• Title/Summary/Keyword: Mammalian cells

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Cytocompatible Coating of Individual Mammalian Cells with Tannic Acid-Zn Complex (타닌산-아연 복합체를 이용한 단일수준에서의 동물세포 코팅)

  • Lee, Juno
    • KSBB Journal
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    • v.32 no.2
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    • pp.160-167
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    • 2017
  • Coating of individual cells with organic or inorganic materials has drawn a great deal of attention, because it provides the cells with physicochemical durability, which would contribute to the development of bioreactors, biosensor, and lab-on-a-chip, as well as to the fundamental studies in single cell-based biology. Although many strategies have been developed for coating of microbial cells, limited methods are available to coat mammalian cells because most mammalian cells do not have a robust membrane or exoskeleton. Instead, they are enclosed in a lipid bilayer, which is fluidic and vulnerable to changes in its environments. It is more difficult to treat mammalian cells in vitro than microbial cells because the surfaces of mammalian cells are not protected or reinforced by a tough coat. In this work, we report a cytocompatible and degradable nanocoat for mammalian cells. Three types of mammalian cells (HeLa cells, NIH 3T3 fibroblasts, and Jurkat T cells) were individually coated within metal-polyphenol. To maintain the viability of the mammalian cells, we performed the whole processes under strictly physiological culture conditions, and carefully selected nontoxic materials.

Hibernation of Mammalian Cells at a Living Body Temperature

  • Hyon, Suong-Hyu;Kim, Do-Hoon
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.6 no.4
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    • pp.289-292
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    • 2001
  • The present study revealed that polyphenol induces the hibernation of mammalian cells at the living body temperature. It was found that polyphenol is a cytostatic sleeping agent for mam-malian cells, where almost all cells resume proliferation after the hibernation period and cell death seldom occurs. By changing the concentration for polyphenol, various mammalian cells can be stored under different conditions, such as temporary sleep, and hibernation condi-tions.

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A plasmid vector faciliting gene expression in both yeast and mammalian cells

  • Lee, Tae-Ho
    • Journal of Microbiology
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    • v.35 no.2
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    • pp.149-151
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    • 1997
  • A plasmid vector with combined features of yeast shuttle vector and mammalian expression vector was constructed to facilitate expression of cloned gene in both cell-types. All necessary elements required for plasmid maintenance and selection in E. coli, yeast and mammalian cells were size-economically arranged in this plasmid. The numan cytomegalovirus (CMV) immediate early promoter and yeast GAL1 promoter were sequentially placed in front of the gene to be expressed. The synthetic splicing donor and acceptor sequences were inserted into the immediate upstream and downstream of the GAL1 promotor, allowing the CMV promotor to direct the expression of a given gene in mammalian cell environment by splicing out the interfering GAL1 promotor sequence. When the resulting vector containing LacZ as a gene was introduced into yeast and mammalian cells, both cells efficiently produced .betha.-galactosidase, dimonstrating its dual host usage.

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An immunohistochemical study on the endocrine pancreas of the bean goose, Anser fabalis, Latham (기러기 췌장 내분비세포에 대한 면역조직화학적 연구)

  • Lee, Jae-hyun;Ku, Sae-kwang;Lee, Hyeung-sik
    • Korean Journal of Veterinary Research
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    • v.39 no.3
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    • pp.448-454
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    • 1999
  • The regional distribution and relative frequency of the endocrine cells in the pancreas of the bean goose were investigated by immunohistochemical methods using 6 types of the specific antisera. Spindle shaped serotonin-immunoreactive cells were detected in the exocrine portions. Spherical or spindle shaped glucagon-immunoreactive cells were observed in the exocrine and dark and mammalian type islets. In the dark type islets, numerous cells were dispersed throughout whole islets but they were located in the peripheral regions of the mammalian type islets. No glucagon-immunoreactive cells were detected in light type islets. Round or spherical shaped insulin-immunoreactive cells were observed in the exocrine and dark, light and mammalian type islets. They were observed in the exocrine regions with a few numbers. Extremely rare cells were detected in central portion of the dark type islets but moderate to numerous cells were found in the central regions of the mammalian and light type islets, respectively. Spherical or spindle shaped somatostatin-immunoreactive cells were observed in the exocrine and dark, light and mammalian type islets. A few single cells were detected in the exocrine portions. In the dark type islets, numerous cells were dispersed throughout whole islets but a few to moderate numbers of cells were located in the peripheral regions of the light and mammalian type islets. Moderate numbers of the bovine pancreatic polypeptide-immunoreactive cells were found in the exocrine portions with round, spherical or spindle shape. But no bovine Sp-1/chromogranin-immunoreactive cells were observed in this study.

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Ice-Binding Protein Derived from Glaciozyma Can Improve the Viability of Cryopreserved Mammalian Cells

  • Kim, Hak Jun;Shim, Hye Eun;Lee, Jun Hyuck;Kang, Yong-Cheol;Hur, Young Baek
    • Journal of Microbiology and Biotechnology
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    • v.25 no.12
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    • pp.1989-1996
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    • 2015
  • Ice-binding proteins (IBPs) can inhibit ice recrystallization (IR), a major cause of cell death during cryopreservation. IBPs are hypothesized to improve cell viability after cryopreservation by alleviating the cryoinjury caused by IR. In our previous studies, we showed that supplementation of the freezing medium with the recombinant IBP of the Arctic yeast Glaciozyma sp. (designated as LeIBP) could reduce post-thaw hemolysis of human red blood cells and increase the survival of cryopreserved diatoms. Here, we showed that LeIBP could improve the viability of cryopreserved mammalian cells. Human cervical cancer cells (HeLa), mouse fibroblasts (NIH/3T3), human preosteoblasts (MC3T3-E1), Chinese hamster ovary cells (CHO-K1), and human keratinocytes (HaCaT) were evaluated. These mammalian cells were frozen in dimethyl sulfoxide (DMSO)/fetal bovine serum (FBS) solution with or without 0.1 mg/ml LeIBP at a cooling rate of -1℃/min in a -80℃ freezer overnight. The minimum effective concentration (0.1 mg/ml) of LeIBP was determined, based on the viability of HeLa cells after treatment with LeIBP during cryopreservation and the IR inhibition assay results. The post-thaw viability of mammalian cells was examined. In all cases, cell viability was significantly enhanced by more than 10% by LeIBP supplementation in 5% DMSO/5% FBS: viability increased by 20% for HeLa cells, 28% for NIH/3T3 cells, 21% for MC3T3-E1, 10% for CHO-K1, and 20% for HaCaT. Furthermore, addition of LeIBP reduced the concentrations of toxic DMSO and FBS down to 5%. Therefore, we demonstrated that LeIBP can increase the viability of cryopreserved mammalian cells by inhibiting IR.

Production of Newcastle vaccine using continuous mammalian cells

  • Gwak, Il-Yeong;Choe, Yeon-Suk;Jeong, Yeon-Ho;Jeon, Gye-Taek;Kim, Ik-Hwan
    • 한국생물공학회:학술대회논문집
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    • 2002.04a
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    • pp.281-284
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    • 2002
  • Specific pathogen free (SPF) eggs have been used to produce live vaccines. however, their application causes many problems such as cost, space and waste disposal. The substitution of mammalian cells for SPF eggs offers a desirable system of vaccine production. In this study, mammalian cells were tested for the infection of Newcastle disease virus (NDV). As a result, DF-I and MDBK cells showed high virus productivity compared to the other mammalian cells. For the highest productivity of NDV, the optimal multiplicity of infection (M.O.I.) in DF-I or MDBK cells was determined to be 0.2 or 0.5 M.O.I., respectively.

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Development of the Mammalian Expression Vector System that can be Induced by IPTG and/or Lactose

  • Myung, Seung-Hyun;Park, Junghee;Han, Ji-Hye;Kim, Tae-Hyoung
    • Journal of Microbiology and Biotechnology
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    • v.30 no.8
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    • pp.1124-1131
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    • 2020
  • Techniques used for the regulation of gene expression facilitate studies of gene function and treatment of diseases via gene therapy. Many tools have been developed for the regulation of gene expression in mammalian cells. The Lac operon system induced with isopropyl β-D-1-thiogalactopyranoside (IPTG) is one of the employed inducible systems. IPTG mimics the molecular structure of allolactose and has a strong affinity for the corresponding repressor. IPTG is known to rapidly penetrate into mammalian cells and exhibits low toxicity. In the present study, we developed a new inducible expression system that could regulate the expression of genes in mammalian cells using IPTG. Here we confirm that unlike other vector systems based on the Lac operon, this expression system allows regulation of gene expression with lactose in the mammalian cells upon transfection. The co-treatment with IPTG and lactose could improve the regulatory efficiency of the specific target gene expression. The regulation of gene expression with lactose has several benefits. Lactose is safe in humans as compared to other chemical substances and is easily available, making this technique very cost-effective.

Rapid Isolation of Mitochondrial DNA-Depleted Mammalian Cells by Ethidium Bromide and Dideoxycytidine Treatments

  • Yoon, Young Geol;Oh, Yoo Jin;Yoo, Young Hyun
    • Journal of Applied Biological Chemistry
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    • v.57 no.3
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    • pp.259-265
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    • 2014
  • Mitochondrial DNA (mtDNA)-depleted (${\rho}^0$) cells are often used as mtDNA recipients to study the interaction between the nucleus and mitochondria in mammalian cells. Therefore, it is crucial to obtain mtDNA-depleted cells with many different nuclear backgrounds for the study. Here, we demonstrate a rapid and reliable method to isolate mammalian mtDNA-depleted cells involving treatment with the antimitochondrial agents ethidium bromide (EtBr) and 2',3'-dideoxycytidine (ddC). After a short exposure to EtBr or ddC, followed by rapid clonal isolation, we were able to generate viable mtDNA-depleted cells from mouse and human cells and were able to successfully repopulate them with exogenous mitochondria from platelets isolated from mouse and human blood samples. These mtDNA-depleted cells can be used to characterize the nuclear mitochondrial interactions and to study mtDNA-associated defects in mammalian cells. Our method of isolating mtDNA-depleted cells is practical and applicable to a variety of cell types.

Stable Isotope Labeling of Proteins in Mammalian Cells

  • Lee, KyungRyun;Lee, Jung Ho
    • Journal of the Korean Magnetic Resonance Society
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    • v.24 no.3
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    • pp.77-85
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    • 2020
  • Stable isotope enrichment in proteins is necessary for high-resolution nuclear magnetic resonance (NMR) experiments. Although methods for 13C, 15N and 2H-enrichment in prokaryotic cells are well established, full processing and correct folding of complex protein systems require higher organisms as the expression host. In the present study, we review recent efforts to enrich stable isotopes in mammalian cells for protein NMR studies.

Effect of bear's gall on mammalian cell growth (웅담이 mammalian세포의 생육에 미치는 영향)

  • Joo, Hyun-Kyu;Kim, Youn-Uck;Park, Dong-Ki
    • Applied Biological Chemistry
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    • v.34 no.3
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    • pp.231-234
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    • 1991
  • In the present investigation we have studied the effect of bear's gall on mammalian cells and demonstrated that COS-7 cells, which were derived Monkey kidney cells, had shown almost same extent of growth with 78 hrs in 10% FCS Dulbecco's Modified Eagle's medium with bear's gall and without bear's gall. But the hybridoma cells which were fused murine myeloma cells and the rat spleen cells for monoclonal antibody production died almost within 48 hrs. To investigate the effect of biosynthetic mechanism, cDNA were transfected to COS-7 cells, and it was shown that cDNA-transfected COS-7 cell had produced 30-40% less the amount of recombinant protein than the medium without bear's gall.

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