• 제목/요약/키워드: human stem cell

검색결과 828건 처리시간 0.028초

The Hyaluronic Acid Receptor (CD44) is Expressed in Early Stage Embryos of Porcine

  • Lee, S.E.;Kim, S.W.;Lee, Y.K.;Lee, P.Y.;Han, J.H.;Park, C.G.;Baek, K.R.;Lee, H.G.;Lee, J.Y.;Chang, W.K.;Park, J.K.
    • 한국동물번식학회:학술대회논문집
    • /
    • 한국동물번식학회 2004년도 춘계학술발표대회
    • /
    • pp.236-236
    • /
    • 2004
  • Hyaluronic acid (HA) is one of the most abundant glycosaminoglycans (GAGs) in the female reproductive tract such as uterine, oviductal and follicular fluids in mouse, pig, cattle and human. CD44 is the principal cell membrane receptor for HA, expressed from the 1-to 8-cell stage in human embryos, during post-implantation mouse and bovine embryogenesis and on the surface of differentiated embryonic stem cells. (omitted)

  • PDF

SOX 유전자의 다양성 (Multiple Facets of Sox Gene)

  • 홍경원;김희수
    • 생명과학회지
    • /
    • 제14권4호
    • /
    • pp.716-725
    • /
    • 2004
  • Sox 패밀리는 동물계 전체에서 찾아지는 전사인자이고, HMG라는 특이적인 DNA결합 도메인을 가진다. 이 Sox 패밀리는 HMG 도메인의 아미노산 서열을 바탕으로 현재 10개의 그룹으로 분류된다. 각 그룹의 오소로그한 Sox 단백질들은 선충에서 인간까지 상당한 보존성을 보인다. HMG 도메인은 전사 촉진 좌위에 결합하고 다른 전사인자들의 결합을 조절함으로써 동물 발생과정의 다양한 세포에서 발현되어 그들의 분화에 결정적인 영향을 미친다. 최근 많은 분자 생물학자들이 Sox 유전자와 관련된 질병, 진화, 그리고 계통 분류 등에 많은 관심을 보이고 있다. 특히, 줄기세포에서 Sox 유전자의 연구는 그들의 생물학적인 기능을 이해하기 위해 꼭 필요한 분야이다. 아마도 이 Sox 유전자들을 이해함으로써, 인간의 유전적 질병과 인간을 포함한 전체 동물계의 진화를 이해할 수 있는 열쇠가 될 것이라 생각한다.

렌티바이러스와 아데노바이러스를 통하여 쥐의 중간엽줄기세포에 사람 나트륨/옥소 공동수송체 유전자를 전달하였을 때의 발현성능 비교 (Comparison of Human Sodium/Iodide Symporter (hNIS) Gene Expressions between Lentiviral and Adenoviral Vectors in Rat Mesenchymal Stem Cells)

  • 박소연;김성진;이원우;이희란;김현주;정준기;김상은
    • Nuclear Medicine and Molecular Imaging
    • /
    • 제42권5호
    • /
    • pp.394-400
    • /
    • 2008
  • 목적: 줄기 세포에서 렌티바이러스와 아데노바이러스를 이용해 유전자를 전달하였을 때 유전자 발현 정도를 정량적으로 비교하는 연구는 보고되지 않았다. 저자들은 쥐의 중간엽줄기세포(이하 rMSC)에 사람 나트륨/옥소 공동수송체 (이하 hNIS) 유전자를 렌티바이러스와 아데노바이러스를 통하여 전달하고 발현 정도를 정량적으로 비교해 보았다. 대상 및 방법: hNIS를 발현하는 rMSE (lenti-hNIS-rMSC)의 생산은 hNIS유전자를 렌티바이러스 벡터인 pLenti/UbC/V5-DEST (Invitrogen)에 클로닝하여 pLenti-hNIS를 얻은 후 rMSC에 감염시켜서 3주간 blasticidin으로 선별하였다. hNIS를 발현하는 재조합 아데노바이러스(Rad-hNIS)는 homologous recombination 방법에 의하여 생산하였으며 Rad-hNIS의 rMSC에 대한 transduction efficiency는 Rad-GFP를 사용하여 MOI 1, 5, 20, 고리고 100에서 평가하였고 그 결과는 각각 $19.1{\pm}4.7%$, $54.0{\pm}6.4%$, $85.7{\pm}8.7%$, 그리고 $98.4{\pm}1.3%$이었다. 두 바이러스 전달 시스템에서 hNIS의 발현정도를 ummunocytochemistry, western blot 그리고 방사성옥소 섭취실험을 통해 평가하였다. 결과: Immunocytochemistry와 western blot으로 hNIS 단백질의 양을 비교하였을 때 lenti-hNIS-rMSC에서 발현하는 hNIS 단백질의 양은 Rad-hNIS를 rMSC에 MOI 20으로 감염시킨 경우보다는 많았으나 MOI 50 보다는 작았다. 그러나 방사성옥소 섭취실험에서 lenti-hNIS-rMSC ($29,704{\pm}6,659\;picomole/10^6\;cells$)는 MOI 100의 Rad-hNIS를 rMSE에 감염시킨 경우($6,168{\pm}2,134\;picomole/10^6\;cells)$ 보다도 높은 섭취율을 보였다. 결론: 렌티바이러스를 통하여 hNIS를 rMSC에서 발현하도록 했을 때 아데노바이러스를 전달 벡터로 사용한 경우에 비하여 단백질 발현 양은 상대적으로 적었으나 hNIS의 기능은 더 우수하였다. hNIS를 리포터 유전자로 사용한 줄기세포추적은 벡터에 따른 유전자 발현효율의 차이를 고려하고 시행되어야 할 것으로 생각한다.

Enhanced Green Fluorescent Protein Gene under the Regulation of Human Oct4 Promoter as a Marker to Identify Reprogramming of Human Fibroblasts

  • Heo, Soon-Young;Ahn, Kwang-Sung;Kang, Jee-Hyun;Shim, Ho-Sup
    • Reproductive and Developmental Biology
    • /
    • 제32권2호
    • /
    • pp.135-140
    • /
    • 2008
  • Recent studies on nuclear transfer and induced pluripotent stem cells have demonstrated that differentiated somatic cells can be returned to the undifferentiated state by reversing their developmental process. These epigenetically reprogrammed somatic cells may again be differentiated into various cell types, and used for cell replacement therapies through autologous transplantation to treat many degenerative diseases. To date, however, reprogramming of somatic cells into undifferentiated cells has been extremely inefficient. Hence, reliable markers to identify the event of reprogramming would assist effective selection of reprogrammed cells. In this study, a transgene construct encoding enhanced green fluorescent protein (EGFP) under the regulation of human Oct4 promoter was developed as a reporter for the reprogramming of somatic cells. Microinjection of the transgene construct into pronuclei of fertilized mouse eggs resulted in the emission of green fluorescence, suggesting that the undifferentiated cytoplasmic environment provided by fertilized eggs induces the expression of EGFP. Next, the transgene construct was introduced into human embryonic fibroblasts, and the nuclei from these cells were transferred into enucleated porcine oocytes. Along with their in vitro development, nuclear transfer embryos emitted green fluorescence, suggesting the reprogramming of donor nuclei in nuclear transfer embryos. The results of the present study demonstrate that expression of the transgene under the regulation of human Oct4 promoter coincides with epigenetic reprogramming, and may be used as a convenient marker that non-invasively reflects reprogramming of somatic cells.

역전사 중합효소 연쇄반응을 이용한 표면 적심성에 따른 골수유래 줄기세포의 생물학적 평가 (Biological Evaluation of Bone Marrow-Derived Stem Cells onto Different Wettability by RT-PCR)

  • 김은정;박종수;김문석;조선행;이종문;이해방;강길선
    • 폴리머
    • /
    • 제28권3호
    • /
    • pp.218-224
    • /
    • 2004
  • 고분자 생체재료에서 세포부착과 성장은 재료의 적심성, 화학구조, 표면전하 및 거칠기 등의 표면 성질에 의존한다. 본 연구에서는 저밀도 폴리에틸렌 필름 (LDPE)의 표면 적심성과 골수유래 줄기세포의 증식 및 성장성을 측정하기 위하여 플라즈마 처리를 실시하였으며 개질된 필름 표면의 특성을 조사하였다. 또한 LDPE 필름에서의 세포부착과 증식률은 세포수 관찰과 역전사 중합효소 연쇄반응으로 확인하였다. 표면성질의 하나인 물 접촉각 측정 결과 플라즈마 처리 시간이 길어짐에 따라 필름표면의 접촉각이 감소하였으며 암형성 유전자와 암억제 유전자의 발현률이 60∼70$^{\circ}$ 사이에서 높음을 확인할 수 있었다. 또한 세포수 관찰을 통해 접촉각이 60∼70$^{\circ}$인 표면에서 세포 증식률이 우수하여 표면성질이 세포의 성장과 분화에 중요함을 확인하였다.

Improvement of Motor Behavior of Parkinson′s Disease Animal Model by Nurr1-Transfected Human Embryonic Stem Cells.

  • Lee, Chang-Hyun;Cho, Hwang-Yoon;Kil, Kwang-Soo;Lee, Gun-Soup;Yoon, Ji-Yeon;Lee, Young-Jae;Kim, Eun-Young;Park, Se-Pill;Lim, Jin-Ho
    • 한국발생생물학회:학술대회논문집
    • /
    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
    • /
    • pp.103-103
    • /
    • 2003
  • The purpose of this study is to evaluate an efficacy of in vitro differentiated human embryonic stem (hES, MB03) cells expressing Nurr1 in relief of symptomatic motor behavior of Parkinson's disease (PD) animal models MB03 was genetically modified to express Nurr1 protein and was induced to differentiate according to 2-/4+ protocol using retinoic acid and ascorbic acid. The differentiation-induced cells were selected for 10 to 20 days thereafter in N2 medium. Upon selection, cells expressing GFAP, TH, or NF200 were 38.8%, 11%, and 20.5%, respectively. in order to examine therapeutic effects of the differentiated cells in PD animal model, rats were unilaterally lesioned by administration of 6-kydroxydopamine HCI (6-OHDA) into medial forebrain region (MFB, AP -4.4 mm, ML 1.2 mm, DV 78 mm with incision bar set at -2.4 mm), as a reference to bregma and the surface of the skull. Confirmation of successful lesion by apomorphine-induced rotational behavior, differentiated cells were transplanted into the striatum (AP 1.0, ML 3.5, DV -5.0; AP 0.6, ML 2.5, DV -4.5). Improvements of asymmetric motor behavior by the transplantation were examined every two weeks after the surgery. In two weeks, numbers of rotation by the experimental rats were $-14.8 \pm 33.9%$ (P<0.05) of the number before transplantation, however, the ratio increased slightly to $13.6 \pm 56.3%$ in six weeks. In contrast, the ratio of sham-grafted animals ranged from 112.3+8.5% to 139.2+28.9% during the examination. Immunohistochemical studies further confirmed the presence, survival, migration, and expression of TH of the transplanted human cells.

  • PDF

Tumor necrosis factor-inducible gene 6 interacts with CD44, which is involved in fate-change of hepatic stellate cells

  • Wang, Sihyung;Kim, Jieun;Lee, Chanbin;Jung, Youngmi
    • BMB Reports
    • /
    • 제53권8호
    • /
    • pp.425-430
    • /
    • 2020
  • Tumor necrosis factor-inducible gene 6 protein (TSG-6) is a cytokine secreted by mesenchymal stem cells (MSCs) and regulates MSC stemness. We previously reported that TSG-6 changes primary human hepatic stellate cells (pHSCs) into stem-like cells by activating yes-associated protein-1 (YAP-1). However, the molecular mechanism behind the reprogramming action of TSG-6 in pHSCs remains unknown. Cluster of differentiation 44 (CD44) is a transmembrane protein that has multiple functions depending on the ligand it is binding, and it is involved in various signaling pathways, including the Wnt/β-catenin pathway. Given that β-catenin influences stemness and acts downstream of CD44, we hypothesized that TSG-6 interacts with the CD44 receptor and stimulates β-catenin to activate YAP-1 during TSG-6-mediated transdifferentiation of HSCs. Immunoprecipitation assays showed the interaction of TSG-6 with CD44, and immunofluorescence staining analyses revealed the colocalization of TSG-6 and CD44 at the plasma membrane of TSG-6-treated pHSCs. In addition, TSG-6 treatment upregulated the inactive form of phosphorylated glycogen synthase kinase (GSK)-3β, which is a negative regulator of β-catenin, and promoted nuclear accumulation of active/nonphosphorylated β-catenin, eventually leading to the activation of YAP-1. However, CD44 suppression in pHSCs following CD44 siRNA treatment blocked the activation of β-catenin and YAP-1, which inhibited the transition of TSG-6-treated HSCs into stem-like cells. Therefore, these findings demonstrate that TSG-6 interacts with CD44 and activates β-catenin and YAP-1 during the conversion of TSG-6-treated pHSCs into stem-like cells, suggesting that this novel pathway is an effective therapeutic target for controlling liver disease.

Suppression of HIF-1α by Valproic Acid Sustains Self-Renewal of Mouse Embryonic Stem Cells under Hypoxia In Vitro

  • Lee, Hyo-Jong;Kim, Kyu-Won
    • Biomolecules & Therapeutics
    • /
    • 제20권3호
    • /
    • pp.280-285
    • /
    • 2012
  • The developing embryo naturally experiences relatively low oxygen conditions in vivo. Under in vitro hypoxia, mouse embryonic stem cells (mESCs) lose their self-renewal activity and display an early differentiated morphology mediated by the hypoxia-inducible factor-$1{\alpha}$ (HIF-$1{\alpha}$). Previously, we demonstrated that histone deacetylase (HDAC) is activated by hypoxia and increases the protein stability and transcriptional activity of HIF-$1{\alpha}$ in many human cancer cells. Furthermore HDAC1 and 3 mediate the differentiation of mECSs and hematopoietic stem cells. However, the role of HDACs and their inhibitors in hypoxia-induced early differentiation of mESCs remains largely unknown. Here, we examined the effects of several histone deacetylase inhibitors (HDACIs) on the self-renewal properties of mESCs under hypoxia. Inhibition of HDAC under hypoxia effectively decreased the HIF-$1{\alpha}$ protein levels and substantially improved the expression of the LIF-specific receptor (LIFR) and phosphorylated-STAT3 in mESCs. In particular, valproic acid (VPA), a pan HDACI, showed dramatic changes in HIF-$1{\alpha}$ protein levels and LIFR protein expression levels compared to other HDACIs, including sodium butyrate (SB), trichostatin A (TSA), and apicidin (AP). Importantly, our RT-PCR data and alkaline phosphatase assays indicate that VPA helps to maintain the self-renewal activity of mESCs under hypoxia. Taken together, these results suggest that VPA may block the early differentiation of mESCs under hypoxia via the destabilization of HIF-$1{\alpha}$.

Vitamin C promotes the early reprogramming of fetal canine fibroblasts into induced pluripotent stem cells

  • Sang Eun Kim;Jun Sung Lee;Keon Bong Oh;Jeong Ho Hwang
    • 한국동물생명공학회지
    • /
    • 제38권4호
    • /
    • pp.199-208
    • /
    • 2023
  • Background: Canine induced pluripotent stem cells (iPSCs) are an attractive source for veterinary regenerative medicine, disease modeling, and drug development. Here we used vitamin C (Vc) to improve the reprogramming efficiency of canine iPSCs, and its functions in the reprogramming process were elucidated. Methods: Retroviral transduction of Oct4, Sox2, Klf4, c-Myc (OSKM), and GFP was employed to induce reprogramming in canine fetal fibroblasts. Following transduction, the culture medium was subsequently replaced with ESC medium containing Vc to determine the effect on reprogramming activity. Results: The number of AP-positive iPSC colonies dramatically increased in culture conditions supplemented with Vc. Vc enhanced the efficacy of retrovirus transduction, which appears to be correlated with enhanced cell proliferation capacity. To confirm the characteristics of the Vc-treated iPSCs, the cells were cultured to passage 5, and pluripotency markers including Oct4, Sox2, Nanog, and Tra-1-60 were observed by immunocytochemistry. The expression of endogenous pluripotent genes (Oct4, Nanog, Rex1, and telomerase) were also verified by PCR. The complete silencing of exogenously transduced human OSKM factors was observed exclusively in canine iPSCs treated with Vc. Canine iPSCs treated with Vc are capable of forming embryoid bodies in vitro and have spontaneously differentiated into three germ layers. Conclusions: Our findings emphasize a straightforward method for enhancing the efficiency of canine iPSC generation and provide insight into the Vc effect on the reprogramming process.

Blood Vessel Regeneration using Human Umbilical Cord-derived Endothelial Progenitor Cells in Cyclophosphamide-treated Immune-deficient Mice

  • Kwon, Soon-Keun;Ko, Yu-Jin;Cho, Tae-Jun;Park, Eu-Gene;Kang, Byung-Chul;Lee, Gene;Cho, Jae-Jin
    • International Journal of Oral Biology
    • /
    • 제36권3호
    • /
    • pp.117-122
    • /
    • 2011
  • Endothelial cells are a vital constituent of most mammalian organs and are required to maintain the integrity of these tissues. These cells also play a major role in angiogenesis, inflammatory reactions, and in the regulation of thrombosis. Angiogenesis facilitates pulp formation and produces the vessels which are essential for the maintenance of tooth homeostasis. These vessels can also be used in bone and tissue regeneration, and in surgical procedures to place implants or to remove cancerous tissue. Furthermore, endothelial cell regeneration is the most critical component of the tooth generation process. The aim of the present study was to stimulate endothelial regeneration at a site of acute cyclophosphamide (CP)-induced endothelial injury by treatment with human umbilical cord-derived endothelial/mesenchymal stem cells (hEPCs). We randomly assigned 16 to 20-week-old female NOD/SCID mice into three separate groups, a hEPC ($1{\times}10^5$ cells) transplanted, 300mg/kg CP treated and saline (control) group. The mice were sacrificed on days 5 and 10 and blood was collected via the abdominal aorta for analysis. The alanine transaminase (ALT), aspartate aminotransferase (AST), serum alkaline phosphatase (s-ALP), and albumin (ALB) levels were then evaluated. Tissue sections from the livers and kidneys were stained with hematoxylin and eosin (HE) for microscopic analysis and were subjected to immunohistochemistry to evaluate any changes in the endothelial layer. CP treatment caused a weight reduction after one day. The kidney/body weight ratio increased in the hEPC treated animals compared with the CP only group at 10 days. Moreover, hEPC treatment resulted in reduced s-ALP, AST, ALT levels compared with the CP only group at 10 days. The CP only animals further showed endothelial injuries at five days which were recovered by hEPC treatment at 10 days. The number of CD31-positive cells was increased by hEPC treatment at both 5 and 10 days. In conclusion, the CP-induced disruption of endothelial cells is recovered by hEPC treatment, indicating that hEPC transplantation has potential benefits in the treatment of endothelial damage.