• Tidak ada hasil yang ditemukan

Development of Induced Pluripotent Stem Cells (IPSCs) and

N/A
N/A
Protected

Academic year: 2024

Membagikan "Development of Induced Pluripotent Stem Cells (IPSCs) and"

Copied!
2
0
0

Teks penuh

(1)

1

 

Development of Induced Pluripotent Stem Cells (IPSCs) and

transdifferentiation into neural stem cells for brain aging and Alzheimer’s disease อาจารย์ ดร. น.สพ. นริศร กิติยานันท์

Instructor Dr. Narisorn Kitiyanant

กลุ่มวิจัยเซลล์ต้นกําเนิด สถาบันชีววิทยาศาสตร์โมเลกุล มหาวิทยาลัยมหิดล Email : [email protected]

1. บทคัดย่อ (Abstract body)

Future treatment of incurable neurodegenerative disorders has to be tailored to individual patients or cohorts of patients to obtain an optimal effect.

Generation of patient-specific induced pluripotent stem cells (iPSC) can be used as in vitro neural cell models that will ultimately allow for customized treatment.

Skin biopsies were collected from genetically and clinically characterized patients.

Fibroblasts were isolated, expanded and reprogrammed into iPSCs by electroporation of episomal vectors of reprogramming factors. Generated iPSCs were characterized for their pluripotency properties. They will be characterized for functional disease parameters, used for studies of molecular pathogenesis.

They will further be differentiated into neural progenitor cells (NPCs) and specific neurons affected by Alzheimer’s disease. We expect that these neurons will express molecular characteristics of the patient’s disease phenotype and thereby be representative as patient-specific neural cell models. To ensure the success of the project, direct transdifferentiation of fibroblasts into neurons, without an intermediate stem cell stage, is attempted as an alternative strategy for generating patient-specific neural cell models.

Acknowledgement (กิตติกรรมประกาศ)

This research is funded by the European Commission under FP7, Industry-

Academia Partnerships and Pathways Call identifier: FP7-PEOPLE-2012-IAPP, Grant

agreement no.: 324451, and Mahidol University Research Fund.

(2)

2

 

ประวัติวิทยากร

ชื่อ-สกุล (ยศและตําแหน่ง)

ภาษาไทย อาจารย์ ดร.น.สพ. นริศร กิติยานันท์

ภาษาอังกฤษ Instructor Dr. Narisorn Kitiyanant ตําแหน่งในปัจจุบัน อาจารย์/หัวหน้ากลุ่มวิจัยเซลล์ต้นกําเนิด

สถานที่ทํางาน กลุ่มวิจัยเซลล์ต้นกําเนิด สถาบันชีววิทยาศาสตร์โมเลกุล มหาวิทยาลัยมหิดล

เบอร์โทรศัพท์ติดต่อ 02-441-9003 ถึง 7 ต่อ 1366 โทรสาร 02-441-1013 มือถือ 086-410-5636 E-mail: [email protected]

ประวัติการศึกษา

2545 สัตวแพทยศาสตร์บัณฑิต จุฬาลงกรณ์มหาวิทยาลัย 2554 ปรัชญาดุษฎีบัณฑิต (ประสาทวิทยาศาสตร์) มหาวิทยาลัยมหิดล

ผลงานเด่นทางวิชาการ การวิจัย การบริการ การบริหาร และอื่นๆ Publications:

1. Tipbanjong C, Kitiyanant Y, Chaturapanich G, Sornkaew N, Suksamran A, Kitiyanant N, Pholpramool C. Diarylheptanoid compounds from Curcuma comosa Roxb. Enhance proliferation and differentiation of mouse myoblasts, C2C12 cells. (Submitted)

2. Thangnipon W, Puangmalai N, Chinchalongporn V, Jantrachotechatchawan C, Kitiyanant N, Sai- ampornkul, Tuchinda P, Nobsathian S. N-benzylcinnamide protects rat cultured cortical neurons from β-amyloid peptide-induced neurotoxicity. Neurosci Lett 2013, 556:20-5.

doi:10.1016/j.neulet.2013.09.071.

3. Thangnipon W, Suwanna N, Kitiyanant N, Soiampornkul R, Tuchinda P, Munyoo B, Nobsathian S.

Protective role of N-trans-feruloyltymine against β-amyloid peptide-induced neurotoxicity in rat cultured cortical neurons. Neurosci Lett 2012, 513(4): 229-232. doi: 10.1016/j.neulet2012.02.047.

4. Kitiyanant N, Kitiyanant Y, Svendsen CN and Thangnipon W. BDNF-, IGF-1 and GDNF-secreting human neural progenitor cells rescue amyloid β-induced toxicity in cultured rat septal neurons.

Neurochem Res 2012, 37(1): 143-52. doi:10.1007/s11064-011-0592-1.

5. Saikhun J, Kitiyanant N, Songtaveesin C, Pavasuthipaisit K and Kitiyanant Y. Development of swamp buffalo (Bubalus bubalis) embryos after parthenogenetic activation and nuclear transfer using serum fed or starved fetal fibroblasts. Reprod Nutr Dev 2004, 44(1): 65-78.

Book Chapter:

1. Suzuki M, McHugh J and Kitiyanant N. (2011) Human neural stem/progenitor cells: Mitotic and neurogenic effects of growth factors, neurosteroids, and excitatory amino acids. In: Hormones in Neurodegeneration, Neuroprotection and Neurogenesis. (Gravanis, A. and Mellon, S. Eds), Wiley- Blackwell, pp. 331-345.

ประสบการณ์การทํางาน

2545 – ปัจจุบัน อาจารย์ สถาบันชีววิทยาศาสตร์โมเลกุล มหาวิทยาลัยมหิดล 2550 – 2551 Research Fellow, Stem Cell Research Program

University of Wisconsin-Madison, USA

2556 Visiting Researcher, Department of Innovative Therapy Institute of Emerging Diseases and Innovative Therapy

Alternative Energies and Atomic Commission, France

Development of Research Strategies for Brain Mind and Behavior

Referensi

Dokumen terkait

According to the stem cells theory of aging, the aging process is a result of the inability of various types of stem cells to continue to replenish the tissues of an organism with

REPROGRAMMING OF HUMAN DERMAL FIBROBLAST INTO iPSCs BY LENTIVIRAL TRANSDUCTION PRODUCED EMBRYONIC STEM-CELL LIKE COLONIES Two human dermal fibroblast cell lines isolated from

Isogenic-induced endothelial cells enhance osteogenic differentiation of mesenchymal stem cells on silk fibroin scaffold Sindhuja D Eswaramoorthy1, Nandini Dhiman1 , Gayathri Korra2,

To prove whether this is also true for human cells, we compared the efficiency of neuronal differentiation of iPSC generated from fetal human neural stem cells with either one OCT4;

hCG, Immune regulation, ASCs, pretreatment, stem cells, Vitamin E Number of Figures: 4 Number of Tables: 2 Number of References: 61 Vitamin E and hCG enhance the immunomodulatory

xiii hiPSC human induced pluripotent stem cells hiPSC-CM human induced pluripotent stem cell derived cardiomyocytes hPSC human pluripotent stem cells IK1 inward rectifier potassium

Keywords and synonyms for database searching Database Sources MeSH/Keywords Synonym MeSH/Keywords Synonym MeSH/Keywords Synonym Pubmed Induced Pluripotent Stem Cell Human Induced

Peran Mesenchymal Stem Cells dalam Regulasi PDGF dan Sel Islet pada Diabetes The Role of Mesenchymal Stem Cells on Regulating PDGF and Islet Cells in Diabetes 1 2 Zakariya HS ,