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Issue Info: 
  • Year: 

    2004
  • Volume: 

    9
  • Issue: 

    1 (Serial number 33)
  • Pages: 

    1-12
Measures: 
  • Citations: 

    0
  • Views: 

    1561
  • Downloads: 

    0
Abstract: 

Introduction: Unlimited self renewal potential of EMBRYONIC STEM CELLS in differentiation to different types of CELLS Provides CELLS which can be an attractive doner source for developmental studies, cell therapy and gene therapy sterategies. In this  research  ES CELLS  were differentiated into neuron-like CELLS. Material and Methods: At first, dispersed CELLS from growing cultures were plated into  siliconized petri dishes. Under these conditions the CELLS spontaneously produced embryoid bodies. Embryoid bodies were cultured in a medium containing retinoic acid for four days and anather four days in a medium without retinoic acid. Then embryoid bodies were plated into tissue culture grade Petri dishes and evaluated morphologicaly. Also cresyl violet staining and immunocytochemical evaluation using nestin and synaptophysin antibodies were performed to verify the phenotype of the neural CELLS. Results:Our results showed after transfering of embryoid bodies into tissue culture dishes neural like CELLS were appeared at the margin of embryoid bodies. Gradually these CELLS increase in namber and grow on the surface. The results of cresyl violet staining and immunocytochemical evaluations confirmed that differentiated CELLS were of neural origin. Conclusion: Therefore, It can be concluded when ever embryoid bodies are  prepared from CCE EMBRYONIC STEM CELLS using siliconized petri dishes, they can be differentiated into neural CELLS, and CCE EMBRYONIC STEM CELLS is a suitable cell line for in vitro studies on EMBRYONIC development.

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Issue Info: 
  • Year: 

    1390
  • Volume: 

    0
Measures: 
  • Views: 

    381
  • Downloads: 

    0
Abstract: 

مقدمه: سلولهای بنیادی یکی از بهترین منابع برای تولید بافت بشمار می روند و انتقال ژن به این سلولها روش مناسبی برای تولید بافت و انتقال پروتئین هاست. از سوی دیگر سلول های بنیادی به دلیل قابلیت خودنوزایی، جداسازی نسبتا آسان آنها و توانایی مهاجرت به سمت بافتهای دچار کمبود اکسیژن، به عنوان روش درمان مناسب برای رگ زایی بکار میروند. مهمترین مساله در بکارگیری این سلولها یافتن روشی مناسب برای انتقال ژن است. حاملین غیرویروسی طراحی شده بر اساس پلیمرهای کاتیونی کارایی بالایی در این زمینه دارند و همچنین مشکلات ایمنی استفاده از حامل های ویروسی را ندارد. در این مطالعه تولید سلولهای بنیادی با بیان بالایVEGF بوسیله نانوذرات زیست تخریب پذیر پلیمر-DNA بررسی میشود.Roly (b-amino esters) دسته ای از پلیمرهای زیست تخریب پذیر هستند که قادرند از طریق تشکیل پیوندهای الکتروستاتیک با DNA در آب یا بافر در pHفیزیولوژیک میانکنش داده و نانوذراتی را تشکیل دهند که برای انتقال ژن مناسبند. در سلول های تیمار شده افزایش تولید hVEGF، قابلیت زیستی و پیوند شدن به بافت هدف مشاهده شد.روش ها: Roly (b-amino esters) سنتز شد. سه پلیمر با انتهای تغییر یافته (C32-117، C32-103 و C32-122) که کارایی بالایی در ترانسفیکاسیون سلول های بنیادی داشتند انتخاب شدند. سلول های مزانشیمی مشتق از مغز استخوان(hMSCs) و سلول های مشتق از جنین انسان(hESdCs) با وکتور حامل VEGF و یا پلاسمید کنترل (EGFP or luciferase) در شرایط بهینه ترانسفیکسیون با Roly (b-amino esters) آلوده شدند. تمام constructها (1.0´106 سلول در هر داربست) در فضای s.c. ناحیه پشتی موشهای فاقد تیموس(athymic) ایمپلنت شدند. تولید VEGF در سلول های بنیادی آلوده شده بررسی شد.RNA تام سلولی استخراج و cDNA سنتز شد. Quantitative PCRانجام داده شد و تمایز اندوتلیال با بررسی بیان سه ژن PECAM، Tie2 و vWF و میزان رگ زایی در فضای s.c. 2 یا 3 هفته پس از پیوند شدن مطالعه شد.یافته ها: پس از 2 هفته کشت در محیط رشد اندوتلیال، تمام سلولهای ترانسفکت شده با نانوذرات حامل VEGF سطح بیان بالاتری از مارکرهای اندوتلیال را نسبت به گروه کنترل تیمار نشده داشتند. در مقایسه با داربست کنترل بدون سلول، مهاجرت رگهای خونی از درون داربست های پوشیده شده با سلول های مزانشیمی آلوده شده با VEGF به کمک سه پلیمر Roly (b-amino esters) به بافتهای اطراف افزایش یافته بود. 4 روز پس از ترانسفیکاسیون، ترشح VEGF از سلول های مزانشیمی آلوده شده با VEGF و سلول های مشتق از جنین تقریبا 1 تا 3 برابر بیشتر از گروه کنترل آلوده نشده و 1 تا 2 برابر بیشتر از سلول های آلوده شده به Lipofectamine 2000 بود.بحث و نتیجه گیری: در این مطالعه نشان داده شد که مشتقات Roly (b-amino esters) با انتهای تغییر یافته حاملین غیر ویروسی مناسبی جهت انتقال ژن به EMBRYONIC-derived STEM CELLS هستند.

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Author(s): 

FATHI F.

Issue Info: 
  • Year: 

    2008
  • Volume: 

    10
  • Issue: 

    SUPPLEMENT 1
  • Pages: 

    84-85
Measures: 
  • Citations: 

    0
  • Views: 

    218
  • Downloads: 

    0
Abstract: 

Objective: EMBRYONIC STEM CELLS (ESC) are defined by two main properties of self-renewal and their multipotency to differentiate into virtually all cell types of the body, including endothelial CELLS. ESCs have been widely regarded as an unlimited source of CELLS in regeneration medicine and also an ideal in vitro model to investigate complex developmental processes. Here, we report a simple and efficient in vitro model to derive a nearly pure population of endothelial CELLS from a murine ESC line.Material and Methods: CCE ES CELLS are exposed to alpha-MEM medium containing 10% FBS for 4 days and then cultured in endothelial basal-2 medium containing vascular endothelial growth factor (VEGF), basic fibroblast growth factor (bFGF), insulin-like growth factor (IGF), epidermal growth factor (EGF), and 2% FBS for 42 days.Results: The CELLS acquired a relatively uniform endothelial cell morphology and were able to propagate and expand in culture. When murine ES cell–derived endothelial CELLS (MESDECs) were cultured on Matrigel and incubated for 48 h, vessel-like tube structures consisting of CD31 (PECAM-1) or BS-1 immunoreactive CELLS were developed. Immunocytochemistry and RTPCR analyses revealed that MESDECs express endothelial cell-specific marker proteins such as Flk-1, PECAM-1, Tie- 1, and Tie-2, in which the expressions persist for long periods of time after differentiation. The CELLS were also capable of taking up acetylated low-density lipoprotein (LDL) in culture.Conclusion: Our data suggest that MESDECs could provide a suitable in vitro model to study molecular events involved in vascular development and open up a new therapeutic strategy in regeneration medicine of cardiovascular disorders

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Issue Info: 
  • Year: 

    2009
  • Volume: 

    7
  • Issue: 

    SUPPL 2
  • Pages: 

    0-0
Measures: 
  • Citations: 

    0
  • Views: 

    239
  • Downloads: 

    0
Abstract: 

Introduction: With regard to the importance of BMPs roles in the formation, development and function of various vital sySTEMs during fetal life, the aim of this study was to evaluate the effect of different doses of BMP4 on the viability and proliferation of CCE mouse EMBRYONIC STEM (ES) CELLS.Materials and Methods: CCE ES CELLS were tripsinized and cell suspension was prepared. The CELLS were counted and cultured in 96 well microplate. Each well of this plate containing 3Χ104 CELLS in 20% FCS in DMEM media. The CELLS incubated for 1 day, washed with PBS and cultured in DMEM containing different doses of BMP4 (1, 5, 25, 50 and 100ng/ml) as experimental groups. Control group was cultured in BMP4 free medium. ES CELLS incubated at 37oC overnight, washed with PBS, tripsinized and cell suspension was prepared separately from each well. In order to investigate the viability and proliferation rates of CCE ES CELLS, staining with trypan blue and counting were done. The mean number of whole CELLS and living CELLS were considered as proliferation and survival rates respectively. Data analysis was done with ANOVA test.Results : No significant differences were found between the mean number of whole CELLS in the different doses (p=0.18), but the mean percent of living CELLS showed that BMP4 in 5 and 100 ng/ml concentration had the best and the worst effects on the viability of ES CELLS respectively (65.56 vs. 27.24%).Conclusion: Evaluation of proliferation and viability rates using cell count and data analysis showed that addition of 5ng/ml BMP4 increased the proliferation and viability rates of CCE ES CELLS whereas high doses decreased these criteria. This suggests that different doses of BMP4 signaling may have different effects on ES CELLS behavior.

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Author(s): 

BISWAS A. | HUTCHINS R.

Issue Info: 
  • Year: 

    2007
  • Volume: 

    16
  • Issue: 

    2
  • Pages: 

    213-222
Measures: 
  • Citations: 

    1
  • Views: 

    152
  • Downloads: 

    0
Keywords: 
Abstract: 

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Issue Info: 
  • Year: 

    2000
  • Volume: 

    113
  • Issue: 

    1
  • Pages: 

    5-10
Measures: 
  • Citations: 

    1
  • Views: 

    180
  • Downloads: 

    0
Keywords: 
Abstract: 

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Author(s): 

HOCHEDLINGER K.

Issue Info: 
  • Year: 

    2008
  • Volume: 

    10
  • Issue: 

    SUPPLEMENT 1
  • Pages: 

    32-33
Measures: 
  • Citations: 

    0
  • Views: 

    222
  • Downloads: 

    0
Keywords: 
Abstract: 

Mammalian development has been thought to be an one way process, which starts with a few EMBRYONIC founder CELLS, that become more and more restricted and ultimately give rise to all specialized cell types of the body. The cloning of the sheep Dolly from an adult mammary gland cell has refuted this dogma and demonstrated that the developmental clock of a mature cell can be reset, or "reprogrammed" by the egg into that of an EMBRYONIC cell, which can support development of a copy of the donor animal. To exclude the possibility that adult STEM CELLS served as donors in suCCEssful cloning experiments, we have generated cloned mice from mature lymphocytes that carried immunoglobulin rearrangements in all tissues. This experiment demonstrated that even the nuclei of terminally differentiated adult CELLS remain competent to give rise to an entire cloned animal. In addition, reprogramming research has enormous therapeutic potential in humans as it may allow for the derivation of EMBRYONIC CELLS from patients’ CELLS suffering from degenerative disorders such as Alzheimer’s disease, Parkinson’s disease or diabetes; because EMBRYONIC CELLS have the ability to give rise to all cell types of the body when exposed to the right combination of growth factors, these CELLS may provide a unique source of replacement tissue for regenerative medicine. We have generated a mouse model to prove this concept by combining nuclear transfer with gene and cell therapy to treat a severe combined immunodeficiency disorder in mice.

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Journal: 

NATURE

Issue Info: 
  • Year: 

    2004
  • Volume: 

    427
  • Issue: 

    6970
  • Pages: 

    148-154
Measures: 
  • Citations: 

    2
  • Views: 

    307
  • Downloads: 

    0
Keywords: 
Abstract: 

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Journal: 

STEM CELLS

Issue Info: 
  • Year: 

    2006
  • Volume: 

    24
  • Issue: 

    8
  • Pages: 

    1914-1922
Measures: 
  • Citations: 

    1
  • Views: 

    102
  • Downloads: 

    0
Keywords: 
Abstract: 

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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Author(s): 

LEROU P.H. | DALEY G.Q.

Journal: 

BLOOD REVIEWS

Issue Info: 
  • Year: 

    2005
  • Volume: 

    19
  • Issue: 

    6
  • Pages: 

    321-331
Measures: 
  • Citations: 

    1
  • Views: 

    148
  • Downloads: 

    0
Keywords: 
Abstract: 

Yearly Impact: مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

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