• Title/Summary/Keyword: ES cells

검색결과 221건 처리시간 0.032초

양수 세포를 이용한 인간배아줄기세포의 배양 (Human Amniotic Fluid Cells Support Expansion Culture of Human Embryonic Stem Cells)

  • 김희선;설혜원;안희진;오선경;구승엽;김석현;최영민;김정구;문신용
    • Clinical and Experimental Reproductive Medicine
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    • 제31권4호
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    • pp.261-271
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    • 2004
  • Objective: This study was performed to evaluate the possibility of prolonged culture of human embryonic stem cells (hESC; SNUhES2) on human amniotic fluid cells (hAFC), which had been storaged after karyotyping. Method: The hAFC was prepared for feeder layer in the presence of Chang's medium and STO medium (90% DMEM, 10% FBS) at $37^{circ}C$ in a 5% $CO_2$ in air atmosphere. Prior to use as a feeder layer, hAFC was mitotically inactivated by mitomycin C. The hESCs on hAFC were passaged mechanically every seven days with ES culture medium (80% DMEM/F12, 20% SR, bFGF). Results: The hAFC feeder layer support the growth of undifferentiated state of SNUhES2 for at least 59 passages thus far. SNUhES2 colonies on hAFC feeder appeared slightly angular and flatter shape as compared with circular and thicker colonies observed with STO feeder layer and showed higher level with complete undifferentiation in seven days. Like hESC cultured on STO feeders, SNUhES2 grown on hAFC expressed normal karyotype, positive for alkaline phosphatase activity, high telomerase activity, Oct-4, SSEA-3, SSEA-4, Tra-1-60 and Tra-1-81 and formed embryoid bodies (EBs). Conclusion: The hAFC supports undifferentiated growth of hESC. Therefore, these results may help to provide a clinically practicable method for expansion of hESC for cell therapies.

저산소 상태에서 우르솔산이 배아줄기세포 성장에 미치는 효과 (Effect of Ursolic Acid on the Development of Mouse Embryonic Stem Cells under Hypoxia)

  • 한기연;박재홍;오건봉;이세중
    • 생명과학회지
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    • 제23권10호
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    • pp.1223-1229
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    • 2013
  • 우르솔산(Ursolic acid)은 다양한 약재, 과일 그리고 야채 등으로 부터 분리되는 식물성 생리활성물질로서, 천연 항산화제로 널리 알려져 있지만, 배아줄기세포에서 우르솔산의 기능에 대한 연구는 아직까지 잘 이해되지 않고 있다. 본 연구에서는 저산소 상태에서 우르솔산이 배아줄기세포의 성장에 미치는 효과에 대해 조사하였다. 48시간 동안의 저산소 환경은 배아줄기세포의 미분화상태 및 전능성을 유지에 있어서 영향을 미치지 않았지만, 세포 내 활성산소종의 지속적인 생산과 이로 인한 lactate dehydrogenase 활성을 촉진 시켰다. 저산소에 의해 유도된 배아줄기세포의 산화적 스트레스는 $30{\mu}M$의 우르솔산의 처리로 인해 유의적으로 감소되었으며, 이러한 우르솔산의 활성산소 소거능력은 항산화제인 N-acetyl-cysteine (NAC)의 효과와 유사하였다. 저산소 환경은 또한 유의적으로 배아줄기세포의 생존과 증식을 감소 시킬 뿐만 아니라, 세포의 자살 및 노화를 유도함이 관찰되었지만, 강한 항산화 능력을 지닌 우르솔산은 세포를 저산소로부터 보호하여 정상수준으로 세포의 생존과 증식을 유지시키고, 세포 자살 관련 단백질(cleaved caspase-3, Bcl-2, 그리고 cIAP) 및 세포 노화 관련 단백질(beta-galactosidase)을 조절하는 탁월한 약리학적 효과를 가지고 있었다. 따라서 본 연구결과를 통해, 우르솔산은 강력한 천연 항산화제이며, 저산소에 의해 유도된 유해 기작을 제어함으로서, 배아줄기세포의 전능성을 유지시킬 수 있는 기능성 물질이라는 것을 알 수 있었다.

Translationally controlled tumor protein (TCTP) downregulates Oct4 expression in mouse pluripotent cells

  • Cheng, Xiang;Li, Junhua;Deng, Jie;Li, Zhenzhen;Meng, Shuyan;Wang, Huayan
    • BMB Reports
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    • 제45권1호
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    • pp.20-25
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    • 2012
  • The present study aimed to investigate the function of translationally controlled tumor protein (TCTP) in the regulation of Oct4 in mouse embryonic carcinoma P19 cells and mouse J1 embryonic stem (ES) cells. The mRNA level of endogenous TCTP in somatic cells was 2-4 folds higher than that in pluripotent P19 and J1 ES cells. Overexpression of TCTP in mouse pluripotent cells not only reduced the level of Oct4 transcription, but also decreased the pluripotency of stem cells. The N-terminal end of TCTP (amino acids 1-60) played an important role in suppressing the Oct4 promoter. Moreover, overexpression of TCTP in P19 cells suppressed the Oct4 promoter activity in a dose- and a time-dependent manner. In addition, knockdown of TCTP by small interfering RNA increased the expression of Oct4. Our study indicates that TCTP downregulates the Oct4 expression by binding the Sf1 site of Oct4 promoter in mouse pluripotent cells.

Neuroprotective Effects of Sacral Epidural Neuromodulation Following Spinal Cord Injury : An Experimental Study in Rats

  • Lee, Chang-Hyun;Hyun, Seung-Jae;Yoon, Cheol-Yong;Lim, Jae-Young;Jahng, Tae-Ahn;Kim, Ki-Jeong
    • Journal of Korean Neurosurgical Society
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    • 제52권6호
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    • pp.509-512
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    • 2012
  • Objective : The purpose of this study is to evaluate neuroprotective effect of sacral neuromodulation in rat spinal cord injury (SCI) model in the histological and functional aspects. Methods : Twenty-one female Sprague Dawley rats were randomly divided into 3 groups : the normal control group (CTL, n=7), the SCI with sham stimulation group (SCI, n=7), and the SCI with electrical stimulation (SCI+ES, n=7). Spinal cord was injured by dropping an impactor from 25 mm height. Sacral nerve electrical stimulation was performed by the following protocol : pulse duration, 0.1 ms; frequency, 20 Hz; stimulation time, 30 minutes; and stimulation duration, 4 weeks. Both locomotor function and histological examination were evaluated as scheduled. Results : The number of anterior horn cell was $12.3{\pm}5.7$ cells/high power field (HPF) in the CTL group, $7.8{\pm}4.9$ cells/HPF in the SCI group, and $6.9{\pm}5.5$ cells/HPF in the SCI+ES group, respectively. Both the SCI and the SCI+ES groups showed severe loss of anterior horn cells and myelin fibers compared with the CTL group. Cavitation and demyelinization of the nerve fibers has no significant difference between the SCI group and the SCI+ES group. Cavitation of dorsal column was more evident in only two rats of SCI group than the SCI+ES group. The locomotor function of all rats improved over time but there was no significant difference at any point in time between the SCI and the SCI+ES group. Conclusion : In a rat thoracic spinal cord contusion model, we observed that sacral neuromodulation did not prevent SCI-induced myelin loss and apoptosis.

LIF를 첨가한 배양액을 이용한 할구 유래 생쥐 배아줄기세포주의 확립 (Derivation of Mouse ES Cells from Isolated Blastomeres in Culture Media Supplemented with LIF)

  • 조재원;임천규;고덕성;강희정;전진현
    • 한국발생생물학회지:발생과생식
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    • 제12권1호
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    • pp.77-86
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    • 2008
  • 본 연구에서는 LIF의 첨가가 분리된 할구 유래의 생쥐 배아줄기세포 확립에 미치는 영향을 살펴보았다. 과배란 유도된 BDF1 생쥐로부터 2-세포기의 배아를 회수하여 각기 LIF가 첨가되지 않은 배양액과 1,000, 2,500, 5,000 U/mL의 LIF가 첨가된 배양액에서 포배기 배아까지 배양하였다. 배양된 포배기 배아는 차별화 염색 방법을 이용하여 내세포괴와 영양외배엽의 수를 계수하였다. 2,500 U/mL의 LIF 첨가 시 대조군($21.0{\pm}4.0$ vs. $15.9{\pm}5.0$, P<0.01)과 1,000 U/mL의 LIF를 처리한 군($21.0{\pm}4.0$ vs. $16.6{\pm}4.9$, P<0.05)에 비해서 내세포괴의 수가 유의하게(P<0.05) 증가하였다. 배아줄기세포주 확립 배양액으로는 FBS 대신 20% KSR과 0.01 mg/mL의 ACTH를 사용하였다. 2,500 U/mL의 LIF를 첨가 시 배아줄기세포 확립 효율이 36.7%(11/30)로 가장 높은 효율을 나타내었다. 이러한 배양 조건을 기본으로 하여 2-와 4-세포기 배아의 단일 할구를 분리하여 각기 21.4%(3/14)와 4.0%(1/20)의 효율로 단일 할구 배아줄기세포주를 확립할 수 있었다. 단일 할구로부터 확립된 배아줄기세포주와 이들에서 분화된 배아체는 세포면역학적 염색 방법과 RT-PCR 방법을 통해 그들의 미분화 특성과 삼배엽성 분화 특성을 확인할 수 있었다. 결론적으로 배양액에 LIF를 첨가하여 포배기 배아의 내세포괴 수를 증가시킬 수 있었으며, 분리된 할구의 배아줄기세포주 확립 효율을 향상시킬 수 있었다.

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거골에서 발생한 유윙 육종/원시신경 외배엽종양 - 1예 보고 - (Ewing's Sarcoma/PNET of the Talus - Report of a Case -)

  • 김선영;권혁포;노재수;조현오
    • 대한세포병리학회지
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    • 제15권2호
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    • pp.120-125
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    • 2004
  • Ewing's sarcoma (ES)/PNET is common in both axial and appendicular skeletons, but is extremely rare in the talus. Here, we report a case of ES/PNET of the left talus in a 29-year-old male patient diagnosed by fine needle aspiration cytology, and review the literature on similar cases. The cytological smears were composed of individually dispersed small round cells and occasional clusters of loosely cohesive cells. The tumor cells were fragile, frequently exhibiting naked nuclei. Two distinct types of cells were observed. The light (chief) cells displayed round or slightly oval nuclei with frequent indentations, generally inconspicuous nucleoli, and a thin rim of cytoplasm, which sometimes harbored small vacuoles. The dark cells were smaller, displaying scanty cytoplasm with dense hyperchromatic nuclei, intermixed with chief cells, and often manifesting as small molded groups. However, no significant nuclear pleomorphisms or mitoses were noted. Tumor cells in the ceil block revealed positive cytoplasmic glycogen, as determined by a PAS stain with diastase control, and also exhibited positive immunoreactivity for CD99.

Characterization of Bovine NANOG5'-flanking Region during Differentiation of Mouse Embryonic Stem Cells

  • Jang, Hye-Jeong;Park, Hwan Hee;Tran, Thi Thuy Linh;Lee, Hak-Kyo;Song, Ki-Duk;Lee, Woon Kyu
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권12호
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    • pp.1721-1728
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    • 2015
  • Embryonic stem cells (ESCs) have been used as a powerful tool for research including gene manipulated animal models and the study of developmental gene regulation. Among the critical regulatory factors that maintain the pluripotency and self-renewal of undifferentiated ESCs, NANOG plays a very important role. Nevertheless, because pluripotency maintaining factors and specific markers for livestock ESCs have not yet been probed, few studies of the NANOG gene from domestic animals including bovine have been reported. Therefore, we chose mouse ESCs in order to understand and compare NANOG expression between bovine, human, and mouse during ESCs differentiation. We cloned a 600 bp (-420/+181) bovine NANOG 5'-flanking region, and tagged it with humanized recombinant green fluorescent protein (hrGFP) as a tracing reporter. Very high GFP expression for bovine NANOG promoter was observed in the mouse ESC line. GFP expression was monitored upon ESC differentiation and was gradually reduced along with differentiation toward neurons and adipocyte cells. Activity of bovine NANOG (-420/+181) promoter was compared with already known mouse and human NANOG promoters in mouse ESC and they were likely to show a similar pattern of regulation. In conclusion, bovine NANOG 5-flanking region functions in mouse ES cells and has characteristics similar to those of mouse and human. These results suggest that bovine gene function studied in mouse ES cells should be evaluated and extrapolated for application to characterization of bovine ES cells.

Formation of Functional Cardiomyocytes Derived from Mouse Embryonic Stem Cells

  • 신현아;김은영;이영재;이금실;조황윤;박세필;임진호
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2003년도 학술발표대회 발표논문초록집
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    • pp.76-76
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    • 2003
  • Pluripotent embryonic stem cells can differentiate into beating cardiomyocytes with proper culture conditions and stimulants via embryo-like aggregates. We describe here the use of mouse embryonic stem (mES03) cells as a reproducible differentiation system for cardiomyocyte. mES03 cells growing in colonies were dissociated and allowed to re-aggregated in suspension [embryoid body (EB) formation〕. To induce cardiomyocytic differentiation, cells were exposed to 0.75% dimethyl sulfoxide (DMSO) during EB formation for 4 days and then another 4 days without DMSO (4+/4-). Thus treated EB was plated onto gelatin-coated dishes for differentiation. Spontaneously contracting colonies which appeared in approximately 4~5 days upon differentiation were mechanically dissected, enzymatically dispersed, plated onto coverslips, and then incubated for another 48~72 hrs. By RT-PCR, robust expression of cardiac myosin heavy chain $\alpha$, cardiac muscle heavy polypeptide 7 $\beta$($\beta$-MHC), cardiac transcription factor GATA4, and skeletal muscle-specific $\alpha$$_1$-subunit of the L-type calcium channel ($\alpha$$_1$CaC $h_{sm}$ ) were detected as early as 8 days after EB formation, but message of cardiac muscle-specific $\alpha$$_1$-subunit of the L-type calcium channel ($\alpha$$_1$CaCh) were reveled at a low level. In contrast, expression of myosin light chain (MLC-2V) and atrial natriuretic factor (ANF) were not detected during EB formation for 8 days. However, a strong expression of the atrial-specific ANF gene was expressed from day 8 onward, which were remained constant in EB. (cardiac specialization and terminal differentiation stage). Electrophysiological examination of spontaneously contracting cells showed ventricle-like action potential 17 days after the EB formation. This study indicates that mES03 cell-derived cardiomyocytes via 4+/4- protocol displayed biochemical and electrophysiological properties of subpopulation of cardiomyocytes.

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Feasibility of Coculture Method for Production of Chimeric Mice Using J1 Embryonic Stem Cells

  • Shin Hye-Jun;Park Sung-Sik;Kim Sun-Uk;Cho Sang-Mi;Han Ying-Hao;Kim Hyun-Sun;Kim Sang-Geun;Lee Dong-Seok;Yu Dae-Yeul
    • 대한의생명과학회지
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    • 제10권4호
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    • pp.391-395
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    • 2004
  • The demand for the production of gene-defective mice from embryonic stem (ES) cells is increasing to clarify decisive gene function in vivo. Although blastocyst injection is widely used to generate ES cell-mediated knockout mice, coculture method has been alternatively used because of several advantages, such as low cost and simple procedure. Thus, this experiment was designed to demonstrate the feasibility of the coculture method using J1 ES cells, which are known to be efficient for blastocyst injection. Eight-cell embryos were harvested from 2.5 days post-coitum (dpc), denuded with acid tyrode's solution, and transferred onto trypsinized J1 ES cells. Aggregation was carried out following two typical methods, which are simple coculture method and aggregation in groove prepared by aggregation needle. Successfully aggregated-embryos were developed to blastocysts for 24 h and transferred into uterus of pseudo-pregnant foster mother. Chimeric offspring was judged by coat pigmentation. In this study, we could obtain chimeric mice from all the two aggregation methods, but the chimera production efficiencies in coculture using groove were three times higher at least than those in the other group. In conclusion, these observations suggest that coculture method should be available for production of knockout mice from J1 ES cells. Presently, the germ-line transmission rates of the chimeras produced from the two methods are under investigation.

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형질전환생쥐의 제조 수단으로서 유전자 적중법 및 함정법의 개발 현황 (A Current Advance of Gene Targeting and Gene Trapping Methods As Tools of Making Transgenic Mice)

  • 강해묵
    • 한국발생생물학회지:발생과생식
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    • 제14권4호
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    • pp.215-223
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    • 2010
  • 배아줄기세포를 이용한 형질전환동물의 제조는 유전자의 기능 연구에 필수적이다. 특히 유전자 파괴 생쥐는 유전자의 기능 연구뿐만 아니라 사람 질병 연구에 중요한 모델이 되어 왔다. 유전자 적중법(gene targeting)과 유전자 함정법(gene trapping)은 ES 세포에서 녹아웃(knockout) 생쥐를 제조하는 대표적인 방법이다. 20여 년 전 유전자 적중법과 함정법이 최초로 개발된 이후에 이 기술은 많은 변화를 거쳤다. 특히 상동재조합에 기초한 전통적 유전자 적중법은 대량 제조기반의 조건부 유전자 적중법의 개발로 이어졌고, 유전자 적중법 및 유전자 함정법의 장점 요소의 조합은 유전자를 파괴하는 범위를 넓혔고, 유전자 적중을 더욱 효율적으로 만들었다. 이런 기술은 특정 유전자를 표적으로 하는 다양한 종류의 돌연변이 형질전환동물을 제조할 수 있게 하여 포스트게놈 시대에 요구되는 전체 유전체의 기능 연구를 더욱 효과적으로 진행시켜 줄 것이다.