• 제목/요약/키워드: Recombinant Human basic Fibroblast Growth Factor

검색결과 10건 처리시간 0.02초

Immunogenicity Study of Recombinant Human Basic Fibroblast Growth Factor

  • Kim, Dong-Hwan;Cho, Hyeon;Kang, Kyung-Koo;Ahn, Byoung-Ok;Kang, Soo-Hyung;Kim, Won-Bae
    • Biomolecules & Therapeutics
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    • 제7권1호
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    • pp.14-21
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    • 1999
  • The immunogenicity of the recombinant human basic fibroblast growth factor (rh-bFGF) was investigated by tests for active systemic anaphylaxis (ASA), passive cutaneous anaphylaxis (PCA), passive hemagglutination (PHA) and guinea pig maximization test (GPMT) in mice or guinea pigs. Guinea pigs were sensitized with rh-bFGF ($100-1000\;\mu\textrm{g}/kg$) or rh-bFGF-CFA mixture ($1000\;\mu\textrm{g}/kg$). All animals sensitized with rh-bFGF alone or mixture with CFA showed symptoms of anaphylactic shock. IgE antibodies to rh-bFGF were detected in sera obtained from rh-bFGF and rh-bFGF-Alum ($1000\;\mu\textrm{g}/kg$) sensitized mice, indicating that rh-bFGF has immunogenicity eliciting potential. IgG and/or IgM antibodies to rh-bFGF were also detected in all the sera obtained from sensitized mice by PHA. In the GPMT for delayed type skin reaction, no skin reaction was observed in sensitized guinea pigs after intradermal injection and dermal application of 0.01% rh- bFGF. However, these positive reactions were consistent with the results of another rh-bFGF, showing that rh- bFGF is a heterogenous protein to rodents. Considering the fact that rh-bFGF is a genuine human protein of which structure is identical to the endogenous human bFGF, it is thought that rh-bFGF is rarely associated with immunological problems in clinical use.

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Expression of Recombinant Epidermal Growth Factor in E. coli

  • Chang Shin Yoon;Eun
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제2권2호
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    • pp.86-89
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    • 1997
  • Epidermal growth factor(EGF) known as a urgastrone is a powerful mitogen with a wide variety of possibilities for medical usages. A mature EGF coding region was isolated from human prepro-EGF sequence by a conventional PCR and cloned into pQE vector in which the gene product was supposed to be expressed with 6$\times$His tag for the subsequent purification. The recombinant mature EGF was expressed in M15[Rep4], an Escherichia coli host strain, in amount of 30-40% of total proteins pressent in E. coli extract by the addition of isopropylthio-$\beta$-galactopyranoside (IPTG). The recombinant EGF purified using a Ni2+-NTA affinity colume chromatography was active in its ability to induce phosphorylation on tyrosine residues of several substrate proteins when murine NH3T3 and human MRC-5 fibroblast cells were stimulated with it. This work may provide the basic technology and information for the production of recombinant EGF.

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Efficient Gene Delivery through the Human Transferrin Receptor of Fibroblast-like Synoviocytes Stimulated with bFGF: a Potential Target Receptor for Gene Transduction in Rheumatoid Arthritis

  • Kim, Hak-Jae;Joung, In-Sil;Nah, Seong-Su;Lee, Kyu-Hoon;KimKwon, Yun-Hee;Chung, Joo-Ho;Hong, Seung-Jae
    • Molecular & Cellular Toxicology
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    • 제3권2호
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    • pp.85-89
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    • 2007
  • Efficient gene delivery to specific tissues, such as inflammatory and cancerous tissues, is currently a major concern in disease treatment. The human transferrin receptor (hTR) has been detected in the synovium and fibroblast-like synoviocytes (FLS), which raises the possibility that expression of hTR is associated with the pathogenesis of rheumatoid arthritis (RA). To investigate whether the hTR is a useful target for gene transduction into the FLS of RA patients, recombinant adenoviruses with wildtype fiber (AdLac) and transferrin peptide-tagged fiber (Tf-AdLac) were used. The hTR expression level in FLS was notably increased by basic fibroblast growth factor (bFGF). Gene transduction to FLS was significantly higher by the hTR-targeted adenovirus than by the AdLac adenovirus, and treatment of the FLS with bFGF resulted in increased gene transduction by Tf-AdLac. Taken together, these data support Tf-AdLac as a new strategy for gene transduction in the treatment of RA patients.

Accelerated Wound Healing by ]Recombinant Human Basic Fibroblast Growth Factor in Healing-impaired Animal Models

  • Kang, Soo-Hyung;Oh, Tae-Young;Cho, Hyun;Ahn, Byoung-Ok;Kim,Won-Bae
    • Biomolecules & Therapeutics
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    • 제7권1호
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    • pp.7-13
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    • 1999
  • The stimulatory effect of recombinant human basic fibroblast growth factor (bFGF) on wound healing was evaluated in healing-impaired animal models. Full-thickness wounds were made in prednisolone-treated mice, streptozotocin (STZ)-induced diabetic rats and mitomycin C (MMC)-treated rats. Saline or bFGF at a dose of 1, 5, or $25\mu\textrm{g}$ per wound was applied to the open wound once a day for three to five days. The degree of wound healing was assessed using wound size and histological parameters such as degree of epidermal and dermal regeneration. Local application of bFGF accelerated wound closure significantly in a dose-dependent manner in all healing-impaired wounds (p<0.05). The wound healing effect of bFGF was further confirmed by histological examination in MMC-treated rats. Epidermal and dermal regeneration were enhanced in bFGF-treated wounds with a dose-related response. Dermal regeneration parameters such as collagen matrix formation and angiogenesis were significantly increased in $5\mu\textrm{g}$, or $\25mu\textrm{g}$ of bFGF-treated wounds when compared to saline-treated wounds (p<0.05). pectin immunostaining on day 8 for vascular endothelium showed an increased number of neovessels in bFGF-treated wounds. These results suggest that topical application of bFGF has beneficial effects on wound healing by angiogenesis and granulation tissue formation in healing-impaired wounds.

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Secretory Production of Recombinant Urokinase Kringle Domain in Pichia pastoris

  • Kim, Hyun-Kyung;Hong, Yong-Kil;Park, Hyo-Eun;Hong, Sung-Hee;Joe, Young-Ae
    • Journal of Microbiology and Biotechnology
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    • 제13권4호
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    • pp.591-597
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    • 2003
  • Human urokinase kringle domain, sharing homology with angiostatin kringles, has been shown to be an inhibitor of angiogenesis, which can be used for the treatment of cancer, rheumatoid arthritis, psoriasis, and retinopathy. Here, the expression of the kringle domain of urokinase (UK1) as a secreted protein in high levels is reported. UK1 was expressed in the methylotrophic yeast Pichia pastoris GS115 by fusion of the cDNA spanning from Ser47 to Lys135 to the secretion signal sequence of ${\alpha}-factor$ prepro-peptide. In a flask culture, the secreted UK1 reached about 1 g/l level after 120h of methanol induction and was purified to homogeneity by ion-exchange chromatography. Amino-terminal sequencing of the purified UK1 revealed that it was cleaved at the Ste13 signal cleavage site. The molecular mass of UK1 was determined to be 10,297.01 Da. It was also confirmed that the purified UK1 inhibited endothelial cell proliferation stimulated by basic fibroblast growth factor, vascular endothelial growth factor, or epidermal growth factor, in a dose-dependent manner. These results suggest that a P. pastoris sytem can be employed to obtain large amounts of soluble and active UK1.

Expression of a Functional Human Tumor Necrosis Factor-${\alpha}$ (hTNF-$\alpha$) in Yeast Saccharomyces cerevisiae

  • Park, Seung-Moon;Mo, Ae-Young;Jang, Yong-Suk;Lee, Jae-Hwa;Yang, Moon-Sik;Kim, Dae-Hyuk
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제9권4호
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    • pp.292-296
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    • 2004
  • The recombinant soluble human tumor necrosis factor-alpha (hTNF-$\alpha$) was expressed in a yeast Saccharomyces cerevisiae and its cytotoxicity was evaluated. A cDNA encoding hTNF-$\alpha$ was placed under the control of two different promoters: a glyceraldehyde-3-phosphate dehydrogenase (GPD) promoter and a yeast hybrid ADH2-GPD promoter, consisting of alcohol dehydrogenase II (ADH2) and the GPD promoter. A Northern blot analysis revealed that, although variation in the expression level of hTNF-$\alpha$ existed among transformants, the higher expression was obtained with the GPD promoter. Expressed hTNF-$\alpha$ protein (rhTNF-$\alpha$) was successfully secreted into the culture medium, producing 2.5 mg per liter of culture filtrate, with no changes in cell growth. The bioassay for observing the cytotoxicity to the murine L929 fibroblast cell line, with serial dilution of rhTNF-$\alpha$, indicated that the secreted rhTNF-$\alpha$ was bioactive and its dose-response was improved eight to ten times over that of the E. coli-derived rhTNF-$\alpha$.

Efficient Derivation and Long Term Maintenance of Pluripotent Porcine Embryonic Stem-like Cells

  • Son, Hye-Young;Kim, Jung-Eun;Lee, Sang-Goo;Kim, Hye-Sun;Lee, Eugene;Park, Jin-Kyu;Ka, Hakhyun;Kim, Hyun-Jong;Lee, Chang-Kyu
    • Asian-Australasian Journal of Animal Sciences
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    • 제22권1호
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    • pp.26-34
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    • 2009
  • Porcine embryonic stem (ES) cells have a great potential as tools for transgenic animal production and studies of regulation of differentiation genes. Although several studies showed successful derivation of porcine ES-like cells, these cells were not maintained long-term in culture. Therefore, this study was conducted to establish porcine pluripotent ES-like cells using in vivo fertilized embryos and to maintain these cells in long term culture. Porcine ES-like cells from in vivo embryos obtained by immunosurgery or whole explant culture were successfully cultured for over 56 passages. Morphology of porcine ES-like cells was flat-shaped with a monolayer type colony. These cells stained for alkaline phosphatase throughout the culture. Furthermore, porcine ES-like cells reacted with antibodies against Oct-4, SSEA-1, SSEA-4, Tra-1-60, and Tra-1-81, which are typical markers of undifferentiated stem cells. To characterize the ability of porcine ES-like cells to differentiate into three germ layers, embryoid body formation was induced. After plating of these cells, porcine ES-like cells were spontaneously differentiated into various cell types of all three germ layers. In addition, porcine ES-like cells were successfully derived from IVF blastocysts in media containing human recombinant basic fibroblast growth factor.

Plasminogen kringle 5 재조합 단백질에 의한 ERK1/2 활성화 및 세포골격 재배열 억제 (Inhibition of ERK1/2 Activation and Cytoskeleton Rearrangement by the Recombinant Protein of Plasminogen Kringle 5)

  • 하정민;김현경;김명래;조영애
    • 생명과학회지
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    • 제16권7호
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    • pp.1199-1206
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    • 2006
  • Plasminogen kringle 5는 plasminogen kringles 1-4로 구성된 내생의 혈관 신생 억제제인 angiostatin과 같이 내피세포의 분열을 강력하게 억제한다고 알려져 있다. 본 연구에서는 plasminogen kringle 5의 재조합 단백질을 효모 발현 체계에서 생산하여 내피세포의 이동에 대한 저해 효과와 이에 대한 작용기전을 조사하였다 재조합 단백질 PK5는 plasminogen의 Thr456에서 Phe546까지 이르는 cDNA 부분을 ${\alpha}-factor$ prepro-peptide의 분비 신호 서열 뒤에 도입하여 Pichia pastoris GS115에서 발현시켰다. 메탄올 유도 후 얻은 배양액을 S-spin column을 이용하여 정제하였다. 정제된 단백질을 SDS-PACE하였을 때 약 10kDa의 단일 밴드를 나타냄을 확인할 수 있었다. 정제된 PK5는 bFGF나 VEGF에 의해 유도된 인간의 제대 유래 내피 세포의 이동을 약 500nM의 $IC_{50}$ 값으로 농도 의존적으로 감소시켰다. 내피 세포에 PK5 500M을 처리한 결과 bFGF에 의해 유도된 ERK1/2의 인산화를 감소시켰다 또한, PK5는 bFGF에 의해 유도된 내피세포의 골격 재형성을 강력하게 억제하는 것으로 관찰되었다. 따라서, 이러한 결과들은 효모 생산 PK5가 내피세포의 이동을 효과적으로 억제하며, 이는 ERK1/2의 활성과 세포골격의 재배열을 억제함으로써 나타나는 것으로 부분적으로 설명될 수 있다.

대장균 발현시스템에서 단백질 전달 도메인 PTD가 인간 섬유아세포 성장인자(FGF2)의 N- 또는 C-말단에 결합 되었을 때 미치는 재조합 단백질 복합체의 발현 특성과 피부 투과능력 (Expression Properties and Skin Permeability of Human Basic Fibroblast Growth Factor with or without PTD Fused to N- or C-terminus in Escherichia coli)

  • 박인선;최충현;권보라;최영지;권태호;유강열;이주형;추영무
    • 생명과학회지
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    • 제28권3호
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    • pp.275-283
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    • 2018
  • 인간 섬유아세포 성장인자는 조직 생성 및 상처 치료 효과로 인해 상업적으로 중요한 치료제 또는 화장품소재로서 가능성이 높다. 피부 조직에 침투성을 부여하여 치료효과를 높이기 위해서 단백질 전달 도메인인 PTD를 FGF에 융합을 시도하고 있으며 피부로의 투과능력과 그로인한 치료 효과에 대한 연구도 진행되고 있다. 그러나, PTD가 FGF 단백질의 N- 또는 C-말단에 결합 되었을 때 PTD의 위치가 대장균 발현시스템에서 재조합단백질 접힘 및 안정성, 그리고 결국 피부로의 도입능력에 상당한 영향을 미치는지에 대해서는 알려져 있지 않다. 여기에서 우리는 대조군으로 PTD가 융합되지 않은 인간 염기성 섬유아세포 성장인자(FGF2)와 PTD가 FGF2의 N-말단 또는 C-말단에 융합된 FGF2 복합체를 중합효소연쇄반응(OE-PCR)을 통해 클로닝 하였다. 그 다음 이들 재조합 FGF2의 단백질 발현 및 특성을 확인하고 마우스 등 피부를 이용하여 조직 내로의 도입 능력을 조사 하였다. 결과적으로, 불용성 PTD-FGF2 (N 말단 융합)와는 달리 대조군 FGF2와 FGF2-PTD 융합 단백질(C- 말단 융합)은 가용성 형태로 발현되어 재조합단백질 획득이 용이하였고, 마우스 피부 도입능력은 FGF2-PTD 융합단백질에서만 나타내 보였다. 우리의 결과는 C-말단에 융합된 FGF2-PTD 융합단백질이 발현, 정제, 피부 투과능력의 측면에서 다른 두 옵션들보다 노동, 비용, 시간면에서 보다 더 효율적일 수 있음을 시사한다.

Isolation and Genetic Transformation of Primordial Germ Cell (PGC)-Derived Cells from Cattle, Goats, Rabbits and Rats

  • Lee, C.K.;Moore, K.;Scales, N.;Westhusin, M.;Newton, G.;Im, K.S.;Piedrahita, J.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권5호
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    • pp.587-594
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    • 2000
  • At present embryonic stem (ES) cells with confirmed pluripotential properties are only available in the mouse. Recently, we were able to isolate, culture and genetically transform primordial germ cell (PGC)-derived cells from pig embryos and demonstrate their ability to contribute to chimera development in the pig. In order to determine whether the system we developed could be used to isolate embryonic germ (EG) cells from other mammalian species, we placed isolated PGCs from cattle, goats, rabbits and rats in culture. Briefly, PGCs were isolated from fetuses of cow (day 30-50), goat (day 25), rabbit (day 15-18) and rat (day 11-12), and plated on STO feeder cells in Dulbecco's modified Eagle's medium (DMEM): Ham's F10 medium (1:1) supplemented with 0.01 mM nonessential amino acids, 2 mM L-glutamine, 0.1 mM $\beta$ - mercaptoethnol, soluble recombinant human stem cell factor (SCF; 40ng/ml), human basic fibroblast growth factor (bFGF; 20ng/ml) and human leukemia inhibitory factor (LIF; 20ng/ml). For maintenance of the cells, colonies were passed to fresh feeders every 7-10 days. In all species tested, we were able to obtain and maintain colonies with ES-like morphology. Their developmental potential was tested by alkaline phosphatase (AP) staining and in vitro differentiation assay. For genetic transformation, cells were electroporated with a construct containing the green fluorescent protein (GFP) under the control of the cytomegalovirus (CMV) promoter. GFP-expressing colonies were detected in cattle, rabbits and rats. These results suggest that PGC-derived cells from cattle, goats, rabbits and rats can be isolated, cultured, and genetically transformed, and provide the basis for analyzing their developmental potential and their possible use for the precise genetic modification of these species.