• 제목/요약/키워드: Neurotrophin-3(NT-3)

검색결과 7건 처리시간 0.034초

Failure to Support Associations of Neurotrophin-3(NT-3) Gene Polymorphism in Korean Schizophrenic Patients

  • Lee, Yu-Sang;Han, Jin-Hee;Chung, Eun-Kee;Yang, Byung-Hwan;Kim, Hyeong-Seob;Lee, Jung-Sik;Joo, Yeon-Ho;Chai, Young-Gyu
    • 생물정신의학
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    • 제4권2호
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    • pp.234-236
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    • 1997
  • Though initial report from Japan showed positive association of schizophrenia with dinucleotide repeat polymorphism in the NT-3 gene, subsequent studies showed mixed results. Therefore we conducted a replication study with Korean schizophrenics and matched controls who share similar ethnic background with Japanese population. The frequency of allele of dinucleotide repeat at 147 base pairs in the NT-3 gene was slightly increased, however, failed to reach statistical significance(${\chi}^2$=1.884, df=1, p<0.170) between the two groups. These findings do not support an association of NT-3 gene polymorphism with schizophrenia in Korean sample.

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Tensile stress regulation of NGF and NT3 in human dermal fibroblast

  • 김미나;홍정우;노민수;나용주;신현정
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1585-1587
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    • 2008
  • Fibroblast is constantly subjected to mechanical loads in connective tissues where mechanical signals are converted to intercellular biochemical events. The aim of this study is to understand the effects of tensile stress on the neurotrophin (NT) and transforming growth factor (TGF) expression of fibroblast in vitro. Nerve growth factor (NGF) stimulates fibroblast migration, and TGF is related to tissue repair. In this study, at the uniaxial stretch of 10% strain and frequency of 0.5 Hz, different resting times of 0, 20, and 60 min are placed in between 10 min stimulations periods. Results show increase in NGF mRNA levels and a substantial decrease in NT3 mRNA after 1 hr of stimulation, indicating that the tensile stress may regulate NGF and NT3, key factors for the neurocosmetic applications. The mRNA level for TGF-${\alpha}$ and TGF-${\beta}2$ had increased up to two-folds after 1 hr of stimulation, showing that the tensile stress may control TGF, an important part of wound healing.

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Distinct Effect of Neurotrophins Delivered Simultaneously by an Adenoviral Vector on Neurite Outgrowth of Neural Precursor Cells from Different Regions of the Brain

  • Yoo, Min-Joo;Joung, In-Sil;Han, Ah-Mi;Yoon, Hye-Hyun;KimKwon, Yun-Hee
    • Journal of Microbiology and Biotechnology
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    • 제17권12호
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    • pp.2033-2041
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    • 2007
  • For many years, it has been demonstrated that neurotrophins regulate the adult nervous system, implicating their potential as therapeutic agents for the treatment of neurodegenerative diseases. We generated adenoviral vectors encoding brain-derived neutotrophin factor (BDNF) and neurotrophin-3 (NT3) and tested either separately or together for the ability to induce differentiation of neuronal precursor cells with two different origins. Separate transduction of adenovirus delivering BDNF (BDNF-Ad) or NT3 (NT3-Ad) induced the neuronal differentiation in hippocampal and cortical precursor cells. NT3-Ad infected cells extended short neurites, whereas BDNF-Ad infected cells had longer neurites. In the early differentiation of hippocampal precursor cells, simultaneous infection of BDNF-Ad and NT3-Ad promoted further differentiation and neurite elongation compared with the separate infection of each virus. In contrast, simultaneous infection did not show the synergistic effect in the cortical precursor cells, suggesting that the neurotrophins play distinct roles in different regions of the brain. However, the numbers of neurites and spines per differentiated cells were markedly increased in cortical as well as hippocampal precursor cells, indicating the promotion of efficient neurite elongation and formation of dendritic spine, when BDNF-Ad and NT3-Ad were co-infected. These results suggest more studies in the effect of a combinatorial use of neurotrophins on different sites of brain need to be carried out to develop gene therapy protocols for neurodegenerative diseases.

Expression of Neurotrophin 4 and Its Receptor Tyrosine Kinase B in Reproductive Tissues during the Follicular and Luteal Phases in Cows

  • Sun, Yongfeng;Li, Chunjin;Sun, Yanling;Chen, Lu;Liu, Zhuo;Ma, Yonghe;Wang, Chunqiang;Zhang, Wei;Zhou, Xu
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권3호
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    • pp.336-343
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    • 2011
  • The neurotrophins, required for the survival and differentiation of the nervous system, are known to be important for the development of the reproductive tissues. However, the signals initiating the growth of follicles, gamete development, and transport and the development of zygote in the reproductive system of cows remain ambiguous. The purpose of the present study was to identify the transcripts and proteins of Neurotrophin 4 (NT4) and its receptor tyrosine kinase B (TrkB) in bovine reproductive tissues. The transcripts and immunoreactivity of NT4 and TrkB proteins were detected by reverse transcription polymerase chain reaction and western blot analysis. Using immunohistochemistry, the specific immunoreactivity of NT4 and TrkB were detected in the oocytes of primordial follicles and in the growing primary follicles. The NT4 and TrkB immunoreactivity was predominantly observed in granulosa cells, cumulus granulosa cells, cumulus oocyte complexes, theca cells of mature follicles, as well as in the oviduct epithelial cells, uterine gland cell, and epithelium cells of the uterus during the follicular and luteal phases in cows. Expressions of NT4 and TrkB mRNAs were not significantly different among the ovary, oviduct, and uterus of the follicular phase. For the luteal phase, the expression of NT4 mRNA in the ovary was significantly higher than that in the oviduct and uterus, and the expression of TrkB mRNA in the oviduct was significantly higher than that in the ovary and uterus, as determined by fluorescence quantitative reverse transcription polymerase chain reaction. The expression of NT4 mRNA was significantly higher than that of TrkB mRNA in the ovary and uterus, whereas NT4 mRNA expression was lower than that of TrkB mRNA in the oviduct during the luteal phase. The present study hypothesizes that NT4 participates in the regulation of both gonads and extra-gonadal reproductive tissues in cows.

Expression of Neurotrophic Factors and Their Receptors in Rat Posterior Taste Bud Cells

  • Park, Dong-Il;Chung, Ki-Myung;Cho, Young-Kyung;Kim, Kyung-Nyun
    • International Journal of Oral Biology
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    • 제39권2호
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    • pp.107-114
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    • 2014
  • Taste is an important sense in survival and growth of animals. The growth and maintenance of taste buds, the receptor organs of taste sense, are under the regulation of various neurotrophic factors. But the distribution aspect of neurotrophic factors and their receptors in distinct taste cell types are not clearly known. The present research was designed to characterize mRNA expression pattern of neurotrophic factors and their receptors in distinct type of taste cells. In male 45-60 day-old Sprague-Dawley rats, epithelial tissues with and without circumvallate and folliate papillaes were dissected and homogenized, and mRNA expressions for neurotrophic factors and their receptors were determined by RT-PCR. The mRNA expressions of brain-derived neurotrophic factor (BDNF), neurotrophin-3 (NT3), receptor tyrosine kinase B (TrkB), exclusion of nerve growth factor (NGF), neurotrophin-4/5 (NT4/5), receptor tyrosine kinase A (TrkA), receptor tyrosine kinase C (TrkC), and p75NGFR were observed in some population of taste cell. In support of this result and to characterize which types of taste cells express NT3, BDNF, or TrkB, we examined mRNA expressions of NT3, BDNF, or TrkB in the $PLC{\beta}2$ (a marker of Type II cell)-and/or SNAP25 (a marker of Type III cell)-positive taste cells by a single taste cell RT-PCR and found that the ratio of positively stained cell numbers were 17.4, 6.5, 84.1, 70.3, and 1.4 % for $PLC{\beta}2$, SNAP25, NT3, BDNF, and TrkB, respectively. In addition, all of $PLC{\beta}2$-and SNAP25-positive taste cells expressed NT3 mRNA, except for one taste bud cell. The ratios of NT3 mRNA expressions were 100% and 91.7% in the SNAP25-and $PLC{\beta}2$-positive taste cells, respectively. However, two TrkB-positive taste cells co-expressed neither $PLC{\beta}2$ nor SNAP 25. The results suggest that the most of type II or type III cells express BDNF and NT3 mRNA, but the expression is shown to be less in type I taste cells.

운동이 좌골신경 손상 F344쥐의 Neurotrophins, BDNF, NT-3, GAP-43 단백질 발현과 축삭재생에 미치는 영향 (Effect of Exercise on Neurotrophins, BDNF, NT-3, GAP43 Protein Expression and Axonal Regeneration after Sciatic Nerve Injury in F344 Rats)

  • 윤진환;서태범
    • 생명과학회지
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    • 제16권3호
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    • pp.464-471
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    • 2006
  • 본 연구에서는 흰쥐의 좌골신경을 손상시킨 후 트레드밀 운동을 적용하여 신경돌기 성장과 좌골신경의 축삭 재생 및 신경성장 인자 발현 그리고 신경기능지수의 변화를 연구했다. 본 연구결과 좌골손상 후 트레드밀 운동을 실시한 그룹이 비운동군에 비해 축삭재생이 촉진되었고, 원위부의 좌골신경에서도 NGF, BDNF단백질 발현이 상당히 증가된 것으로 나타났다. 또한 좌골신경지수를 검사한 결과에서도 운동을 실시한 흰쥐가 비운동 흰쥐에 비해 기능적 회복이 상당히 빠른 것으로 나타났다. 이러한 결과는 좌골손상 후 운동의 실시가 좌골신경의 축삭재생 촉진과 신경영양인자의 발현증가를 통해 기능적 회복에 도움이 될 수 있음을 보여주는 것이다.

배아줄기세포 유래 신경계세포에서의 세포사멸 연구와 그 응용 (Cell Death Study in Embryonic Stem Cell-derived Neurons and Its Applications)

  • 이철상
    • 한국발생생물학회지:발생과생식
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    • 제12권1호
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    • pp.1-8
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    • 2008
  • 배아줄기세포는 다양한 분화 유도 방법을 통해 신경계세포로 분화시킬 수 있을 뿐만 아니라, 보다 더 엄격한 선발조건을 적용함으로써 특정 종류의 신경세포만을 확보할 수도 있게 되었다. 세포사멸연구를 포함한 신경생리학적 연구의 대상으로써 중요한 요건은 이렇게 확보한 배아줄기세포 유래의 신경계세포들이 정상적인 신경생리학적 특성을 갖고 있어야 하며, 동시에 그런 신경생리학적 특성이 체외에서 일정기간 동안 이상 자연적인 세포사멸없이 유지되어야 한다는 것이다. 생쥐 배아줄기세포를 retinoic acid로 처리한 후, astrocytes monolayer 위에서 신경계세포로 분화시키면 장기간 생존이 가능한 다수의 신경계세포를 손쉽게 확보할 수 있을 뿐만 아니라, 면역세포화학적 방법을 통해 신경세포의 생사를 개별세포 수준에서 추적할 수 있다. 배아줄기세포 유래의 신경계세포는 glutamate agonist들에 대해 수용체 특이적 흥분성 신경독성 반응을 보이며, 이 반응은 신경계세포로의 분화가 진행될수록 더욱 뚜렷해지는 양상을 보인다. 신경계세포의 발생분화, 생존에 관여하는 Neurotrophin, GDNF 계열의 신경계 작용 성장인자들의 수용체가 배아줄기세포 유래의 신경계세포에서 발현되고 있으며, 이들에 의해 신경계세포로의 분화과정에서 세포의 생존능 및 신경독성처리에 대한 세포사멸반응이 조절될 수도 있다. 따라서 배아줄기세포 유래의 신경계세포는 신경세포의 생존과 사멸, 그리고 세포손상으로부터의 보호와 같은 신경약리학적 연구를 위한 중요한 특성을 나타내고 있기에 관련 연구를 위한 새로운 연구시스템이 될 수 있는 것이다. 특히 일반적인 신경세포는 유전적 변형이 어려워 다양한 신경약리학적 연구에 많은 제약을 받아 왔으나, 이제 유전자 변형 배아줄기세포로부터 얻은 신경세포를 활용하여 연구할 수 있게 됨으로써, 보다 복합적인 신경약리학적 기초연구도 가능하게 되었다. 특히 최근 인간 배아줄기세포 유래 신경계세포도 유사한 신경독성 반응을 보이고 있음이 확인됨으로써(Schrattenholz & Klemm, 2007), 이제 배아줄기세포는 신경약리학적 기초 연구만이 아닌, 나아가 대량의 약물 스크리닝과 같은 제약산업에도 활용될 수 있는 가능성을 제시하고 있다.

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