• 제목/요약/키워드: Transfection analysis

검색결과 147건 처리시간 0.027초

Nonionic Amphiphilic Surfactant Conjuncted Polyethyleneimine as a New and Highly Efficient Non-viral Gene Carrier

  • Yin, Dongfeng;Chu, Cang;Ding, Xueying;Gao, Jing;Zou, Hao;Gao, Shen
    • Macromolecular Research
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    • 제17권1호
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    • pp.19-25
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    • 2009
  • In order to enhance the gene delivery efficiency and decrease the cytotoxicity of polyplexes, we synthesized Solutol-g-PEI by conjugating polyethyleneimine (PEI) to Solutol (polyoxyethylene (10) stearate), and evaluated its efficiency as a possible nonviral gene carrier candidate. Structural analysis of synthesized polymer was performed by using $^1H$-NMR. Gel retardation assay, particle sizes and zeta potential measurement confirmed that the new gene carrier formed a compact complex with plasmid DNA. The complexes were smaller than 150 nm, which implicated its potential for intracellular delivery. It showed lower cytotoxicity in three different cell lines (Hela, MCF-7, and HepG2) than PEI 25 kDa. pGL3-lus was used as a reporter gene, and the transfection efficiency was in vitro measured in Hela cells. Solutol-g-PEI showed much higher transfection efficiency than unmodified PEI 25 kDa.

미꾸라지 발현백터의 활성도 조사 (Activity Analysis of Misgurnus mizolepis Experssion Vector)

  • 함경훈;임학섭;황지연;박진영;김무상;이형호
    • 한국양식학회지
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    • 제11권4호
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    • pp.457-463
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    • 1998
  • 미꾸라지(Misgrunus mizolepis)의 DNA로부터 클론된 핵기질 부착부위(MAR)를 포함하는 발현벡터인 pUC19N6-luc 벡터를 구성하였다. 이를 물고기 CHSE-214 세포주에 electroporation으로 transfection 시킨 후 유전자의 발현율, 벡터의 copy 수 및 염색체내 삽입 양상을 luciferase 활성도 분석, PCR 및 Southern blotting를 통해 분석하였다. 대조군 발현벡터에 luciferase 유전자는 전형적인 transient 발현양상을 나타내는데 비해, 미꾸라지 MAR가 포함된 pUC19N6-luc 벡터의 luciferase 유전자의 발현은 transfection 후 5일째부터 급격히 증가하는 양상을 보였다. Transfection된 CHSE-214 세포내에서 pUC19N6-luc 벡터는 대조군 벡터에 비해 높은 copy 수를 유지하였으나, 염색체내 삽입은 거의 비슷한 시간에 일어났다. 결론적으로 transfection 후 시간경과에 따른 pUC19N6-luc 벡터내의 luciferase 유전자의 발현 증가에 미치는 MAR의 효과는 벡터 copy수 증가 때문이 아니라, 염색체내 삽입후 형성되는 전사활성구조의 형성에 기인하는 것으로 판단된다.

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Validation of Gene Silencing Using RNA Interference in Buffalo Granulosa Cells

  • Monga, Rachna;Datta, Tirtha Kumar;Singh, Dheer
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권11호
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    • pp.1529-1540
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    • 2011
  • Silencing of a specific gene using RNAi (RNA interference) is a valuable tool for functional analysis of a target gene. However, information on RNAi for analysis of gene function in farm animals is relatively nil. In the present study, we have validated the interfering effects of siRNA (small interfering RNA) using both quantitative and qualitative gene silencing in buffalo granulosa cells. Qualitative gene knockdown was validated using a fluorescent vector, enhanced green fluorescence protein (EGFP) and fluorescently labeled siRNA (Cy3) duplex. While quantitatively, siRNA targeted against the luciferase and CYP19 mRNA was used to validate the technique. CYP19 gene, a candidate fertility gene, was selected as a model to demonstrate the technique optimization. However, to sustain the expression of CYP19 gene in culture conditions using serum is difficult because granulosa cells have the tendency to luteinize in presence of serum. Therefore, serum free culture conditions were optimized for transfection and were found to be more suitable for the maintenance of CYP19 gene transcripts in comparison to culture conditions with serum. Decline in fluorescence intensity of green fluorescent protein (EGFP) was observed following co-transfection with plasmid generating siRNA targeted against EGFP gene. Quantitative decrease in luminescence was seen when co-transfected with siRNA against the luciferase gene. A significant suppressive effect on the mRNA levels of CYP19 gene at 100 nM siRNA concentration was observed. Also, measurement of estradiol levels using ELISA (enzyme-linked immunosorbent assay) showed a significant decline in comparison to control. In conclusion, the present study validated gene silencing using RNAi in cultured buffalo granulosa cells which can be used as an effective tool for functional analysis of target genes.

hFSH 유전자가 도입된 소 태아섬유아세포를 이용한 형질 전환 복제 수정란의 발달 (Development of Transgenic NT Embryos Using Bovine Fetal Fibroblasts Transfected with hFSH Gene)

  • 양병철;임기순;김동훈;민관식;윤두학;박효숙;김세웅;황인선;서진성;성환후;양보석
    • 한국수정란이식학회지
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    • 제21권1호
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    • pp.13-20
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    • 2006
  • 본 연구의 목적은 요를 통해 hFSH를 발현하는 형질 전환 소의 생산이다. 요의 분비와 관련 있는 유전자로서 mUII promoter를 사용하여 hFSH유전자를 구성했다. 태아섬유아세포(KbFF)는 임신 45일령의 태아(male)에서 채취하였다. hFSH gene은 pcDNA3(neo) vector와 같이 KbFF 세포에 electroporation 방법으로 transfection하였다. 유전자를 transfection한 세포는 G-418로 2주 동안 배양하였고, 선발된 colony는 PCR로 확인하였다. 핵이 제거된 난자는 hFSH가 transfection된 세포와 transfection 되지 않은(control) 세포를 이용하여 핵이식하였다. 48시 간 후 hFSH가 transfection된 세포는 68.7%의 수정란이 난할되었으며, 8일 후 15.7%의 수정란이 배반포로 발달하였다. 그러나 대조구에서는 67.6%가 난할되었으며, 24.5%가 배반포로 각각 발달하였다. 이들 배반포에서 apoptosis 분석 결과 hFSH 유전자가 transfection된 또는 transfection되지 않은 대조구에서 유의적인 차이는 보이지 않았다. 배반포는 53두의 수란우에 이식하여 두 마리의 산자가 생산되었으나(1.9%) hFSH가 transfection되지 않은 것으로 나타났다. 이 결과는 선발된 hFSH colony에서 transfection되지 않은 세포가 혼합되어 있었다는 것을 나타내 주고 있으며, colony의 선발과 검증에 더 많은 연구의 필요성이 있음을 나타내준다.

A New Reporter Vector System Based on Flow-Cytometry to Detect Promoter Activity

  • Jung, Sun-Do;Choi, Ji-Hye;Hong, Chang-Wan;Lee, Hyun-Ji;Park, Yoon-Kyung;Shin, Jung-Hoon;Park, Jae-Won;Park, Se-Ho
    • IMMUNE NETWORK
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    • 제9권6호
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    • pp.243-247
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    • 2009
  • In this study, we report the development of a new dual reporter vector system for the analysis of promoter activity. This system employs green fluorescence emitting protein, EGFP, as a reporter, and uses red fluorescence emitting protein, DsRed, as a transfection control in a single vector. The expression of those two proteins can be readily detected via flow cytometry in a single analysis, with no need for any further manipulation after transfection. As this system allows for the simultaneous detection of both the control and reporter proteins in the same cells, only transfected cells which express the control protein, DsRed, can be subjected to promoter activity analysis, via the gating out of all un-transfected cells. This results in a dramatic increase in the promoter activity detection sensitivity. This novel reporter vector system should prove to be a simple and efficient method for the analysis of promoter activity.

Down-Regulation of Mcl-1 by Small Interference RNA Induces Apoptosis and Sensitizes HL-60 Leukemia Cells to Etoposide

  • Karami, Hadi;Baradaran, Behzad;Esfehani, Ali;Sakhinia, Masoud;Sakhinia, Ebrahim
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권2호
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    • pp.629-635
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    • 2014
  • Background: Acute myeloid leukemia (AML) is a fatal hematological malignancy which is resistant to a variety of chemotherapy drugs. Myeloid cell leukemia-1 (Mcl-1), a death-inhibiting protein that regulates apoptosis, has been shown to be overexpressed in numerous malignancies. In addition, it has been demonstrated that the expression level of the Mcl-1 gene increases at the time of leukemic relapse following chemotherapy. The aim of this study was to target Mcl-1 by small interference RNA (siRNA) and analyze its effects on survival and chemosensitivity of acute myeloid leukemia cell line HL-60. Materials and Methods: siRNA transfection was performed with a liposome approach. The expression levels of mRNA and protein were measured by real-time quantitative PCR and Western blot analysis, respectively. Trypan blue assays were performed to evaluate tumor cell growth after siRNA transfection. The cytotoxic effects of Mcl-1 siRNA (siMcl-1) and etoposide were determined using MTT assay on their own and in combination. Apoptosis was quantified using a DNA-histone ELISA assay. Results: Transfection with siMcl-1 significantly suppressed the expression of Mcl-1 mRNA and protein in a time-dependent manner, resulting in strong growth inhibition and spontaneous apoptosis. Surprisingly, pretreatment with siMcl-1 synergistically enhanced the cytotoxic effect of etoposide. Furthermore, Mcl-1 down-regulation significantly increased apoptosis sensitivity to etoposide. No significant biological effects were observed with negative control siRNA treatment. Conclusions: Our results suggest that specific suppression of Mcl-1 by siRNA can effectively induce apoptosis and overcome chemoresistance of leukemic cells. Therefore, siMcl-1 may be a potent adjuvant in leukemia chemotherapy.

Expression of Modified Green Fluorescent Protein in Suspension Culture of Taxus cuspidata

  • Kim, Chang-Heon;Kim, Kyung-Il;Chung, In-Sik
    • Journal of Microbiology and Biotechnology
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    • 제10권1호
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    • pp.91-94
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    • 2000
  • The suspension cells of Taxus cuspidata were transformed with Agrobacterium tumefaciens harboring binary vector pCAMBIE1302 encoding mgfp. Transient transfection efficiency was compared by using the fluoremetric measurement. The transient transfection efficiency was improved by transformation with DMSO and/or sonication treatment. Optimum conditions for DMSO and sonication treatment were 3% and 30sec, respectively. selection and maintenance of transformed cells were continued for 3 months. An insertion of the mgfp gene in transformed cells was detected by PCR and an expression of GFP confirmed by the western blot analysis.

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GRIM-19 Expression and Function in Human Gliomas

  • Jin, Yong-Hao;Jung, Shin;Jin, Shu-Guang;Jung, Tae-Young;Moon, Kyung-Sub;Kim, In-Young
    • Journal of Korean Neurosurgical Society
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    • 제48권1호
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    • pp.20-30
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    • 2010
  • Objective : We determined whether the expression of GRIM-19 is correlated with pathologic types and malignant grades in gliomas, and determined the function of GRIM-19 in human gliomas. Methods : Tumor tissues were isolated and frozen at $-80^{\circ}C$ just after surgery. The tissues consisted of normal brain tissue (4), astrocytomas (2), anaplastic astrocytomas (2), oligodendrogliomas (13), anaplastic oligodendrogliomas (11), and glioblastomas (16). To profile tumor-related genes, we applied RNA differential display using a $Genefishing^{TM}$ DEG kit, and validated the tumor-related genes by reverse transcription polymerase chain reaction (RT-PCR). A human glioblastoma cell line (U343MG-A) was used for the GRIM-19 functional studies. The morphologic and cytoskeletal changes were examined via light and confocal microscopy. The migratory and invasive abilities were investigated by the simple scratch technique and Matrigel assay. The antiproliferative activity was determined by thiazolyl blue Tetrazolium bromide (MTT) assay and FACS analysis. Results : Based on RT-PCR analysis, the expression of GRIM-19 was higher in astrocytic tumors than oligodendroglial tumors. The expression of GRIM-19 was higher in high-grade tumors than low-grade tumors or normal brain tissue; glioblastomas showed the highest expression. After transfection of GRIM-19 into U343MG-A, the morphology of the sense-transfection cells became larger and more spindly. The antisensetransfection cells became smaller and rounder compared with wild type U343MG-A. The MTT assay showed that the sense-transfection cells were more sensitive to the combination of interferon-$\beta$ and retinoic acid than U343MG-A cells or antisense-transfection cells; the antiproliferative activity was related to apoptosis. Conclusion : GRIM-19 may be one of the gene profiles which regulate cell death via apoptosis in human gliomas.

HDAC6 siRNA Inhibits Proliferation and Induces Apoptosis of HeLa Cells and its Related Molecular Mechanism

  • Qin, Hai-Xia;Cui, Hong-Kai;Pan, Ying;Yang, Jun;Ren, Yan-Fang;Hua, Cai-Hong;Hua, Fang-Fang;Qiao, Yu-Huan
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권7호
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    • pp.3367-3371
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    • 2012
  • Objective: To investigate the effects of histone deacetylase 6 (HDAC6) siRNA on cell proliferation and cell apoptosis of the HeLa cervical carcinoma cell line and the molecular mechanisms involved. Methods: Division was into three groups: A, the untreated group; B, the control siRNA group; and C, the HDAC6 siRNA group. Lipofectamine 2000 was used for siRNA transfection, and Western blot analysis was used to determine the protein levels. Cell proliferation and apoptosis were characterized using a CCK-8 assay and flow cytometry, respectively. Results: HDAC6 protein expression in the HDAC6 siRNA-transfection group was significantly lower (P < 0.05) than in the untreated and control siRNA groups. The CCK-8 kit results demonstrated that the proliferation of HeLa cells was clearly inhibited in the HDAC6 siRNA transfection group (P < 0.05). In addition, flow cytometry revealed that the early apoptotic rate ($26.0%{\pm}0.87%$) was significantly elevated (P < 0.05) as compared with the untreated group ($10.6%{\pm}1.19%$) and control siRNA group ($8.61%{\pm}0.98%$). Furthermore, Western blot analysis indicated that bcl-2 protein expression in the HDAC6 siRNA-transfection group was down-regulated, whereas the expression of p21 and bax was up-regulated. Conclusion: HDAC6 plays an essential role in the occurrence and development of cervical carcinoma, and the down-regulation of HDAC6 expression may be useful molecular therapeutic method.

SETDB1 mediated FosB expression increases the cell proliferation rate during anticancer drug therapy

  • Na, Han-Heom;Noh, Hee-Jung;Cheong, Hyang-Min;Kang, Yoonsung;Kim, Keun-Cheol
    • BMB Reports
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    • 제49권4호
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    • pp.238-243
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    • 2016
  • The efficacy of anticancer drugs depends on a variety of signaling pathways, which can be positively or negatively regulated. In this study, we show that SETDB1 HMTase is down-regulated at the transcriptional level by several anticancer drugs, due to its inherent instability. Using RNA sequence analysis, we identified FosB as being regulated by SETDB1 during anticancer drug therapy. FosB expression was increased by treatment with doxorubicin, taxol and siSETDB1. Moreover, FosB was associated with an increased rate of proliferation. Combinatory transfection of siFosB and siSETDB1 was slightly increased compared to transfection of siFosB. Furthermore, FosB was regulated by multiple kinase pathways. ChIP analysis showed that SETDB1 and H3K9me3 interact with a specific region of the FosB promoter. These results suggest that SETDB1-mediated FosB expression is a common molecular phenomenon, and might be a novel pathway responsible for the increase in cell proliferation that frequently occurs during anticancer drug therapy.