tuberculosis and Respiratory Diseases
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    • 제46권2호
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    • pp.229-240
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    • 1999
  • 연구배경: HSVtk/GCV를 이용한 유전자치료에서 면역반응은 1) adenovirus 혹은 retrovirus와 같이 벡타로 사용된 virus의 단백질, 2) 치료목적으로 이입된 HSVtk 유전자의 생성물, 3) 암세포에 대해서 일어날 수 있다. 그리고 이러한 면역반응은 cytokines의 생성 혹은 cytotoxic tumor-specific T-cell의 생성을 초래하여 bystander effect에 의한 살상효과를 증가시키거나, anti-tumor immunity를 유도하여 tumor vaccine의 효과를 나타낼 수 있다. 한편 이와는 대조적으로 면역반응용 HSVtk 유전자를 발현하는 세포들을 파괴하여 이입된 HSVtk 유전자의 발현기간을 제한함으로서 유전자치료의 효과를 감소시킬 수도 있다. 본 연구는 retrovirus 벡타로 이입한 HSVtk 유전자치료에서 면역체계가 bystander effect에 의한 살상효과에 미치는 영향을 규명하고 면역체계가 이입한 유전자의 발현에 미치는 영향을 조사하고자 하였다. 방 법: Immunocompetent mice인 Balb/c mouse와 immunodeficient mouse인 Balb/c-nude 및 SCID mouse에서 retrovirus 벡타를 사용하여 HSVtk 유전자를 이입하고 치료효과를 조사하였다. 그리고 Balb/c mouse에 면역억제제인 cyclosporin을 투여하여 면역억제제가 bystander effect 및 유전자치료 효과와 유전자의 발현기간에 미치는 영향을 조사하였다. 결 과: Balb/c mouse에 HSVtk 유전자를 이입하고 GCV를 투여한 군은 GCV를 투여하지 않은 대조군에 비해 종양의 성장이 유의하게 억제되었으나 Balb/c-nude mouse와 SCID mouse의 경우 GCV를 투여한 군과 대조군 사이에 유의한 차이가 없었다. 면역억제제인 cyclosporin을 투여한 군에서 유전자 치료 효과가 cyclosporin을 투여하지 않은 정상 mouse에 비해 치료효과가 유의하게 작았다. Cyclosporin 투여에 따른 유전자의 발현기간에는 유의한 차이가 없었다. 결 론: Retrovirus 벡타를 사용한 HSVtk 유전자치료에는 면역증강이 치료효과를 증가시킬 것으로 생각된다.

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