• 제목/요약/키워드: embryonic tissue

검색결과 169건 처리시간 0.024초

The potential of mesenchymal stem cells derived from amniotic membrane and amniotic fluid for neuronal regenerative therapy

  • Kim, Eun Young;Lee, Kyung-Bon;Kim, Min Kyu
    • BMB Reports
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    • 제47권3호
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    • pp.135-140
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    • 2014
  • The mesenchymal stem cells (MSCs), which are derived from the mesoderm, are considered as a readily available source for tissue engineering. They have multipotent differentiation capacity and can be differentiated into various cell types. Many studies have demonstrated that the MSCs identified from amniotic membrane (AM-MSCs) and amniotic fluid (AF-MSCs) are shows advantages for many reasons, including the possibility of noninvasive isolation, multipotency, self-renewal, low immunogenicity, anti-inflammatory and nontumorigenicity properties, and minimal ethical problem. The AF-MSCs and AM-MSCs may be appropriate sources of mesenchymal stem cells for regenerative medicine, as an alternative to embryonic stem cells (ESCs). Recently, regenerative treatments such as tissue engineering and cell transplantation have shown potential in clinical applications for degenerative diseases. Therefore, amnion and MSCs derived from amnion can be applied to cell therapy in neuro-degeneration diseases. In this review, we will describe the potential of AM-MSCs and AF-MSCs, with particular focus on cures for neuronal degenerative diseases.

치주염 조직에서 발현이 증가하는 CTGF에 의한 파골세포 생존 증가 (Increased Expression of CTGF in Periodontitis Tissue and Its Role for Enhanced Mature Osteoclast Survival)

  • 한혜연;박종철;유미현;배문경;김형준
    • 대한구강악안면병리학회지
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    • 제41권4호
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    • pp.155-162
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    • 2017
  • Connective tissue growth factor (CTGF, CCN2) is one of the multi-functional secreted proteins which belong to CCN family of cysteine-rich growth factors. CTGF is known to have pivotal roles in embryonic endochondral ossification but its role in relevance to periodontitis is never been determined. To identify new molecular mediators associated with periodontitis-induced bone resorption, we have analyzed publicly available GEO database and found the markedly augmented CTGF mRNA expression in periodontitis gingival tissues. The existence of CTGF significantly enhanced mature osteoclasts survival which accompanied by reduction in TUNEL-positive nuclei and PARP cleavage. These results may provide another line of evidence the CTGF mediated prolonged osteoclast survival and subsequent increased bone resorption in the periodontitis patients.

Zebrafish Klf11b is Required to Maintain Cell Viability by Inhibiting p53-Mediated Apoptosis

  • Kong, Hee Jeong;Lee, Jung Jin;Kim, Ju-Won;Kim, Julan;Kim, Young-Ok;Yeo, Sang-Yeob
    • 한국발생생물학회지:발생과생식
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    • 제26권2호
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    • pp.79-90
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    • 2022
  • Krüppel-like factor 10 (KLF10) regulates various cellular functions, such as proliferation, differentiation and apoptosis, as well as the homeostasis of several types of tissue. In the present study, we attempted a loss-of-function analysis of zebrafish Klf11a and Klf11b, which constitute human KLF10 homologs. Embryos injected with klf11b-morpholino (MO) showed developmental retardation and cell death, whereas klf11a-MO-injected embryos showed normal development. In klf11b-MO-injected embryos, a dramatic increase in the amount of zebrafish p53 mRNA might be the cause of the increase in that of bax. The degree of apoptosis decreased in the klf11b-MO and p53-MO co-injected embryos. These findings imply that KLF10 is a negative regulator of p53-dependent transcription, suggesting that the KLF10/p53 complex may play an important role in apoptosis for maintenance of tissue homeostasis during embryonic development.

Emerging role of Hippo pathway in the regulation of hematopoiesis

  • Inyoung Kim;Taeho Park;Ji-Yoon Noh;Wantae Kim
    • BMB Reports
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    • 제56권8호
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    • pp.417-425
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    • 2023
  • In various organisms, the Hippo signaling pathway has been identified as a master regulator of organ size determination and tissue homeostasis. The Hippo signaling coordinates embryonic development, tissue regeneration and differentiation, through regulating cell proliferation and survival. The YAP and TAZ (YAP/TAZ) act as core transducers of the Hippo pathway, and they are tightly and exquisitely regulated in response to various intrinsic and extrinsic stimuli. Abnormal regulation or genetic variation of the Hippo pathway causes a wide range of human diseases, including cancer. Recent studies have revealed that Hippo signaling plays a pivotal role in the immune system and cancer immunity. Due to pathophysiological importance, the emerging role of Hippo signaling in blood cell differentiation, known as hematopoiesis, is receiving much attention. A number of elegant studies using a genetically engineered mouse (GEM) model have shed light on the mechanistic and physiological insights into the Hippo pathway in the regulation of hematopoiesis. Here, we briefly review the function of Hippo signaling in the regulation of hematopoiesis and immune cell differentiation.

마늘추출물에 의한 암세포의 이동 저하 (Inhibition of Cancer Cell Migration by Compounds from Garlic Extracts)

  • 김은경;윤성지;하정민;진인혜;김영환;김선근;박다정;최영환;윤식;김치대;배순식
    • 생명과학회지
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    • 제21권6호
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    • pp.767-774
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    • 2011
  • 세포의 이동은 많은 생리적 반응뿐만 아니라 암 세포 침윤과 전이에 중요한 역할을 수행한다. 본 연구에서는 마늘이 암세포의 이동에 미치는 영향을 확인하기 위해, 표준 마늘과 흑마늘을 준비하고 이들을 각각 물을 이용하여 추출하거나 건조하여 추출한 추출물 4 종류를 이용하여 항침윤성과 항전이성에 대해 조사하였다. 실험결과, 암세포의 이동은 건조 후 헥산으로 추출한 분획에 암세포의 이동 억제 활성이 관찰되었다. 이 분획을 박막 크로마토그래피를 이용하여 분리정제하였으며, 이를 inhibitor of cancer metastasis from garlic #27 (ICMG-27)이라 명명하였다. ICMG-27 (6 ${\mu}g/ml$)을 세포에 처리하였을 때, IGF-1에 의한 OVCAR-3와 NIH-3T3 세포의 이동을 억제함을 확인하였다. 그러나 ICMG-27은 mouse embryonic fibroblast (MEF) 세포에서 IGF-1에 의한 이동에는 영향을 주지 않았다. 이러한 ICMG-27은 OVCA-3, SKOV-3와 MDA-MB-231 세포와 같은 암세포에서 모두 IGF-1에 의한 이동을 억제함을 관찰하였다. 마지막으로 세포이동을 일으키는 인자에 따른 ICMG-27의 영향을 확인한 것으로, IGF-1, lysophosphatidic acid (LPA), sphingosine-1-phosphate (S1P), leukotriene B4 (LTB4) 그리고, angiotensinII (AngII)에 의한 OVCAR-3 세포의 이동을 모두 억제하였다. 이러한 결과를 바탕으로, ICMG-27은 암세포의 이동을 유도하는 많은 인자들에 의한 필수적인 단계를 차단함으로써, 암세포의 이동을 억제하는 것을 확인 할 수 있었으며, ICMG-27에 의한 암세포의 항 침윤 메커니즘의 규명은 암환자의 치료에 기초적인 발판을 제공할 것입니다.

Lipogenesis와 adipose expansion의 전사조절 (Transcriptional Regulation of Lipogenesis and Adipose Expansion)

  • 장영훈
    • 생명과학회지
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    • 제32권4호
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    • pp.318-324
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    • 2022
  • PPARγ와 C/EBPα는 adipose tissue 발생에 필요한 핵심 adipogenic TFs이다. 두 TFs는 adipose tissue의 배아 발생에 있어 초기 adipogenesis와 adipocytes 유전자 발현을 조절한다. Adipose expansion은 adipose tissue가 태어난 뒤에도 계속 팽창이 지속되는 것을 말한다. 이러한 adipose expansion은 후기 adipogenesis의 과정인 lipogenesis가 요구된다. 특히 간과 adipose tissue은 탄수화물이 기본적으로 fatty acids으로 전환되는 de novo lipogenesis (DNL)의 주요 장기이다. Fatty acids는 이어서 glycerol-3-phosphate에 에스테르화되어 adipocytes의 lipid droplets 생성을 위해 triglycerides로 전환된다. 간의 DNL이 활발하게 연구가 된 반면, in vivo에서 adipocytes의 DNL은 아직 잘 알려져 있지 않다. 그러므로, adipose expansion과 DNL에 대한 이해는 비만, 2형 당뇨 그리고 대사성 질환을 위한 치료제 개발에 도움을 줄 수 있다. Adipocytes에서 DNL 유전자 발현은 ChREBP나 SREBP1a와 같은 lipogenic TFs 뿐 아니라, lipogenesis coactivator에 의해 전사 수준에서 조절된다. 최근 in vivo 연구에 의해 lipogenesis 유전자 발현과 adipose expansion의 새로운 측면이 밝혀졌다. 향후 구체적인 분자기전 연구는 어떻게 영양분이 DNL과 adipose expansion을 조절하는 지를 규명해 줄 것이다. 본 리뷰논문은 전사조절 관점에서 adipocytes와 adipose expansion에 있어 DNL에 대한 최신 연구결과를 요약정리 할 것이다.

The Ciliary Transition Zone: Finding the Pieces and Assembling the Gate

  • Goncalves, Joao;Pelletier, Laurence
    • Molecules and Cells
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    • 제40권4호
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    • pp.243-253
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    • 2017
  • Eukaryotic cilia are organelles that project from the surface of cells to fulfill motility and sensory functions. In vertebrates, the functions of both motile and immotile cilia are critical for embryonic development and adult tissue homeostasis. Importantly, a multitude of human diseases is caused by abnormal cilia biogenesis and functions which rely on the compartmentalization of the cilium and the maintenance of its protein composition. The transition zone (TZ) is a specialized ciliary domain present at the base of the cilium and is part of a gate that controls protein entry and exit from this organelle. The relevance of the TZ is highlighted by the fact that several of its components are coded by ciliopathy genes. Here we review recent developments in the study of TZ proteomes, the mapping of individual components to the TZ structure and the establishment of the TZ as a lipid gate.

세포조직배양법을 이용한 쥐 인공피부의 개발 (Development of Dermal Equivalent Using Mouse Fibroblasts)

  • 양은경;이재호;최태부;박정극
    • 한국미생물·생명공학회지
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    • 제21권4호
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    • pp.381-391
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    • 1993
  • As the first stage of development of an artificial skin, fibroblasts were cultured in the collagen matrices to make a living dermal equivalent. Mouse embryonic fibroblasts were incorporated into a collagen matrices on plastic dishes containing concentrated DMEM culture media supplemented with sodium bicarbonate, hepes, antibiotics and fetal bovine serum. As the growth stimulation components, glycosaminoglycans were added: hyaluronic acid, chondroitin sulfate, heparin, chitosan were incorporated into the media at a concentration of either 1% or 5% w/w/ to collagen in order to investigate the effect on development of dermal equivalent. After the few days of incubation, gel matrics were contracted and firm dermal equivalent were formed. And the keratinocytes were cultured on top of dermal equivalent and make a three dimensional artificial skin tissue.

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포인세티아 줄기조직배양에 의한 재분화체 제조. (Somatic Embryogenesis and Plant Regeneration from Poinsettia (Euphorbia pulcherrima L.) Stem Explants)

  • Hee-Sung Park
    • 생명과학회지
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    • 제8권6호
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    • pp.623-626
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    • 1998
  • 포인세티아식물체의 줄기조직을 이용한 재분화조건을 확립하였다. MS배지에 종류 및 농도별 식물성장 조절제를 첨가하여 포인세티아의 잎, 줄기, 엽병조직으로부터의 배구조의 발생을 조사하였다. 잎과 엽병조직에서는 callus의 형성은 실험조건에서 매우 활발하였으나 배구조로의 발달은 전혀 이루어지지 않았다. 줄기조직의 경우에서는 1.5 mg/L의 BA가 첨가되는 경우 6-8주 정도의 경과 후 엽초의 발생이 관찰되었다. 이들을 식물생장조절제를 무첨가한 MS고체배지로 이동시 뿌리의 발달이 관찰되었다.

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Cancer Stem Cells and Response to Therapy

  • Tabarestani, Sanaz;Ghafouri-Fard, Soudeh
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권12호
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    • pp.5947-5954
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    • 2012
  • The cancer stem cell (CSC) model states that cancers are organized in cellular hierarchies, which explains the functional heterogeneity often seen in tumors. Like normal tissue stem cells, CSCs are capable of self-renewal, either by symmetric or asymmetric cell division, and have the exclusive ability to reproduce malignant tumors indefinitely. Current systemic cancer therapies frequently fail to eliminate advanced tumors, which may be due to their inability to effectively target CSC populations. It has been shown that embryonic pathways such as Wnt, Hedgehog, and Notch control self-renewal and cell fate decisions of stem cells and progenitor cells. These are evolutionary conserved pathways, involved in CSC maintenance. Targeting these pathways may be effective in eradicating CSCs and preventing chemotherapy or radiotherapy resistance.