• 제목/요약/키워드: Embryonic cell

검색결과 1,005건 처리시간 0.03초

A Temperature-Dependent Index of Mitotic Interval ($\tau_0$) in Haliotis gigantea and Haliotis discus

  • Park, In-Seok;Im, Jae-Hyun;Lee, Young-Don;Kim, Bong-Lae;Han, Seock-Jung
    • 한국양식학회:학술대회논문집
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    • 한국양식학회 2003년도 추계학술발표대회 논문요약집
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    • pp.29-29
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    • 2003
  • In order to establish effective procedures for chromosome manipulation in Haliotis gigantea and H. discus, which are of enormous aquacultural potential, temperature-dependent measures of mitotic intervals ($\tau$$_{0}$) were determined. Mitotic intervals ($\tau$$_{0}$) in these abalone were determined by averaging the duration of the first and third embryonic divisions over a range of temperatures from 8 to 26$^{\circ}C$. The relationships of each mitotic interval at two cell ($\tau$$_{I}$), four cell ($\tau$$_{II}$ ), eight cell ($\tau$$_{III}$), sixteen cell ($\tau$$_{IV}$ ) and $\tau$$_{0}$, to temperature (T in $^{\circ}C$) in H. gigantea were log $\tau$$_{I}$ : 176.1-28.3T, log $\tau$$_{II}$ : 199.5-12.4T, log $\tau$$_{III}$ = 236.2-12.2T, log $\tau$$_{IV}$ = 269.3-14.lT and log $\tau$$_{0}$ : 83.1-32.8, respectively. The relationships of each mitotic interval at $\tau$$_{I}$, $\tau$$_{II}$ , $\tau$$_{III}$, $\tau$$_{IV}$ and $\tau$$_{0}$, to temperature in H. discus were log $\tau$$_{I}$ = 104.9-13.8T, log $\tau$$_{II}$ : 138.3-10.5T, $\tau$$_{III}$ : 172.4-10.2T, log $\tau$$_{IV}$ : 211.3-12.2T and log $\tau$$_{0}$=85.6-33.3T, respectively. There were strong, negative correlations between mitotic interval and water temperatures for all ten temperatures in these two species (H. gigantea: Y = -138.75 logX + 341.25, $R^2$ = 0.97; H. discus: Y = -112.33 logX + 255.22, $R^2$ = 0.98, where Y is mitotic interval and X is temperature).d X is temperature).rature).

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Overview of Transforming Growth Factor β Superfamily Involvement in Glioblastoma Initiation and Progression

  • Nana, Andre Wendindonde;Yang, Pei-Ming;Lin, Hung-Yun
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권16호
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    • pp.6813-6823
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    • 2015
  • Glioblastoma, also known as glioblastoma multiforme (GBM), is the most aggressive of human brain tumors and has a stunning progression with a mean survival of one year from the date of diagnosis. High cell proliferation, angiogenesis and/or necrosis are histopathological features of this cancer, which has no efficient curative therapy. This aggressiveness is associated with particular heterogeneity of the tumor featuring multiple genetic and epigenetic alterations, but also with implications of aberrant signaling driven by growth factors. The transforming growth factor ${\beta}$ ($TGF{\beta}$) superfamily is a large group of structurally related proteins including $TGF{\beta}$ subfamily members Nodal, Activin, Lefty, bone morphogenetic proteins (BMPs) and growth and differentiation factor (GDF). It is involved in important biological functions including morphogenesis, embryonic development, adult stem cell differentiation, immune regulation, wound healing and inflammation. This superfamily is also considered to impact on cancer biology including that of GBM, with various effects depending on the member. The $TGF{\beta}$ subfamily, in particular, is overexpressed in some GBM types which exhibit aggressive phenotypes. This subfamily impairs anti-cancer immune responses in several ways, including immune cells inhibition and major histocompatibility (MHC) class I and II abolishment. It promotes GBM angiogenesis by inducing angiogenic factors such as vascular endothelial growth factor (VEGF), plasminogen activator inhibitor (PAI-I) and insulinlike growth factor-binding protein 7 (IGFBP7), contributes to GBM progression by inducing metalloproteinases (MMPs), "pro-neoplastic" integrins (${\alpha}v{\beta}3$, ${\alpha}5{\beta}1$) and GBM initiating cells (GICs) as well as inducing a GBM mesenchymal phenotype. Equally, Nodal promotes GICs, induces cancer metabolic switch and supports GBM cell proliferation, but is negatively regulated by Lefty. Activin promotes GBM cell proliferation while GDF yields immune-escape function. On the other hand, BMPs target GICS and induce differentiation and sensitivity to chemotherapy. This multifaceted involvement of this superfamily in GBM necessitates different strategies in anti-cancer therapy. While suppressing the $TGF{\beta}$ subfamily yields advantageous results, enhancing BMPs production is also beneficial.

삼백초(Saururus chinensis) 추출물의 항산화능 및 생리활성 연구 (Study on the Antioxidative and Physiological Activities of Saururus chinensis Extract)

  • 강창수;이민주;박철범;방인석
    • 생명과학회지
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    • 제22권6호
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    • pp.807-814
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    • 2012
  • 약용소재로 사용되고 있는 삼백초의 잎과 줄기로부터 유기 용매의 극성에 따른 순차적 분획물을 얻어 항산화 효과와 연관하여 피부의 탄력 및 혈관형성에 미치는 영향을 조사하였다. 삼백초 추출 분획물에 대한 항산화 활성은 시료의 농도가 증가할수록 DPPH에 대한 전자공여능도 증가하였으며, $ED_{50}$은 EtOAc 분획에서 합성 항산화제인 BHT의 27.22 ${\mu}g/ml$보다 12.84 ${\mu}g/ml$로 높게 나타났다. 또한 $H_2O_2$에 의해 유도된 HDF 세포사멸($IC_{50}$)에 대하여 삼백초 추출 50 ${\mu}/ml$의 EtOAc 분획에서 89.39%의 가장 높은 세포 생존율을 나타내었으며, 동량의 n-BuOH 분획에서도 67.98%의 유의적인 세포 생존율을 보였다. 한편 삼백초 추출 분획물은 피부 탄력과 관련있는 fibulin-5 mRNA의 발현율을 감소시켰으며, 항산화 활성이 높은 삼백초 추출 EtOAc 분획에 대한 CAM assay 결과, 혈관형성을 억제하는 것으로 나타났다. 이러한 삼백초 추출 EtOAc 분획은 향후 항산화 활성 및 해독과 관련된 혈관형성 억제의 약재개발 가능성이 있음을 암시하는 것으로 이의 작용기작에 대한 더욱 자세한 연구가 필요하다고 생각한다.

Ganglioside GM1 influences the proliferation rate of mouse induced pluripotent stem cells

  • Ryu, Jae-Sung;Chang, Kyu-Tae;Lee, Ju-Taek;Lim, Malg-Um;Min, Hyun-Ki;Na, Yoon-Ju;Lee, Su-Bin;Moussavou, Gislain;Kim, Sun-Uk;Kim, Ji-Su;Ko, Kinarm;Ko, Kisung;Hwang, Kyung-A;Jeong, Eun-Jeong;Lee, Jeong-Woong;Choo, Young-Kug
    • BMB Reports
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    • 제45권12호
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    • pp.713-718
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    • 2012
  • Gangliosides play important roles in the control of several biological processes, including proliferation and transmembrane signaling. In this study, we demonstrate the effect of ganglioside GM1 on the proliferation of mouse induced pluripotent stem cells (miPSCs). The proliferation rate of miPSCs was lower than in mouse embryonic stem cells (mESCs). Fluorescence activated cell sorting analysis showed that the percentage of cells in the G2/M phase in miPSCs was lower than that in mESCs. GM1 was expressed in mESCs, but not miPSCs. To confirm the role of GM1 in miPSC proliferation, miPSCs were treated with GM1. GM1-treated miPSCs exhibited increased cell proliferation and a larger number of cells in the G2/M phase. Furthermore, phosphorylation of mitogen-activated protein kinases was increased in GM1-treated miPSCs.

Ethylene Glycol이 포유류 초기배자의 생존성에 미치는 독성 효과 분석 (Toxic Effects of Ethylene Glycol on Mammalian Embryo Survivability)

  • 김현;유대중;최창용;성환후
    • Reproductive and Developmental Biology
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    • 제39권3호
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    • pp.77-81
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    • 2015
  • 본 연구에서 배아의 생식세포 동결에 가장 흔히 쓰이고 있는 두 가지 동결 보호제, 즉 DMSO와 EG의 독성을 비교하고자 생쥐 수정란 모델을 이용한 실험을 하였다. 생후 6주령의 암컷 생쥐 $F_1$ hybrid mice에 10 IU의 PMSG를 복강 주사하여 과배란을 유도하고, 2-세포기 배아를 획득하고 DMSO와 EG 각각 노출시킨 후, 배양을 하였다. 배반포의 전체 세포수는 2-세포기 단계에서 DMSO($68.1{\pm}24.1$)로 EG($81.2{\pm}27.0$) 혹은 control($99.0{\pm}18.3$)(p<0.001) 처리구에 비해서 유의적으로 낮았다. DMSO 처리구가 EG 처리구에 비해 세포수가 적었다. DMSO($15.4{\pm}1.5$)와 EG($10.2{\pm}1.4$) 두 처리구는 대조구($6.1{\pm}0.9$, p<0.0001)와 비교해서 배반포에서 세포사 비율이 더 높음을 확인했다. 또한, DMSO 처리구는 EG 처리구(p<0.001)보다 더 많은 세포사멸된 세포가 확인되었다. DMSO 또는 EG 처리군과 대조군 사이에는 배아 부화율에 있어서 차이가 있었으며, 이는 배아에 대한 동결 보호제의 잠재적인 독성을 확인한 결과였다. 이번 연구에서 장기간 처리했을 때 EG 처리군보다 DMSO 처리군에서 배아발달과 세포수가 저하된 것은 DMSO의 독성이 더 높을 것으로 사료된다.

Establishment of a Simple and Effective Method for Isolating Male Germline Stem Cells (GSCs) from Testicular Cells of Neonatal and Adult Mice

  • Kim Kye-Seong;Lim Jung-Jin;Yang Yun-Hee;Kim Soo-Kyoung;Yoon Tae-Ki;Cha Kwang-Yul;Lee Dong-Ryul
    • Journal of Microbiology and Biotechnology
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    • 제16권9호
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    • pp.1347-1354
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    • 2006
  • The aims of this study were to establish a simple and effective method for isolating male germline stem cells (GSCs), and to test the possibility of using these cells as a new approach for male infertility treatment. Testes obtained from neonatal and adult mice were manually decapsulated. GSCs were collected from seminiferous tubules by a two-step enzyme digestion method and plated on gelatin-coated dishes. Over 5-7 days of culture, GSCs obtained from neonates and adults gave rise to large multicellular colonies that were subsequently grown for 10 passages. During in vitro proliferation, oct-4 and two immunological markers (Integrin ${\beta}1,\;{\alpha}6$) for GSCs were highly expressed in the cell colonies. During another culture period of 6 weeks to differentiate to later stage germ cells, the expression of oct-4 mRNA decreased in GSCs and Sertoli cells encapsulated with calcium alginate, but the expression of c-kit and testis-specific histone protein 2B(TH2B) mRNA as well as the localization of c-kit protein was increased. Expression of transition protein (TP-l) and localization of peanut agglutinin were not seen until 3 weeks after culturing, and appeared by 6 weeks of culture. The putative spermatids derived from GSCs supported embryonic development up to the blastocyst stage with normal chromosomal ploidy after chemical activation. Thus, GSCs isolated from neonatal and adult mouse testes were able to be maintained and proliferated in our simple culture conditions. These GSCs have the potential to differentiate into haploid germ cells during another long-term culture.

배양액 종류가 B6D2F1 마우스 배아발생능력에 미치는 영향 (Effect of Type of Culture Media on B6D2F1 Mice Oogenesis)

  • 유창석;박기상;서병부
    • 한국수정란이식학회지
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    • 제31권1호
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    • pp.19-25
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    • 2016
  • This study was conducted to evaluate the effects of type of culture media (BM, G2, OS, TCM, and MEM) on B6D2F1 mice oogenesis. In the present study, B6D2F1/CrljOri $F_1$ mice were utilized in order to maximize oogenesis. Also we used TCM-199, Dulbecco's medified Eagle's medium (DMEM), embryo culture medium (Fertilization medium, Cleavage medium, Blastocyst medium), G series medium and One step medium. In vitro maturation was highest in BM followed by the order of OS, MEM, TCM and G2 ($90{\pm}2.8%>88{\pm}3.2%>85{\pm}4.9%>78{\pm}10.2%>64{\pm}7.7%$, respectively). To note, the G2 group was statistically different compared to other groups (p<0.05). On the other hand the fertilization rate was highest in the G2 group followed by BM, OS, TCM, and MEM ($87{\pm}7.2%>85{\pm}6.9%>74{\pm}14.0%>71{\pm}13.8%>2{\pm}1.4%$, respectively). The MEM group was significantly lower compared to other groups (p<0.05). The developmental rate was highest in the OS group followed by the G2 group and the BM group albeit no statistical significance was noted ($73{\pm}11.6%>71{\pm}9.2%>66{\pm}10.4%$). Of note, all cells of the TCM and MEM groups were died during embryonic development. The zona hatched rate ($51{\pm}9.8%$ vs. $50{\pm}9.1%$ vs. $47{\pm}7.2%$ for BM, G2, and OS respectively) and attached rate ($45{\pm}12.3%$ vs. $38{\pm}16.1%$ vs. $37{\pm}11.5%$ for BM, G2, and OS respectively) were not different amongst groups. No difference was found in total cell numbers ($74{\pm}13.9$ vs. $64{\pm}9.2$ vs. $76{\pm}6.7$ for BM, G2, and OS respectively), ICM cell numbers ($20{\pm}1.9$ vs. $14{\pm}1.8$ vs. $15{\pm}2.1$), TE cell numbers ($55{\pm}12.5$ vs. $49{\pm}10.7$ vs. $61{\pm}5.9$), % ICM ($30{\pm}2.8%$ vs. $24{\pm}7.0%$ vs. $22.8{\pm}2.2%$) and ICM:TE ratio ($1:2{\pm}0.5$ vs. $1:3.1{\pm}0.8$ vs. $1:3.1{\pm}0.5$) amongst groups. In summary, these results can provide fundamental data to maximize culture condition for in vitro fertilization on B6D2F1 mice.

hPDX1 유전자의 삽입에 의한 직접 췌도세포 분화 (Transdifferentiation of α-1,3-Galactosyltransferase Knock Out (GalT KO) Pig Derived Bone Marrow Mesenchymal Stromal Cells (BM-MSCs) into Pancreatic Cells by Transfection of hPDX1)

  • 옥선아;오건봉;황성수;김영임;권대진;임기순
    • 한국수정란이식학회지
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    • 제30권3호
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    • pp.249-255
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    • 2015
  • Diabetes mellitus, the most common metabolic disorder, is divided into two types: type 1 and type 2. The essential treatment of type 1 diabetes, caused by immune-mediated destruction of ${\beta}-cells$, is transplantation of the pancreas; however, this treatment is limited by issues such as the lack of donors for islet transplantation and immune rejection. As an alternative approach, stem cell therapy has been used as a new tool. The present study revealed that bone marrowderived mesenchymal stromal cells (BM-MSCs) could be transdifferentiated into pancreatic cells by the insertion of a key gene for embryonic development of the pancreas, the pancreatic and duodenal homeobox factor 1 (PDX1). To avoid immune rejection associated with xenotransplantation and to develop a new cell-based treatment, BM-MSCs from ${\alpha}$-1,3-galactosyltransferase knockout (GalT KO) pigs were used as the source of the cells. Transfection of the EGFP-hPDX1 gene into GalT KO pig-derived BM-MSCs was performed by electroporation. Cells were evaluated for hPDX1 expression by immunofluorescence and RT-PCR. Transdifferentiation into pancreatic cells was confirmed by morphological transformation, immunofluorescence, and endogenous pPDX1 gene expression. At 3~4 weeks after transduction, cell morphology changed from spindle-like shape to round shape, similar to that observed in cuboidal epithelium expressing EGFP. Results of RT-PCR confirmed the expression of both exogenous hPDX1 and endogenous pPDX1. Therefore, GalT KO pig-derived BM-MSCs transdifferentiated into pancreatic cells by transfection of hPDX1. The present results are indicative of the therapeutic potential of PDX1-expressing GalT KO pig-derived BM-MSCs in ${\beta}-cell$ replacement. This potential needs to be explored further by using in vivo studies to confirm these findings.

Effects of Human Mesenchymal Stem Cell Transplantation Combined with Polymer on Functional Recovery Following Spinal Cord Hemisection in Rats

  • Choi, Ji Soo;Leem, Joong Woo;Lee, Kyung Hee;Kim, Sung-Soo;SuhKim, Haeyoung;Jung, Se Jung;Kim, Un Jeng;Lee, Bae Hwan
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권6호
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    • pp.405-411
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    • 2012
  • The spontaneous axon regeneration of damaged neurons is limited after spinal cord injury (SCI). Recently, mesenchymal stem cell (MSC) transplantation was proposed as a potential approach for enhancing nerve regeneration that avoids the ethical issues associated with embryonic stem cell transplantation. As SCI is a complex pathological entity, the treatment of SCI requires a multipronged approach. The purpose of the present study was to investigate the functional recovery and therapeutic potential of human MSCs (hMSCs) and polymer in a spinal cord hemisection injury model. Rats were subjected to hemisection injuries and then divided into three groups. Two groups of rats underwent partial thoracic hemisection injury followed by implantation of either polymer only or polymer with hMSCs. Another hemisection-only group was used as a control. Behavioral, electrophysiological and immunohistochemical studies were performed on all rats. The functional recovery was significantly improved in the polymer with hMSC-transplanted group as compared with control at five weeks after transplantation. The results of electrophysiologic study demonstrated that the latency of somatosensory-evoked potentials (SSEPs) in the polymer with hMSC-transplanted group was significantly shorter than in the hemisection-only control group. In the results of immunohistochemical study, ${\beta}$-gal-positive cells were observed in the injured and adjacent sites after hMSC transplantation. Surviving hMSCs differentiated into various cell types such as neurons, astrocytes and oligodendrocytes. These data suggest that hMSC transplantation with polymer may play an important role in functional recovery and axonal regeneration after SCI, and may be a potential therapeutic strategy for SCI.

miR-133a-3p and miR-145-5p co-promote goat hair follicle stem cell differentiation by regulating NANOG and SOX9 expression

  • Jian Wang;Xi Wu;Liuming Zhang;Qiang Wang;Xiaomei Sun;Dejun Ji;Yongjun Li
    • Animal Bioscience
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    • 제37권4호
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    • pp.609-621
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    • 2024
  • Objective: Hair follicle stem cells (HFSCs) differentiation is a critical physiological progress in skin hair follicle (HF) formation. Goat HFSCs differentiation is one of the essential processes of superior-quality brush hair (SQBH) synthesis. However, knowledge regarding the functions and roles of miR-133a-3p and miR-145-5p in differentiated goat HFSCs is limited. Methods: To examine the significance of chi-miR-133a-3p and chi-miR-145-5p in differentiated HFSCs, overexpression and knockdown experiments of miR-133a-3p and miR-145-5p (Mimics and Inhibitors) separately or combined were performed. NANOG, SOX9, and stem cell differentiated markers (β-catenin, C-myc, Keratin 6 [KRT6]) expression levels were detected and analyzed by using real-time quantitative polymerase chain reaction, western blotting, and immunofluorescence assays in differentiated goat HFSCs. Results: miR-133a-3p and miR-145-5p inhibit NANOG (a gene recognized in keeping and maintaining the totipotency of embryonic stem cells) expression and promote SOX9 (an important stem cell transcription factor) expression in differentiated stem cells. Functional studies showed that miR-133a-3p and miR-145-5p individually or together overexpression can facilitate goat HFSCs differentiation, whereas suppressing miR-133a-3p and miR-145-5p or both inhibiting can inhibit goat HFSCs differentiation. Conclusion: These findings could more completely explain the modulatory function of miR-133a-3p and miR-145-5p in goat HFSCs growth, which also provide more understandings for further investigating goat hair follicle development.