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Ditemukan 10374 dokumen yang sesuai dengan query
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Rao, Mahendra S.
"Neural development and stem cells, provides neuroscientists with a handy guide to stem cells in the nervous system, tracing with great clarity the development of stem cells from differentiation to neurons, astrocytes, and oligodendrocytes."
New York: Springer, 2012
e20401613
eBooks  Universitas Indonesia Library
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Radiana Dhewayani Antarianto
"Sel induk(Stem Cell) adalah sel pembangun setiap organ dan jaringan tubtih kita. Dia adalah sel yang belum berdiferensiasi, tapi dengan kondisi tepat mampu berkembang inenjadi jaringan khusus dan organ tertentu. Sebdgian besar dari sel-sel jaringan tidak dapat beregenerasi jika rusak berat atau sakit, seperti pada kasus Infark Miokard. Penelitian terbaru mulai berfokus pada sel induk, yang dapat berproliferasi, dan berdiferensiasi menjadi sel otot jantung. Artikel ini bertujuan untuk ineiierangkan transplantasi sel induk pada infark miokard, keniajuan dan kendala yang terdapat dalam btdang kardiotnioplasti selular. (Med J Indones 2005; 15:3-8).

Stem cells are the foundation cells for every organ and tissue in the body. They are undifferenciated cells that under proper conditions begin to develop into specialized tissues and organs. Most of the body's specialized cells cannot be replaced by natural processes if they are seriously damaged or diseased, such as in Myocardial Infarction. Recent interest has focused on stem cells, which can proliferate, and differentiate into cardiomyocytes.This paper aim to provide overview of stem cell transplantation in myocardial infarction, milestones and setbacks in the study of cellular cardiomyoplasty. (Med J Indones 2005; 15:3-8)."
[place of publication not identified]: Medical Journal of Indonesia, 15 (1) January-March 2006: 3-8, 2006
MJIN-15-1-JanMarch2006-3
Artikel Jurnal  Universitas Indonesia Library
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London: Elsevier , 2011
616.027 74 STE
Buku Teks SO  Universitas Indonesia Library
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"This volume will cover a series of reviews on stem cells including adult and embryonic stem cells. Speakers were invited to present these talks during the Stem Cell Symposia in fall of 2010, in Samsun, Turkey. Unique aspect of this volume is that it brings a multidisciplinary aspect of stem cells extracted from a symposium."
New York: Springer, 2012
e20401393
eBooks  Universitas Indonesia Library
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Srivastava, Rakesh K., editor
"The main objective of this book is to provide a comprehensive review on stem cells and their role in tissue regeneration, homeostasis and therapy. In addition, the role of cancer stem cells in cancer initiation, progression and drug resistance are discussed. The cell signaling pathways and microRNA regulating stem cell self-renewal, tissue homeostasis and drug resistance are also mentioned. Overall, these reviews will provide a new understanding of the influence of stem cells in tissue regeneration, disease regulation, therapy and drug resistance in several human diseases."
Dordrecht, Netherlands: Springer, 2012
e20401816
eBooks  Universitas Indonesia Library
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"This book describes the nuclear reprogramming, chronicling how the field has developed over the last 50-60 years."
New York: Springer, 2011
e20401695
eBooks  Universitas Indonesia Library
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"Because the concept and discoveries of cancer stem cells are relatively new, scientists and researchers need an introduction to this dynamic area. Cancer Stem Cells presents a consolidated account of the research done to date and recent progresses in the studies of cancer stem cells. Such a presentation facilitates a better understanding of and draws attention to stem cell and cancer biology, two fields that enhance, move, and evolve into each other continuously. It provides an informative study in designing approaches to apply stem cell principles to cancer biology while offering an overview of the challenges in developing combination stem and cancer biology targets for therapeutics. "
New Jersey: John Wiley & Sons, 2009
e20375775
eBooks  Universitas Indonesia Library
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"Masalah kebutaan adalah salah satu masalah kesehatan yang memprihatinkan. Kedokteran regeneratif lewat rekayasa jaringan dan optimalisasi regenerasi jaringan melalui sel induk lokal atau transplantasi sel induk telah mendapat banyak perhatian. Tinjauan pustakan kali ini membahas penemuan penting sel induk mata dan eksperimen in vivo transplantasi sel induk serta tren terkini di bidang rekayasa jaringan mata.

Abstract
Blindness is one of the most devastating condition for mankind. Regenerative medicine through tissue engineering and optimizing tissue regeneration through local adult stem cell differentiation or stem cell transplantation has received a lot of attention. This review presents highlights in the discovery of ocular stem cell and in vivo experiment for stem cell transplantation and current trends in tissue engineering of the eye. "
[Fakultas Kedokteran Universitas Indonesia, Fakultas Kedokteran Universitas Indonesia], 2008
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Artikel Jurnal  Universitas Indonesia Library
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Adrian Pragiwaksana
"Sel punca mesenkim (MSC) dan sel punca pluripoten terinduksi (iPSC) telah dilaporkan mampu berdiferensiasi menjadi hepatosit secara in vitro dengan berbagai tingkat maturasi hepatosit. Sebuah metode sederhana untuk proses deselulerisasi perancah hati telah dikembangkan oleh Fakultas Kedokteran Universitas Indonesia.
Penelitian ini bertujuan untuk mengevaluasi diferensiasi hepatosit dari iPSC dibandingkan dengan MSC dalam perancah hati yang dideselularisasi. Langkah pada penelitian ini adalah mengkultur iPSC dan MSC, mendeselularisasi hati kelinci, menyemai kultur sel ke dalam perancah, dan mendiferensiasikan menjadi hepatosit selama 21 hari dengan protokol Blackford yang dimodifikasi. Pemeriksaan dilakukan dengan pewarnaan Haematoxylin Eosin (HE), Masson Trichrome (MT), imunohistokimia (IHK) albumin dan cytochrome 3A4 (CYP3A4). Ekspresi gen albumin, cytochrome P450 (CYP450), dan cytokeratin-19 (CK-19) dianalisis menggunakan qRT-PCR. Pemeriksaan scanning electron microscope (SEM) dan immunofluorescence (IF) marker hepatocyte nuclear factor 4 alpha (HNF4-α) dan CCAAT/enhancer-binding protein alpha (CEBPA) dilakukan.
Diferensiasi hepatosit dari iPSC dalam perancah hati yang dideselulerisasi dibandingkan dengan diferensiasi hepatosit dari MSC dalam perancah hati yang dideselulerisasi menunjukkan pembentukan sel tunggal dan kapasitas adhesi pada perancah yang lebih sedikit, dan penurunan tren ekspresi albumin dan CYP450 yang lebih rendah. Jumlah penyemaian sel awal yang lebih rendah menyebabkan hanya beberapa iPSC menempel pada bagian-bagian tertentu dari perancah hati yang dideselularisasi. Injeksi jarum suntik manual untuk reselulerisasi yang tidak merata menciptakan pola pembentukan sel tunggal oleh hepatosit dari diferensiasi iPSC di perancah hati yang dideselulerisasi. Hepatosit dari diferensiasi MSC memiliki kapasitas adhesi lebih tinggi ke perancah hati yang dideselulerisasi yang mengarah pada peningkatan tren ekspresi albumin dan CYP450. Penurunan ekspresi gen CK-19 lebih banyak terjadi pada diferensiasi hepatosit dari iPSC.
Hasil tersebut dikonfirmasi oleh adanya sinyal positif protein HNF4-α dan CEBPA dengan pemeriksaan IF yang menunjukkan hepatosit yang dewasa. Kesimpulan dari penelitian ini adalah diferensiasi hepatosit dari iPSC pada perancah hati yang dideselularisasi lebih dewasa dengan adhesi sel-matriks ekstraseluler lebih rendah, distribusi sel spasial saling berjauhan, dan ekspresi albumin dan CYP450 lebih rendah dibandingkan dengan diferensiasi hepatosit dari MSC pada perancah hati yang dideselularisasi.

Mesenchymal stem cells (MSC) and induced pluripotent stem cells (iPSC) have been reported able to differentiate to hepatocyte in vitro with varying degree of hepatocyte maturation. A simple method to decellularized liver scaffold has been established by Faculty of medicine Universitas Indonesia.
This study aims to evaluate hepatocyte differentiation from iPSCs compared to MSCs in decellularized liver scaffold. iPSCs and MSCs were cultured, rabbit liver were decellularized, cell cultures were seeded into the scaffold, and differentiated into hepatocytes for 21 days with modified Blackford protocol. Haematoxylin-Eosin (HE), Masson Trichrome (MT), immunohistochemistry (IHC) albumin and CYP3A4 was performed. Expression of albumin, cytochrome P450 (CYP450) and cytokeratin-19 (CK-19) genes were analyzed using qRT-PCR. Scanning electron microscope (SEM) and immunofluorescence (IF) examination of hepatocyte nuclear factor 4 alpha (HNF4-α) and CCAAT/enhancer-binding protein alpha (CEBPA) marker was performed.
Hepatocyte differentiated iPSCs compared with hepatocyte differentiated MSCs in decellularized liver scaffold single–cell–formation and lower adhesion capacity in scaffold, and decrease trends of albumin and CYP450 expression. Lower initial seeding cell number causes only a few iPSCs to attach to certain parts of decellularized liver scaffold. Manual syringe injection for recellularization abruptly and unevenly create pattern of single–cell–formation by hepatocyte differentiated iPSCs in the decellularized liver scaffold. Hepatocyte differentiated MSCs have higher adhesion capacity to decellularized liver scaffold that lead to increase trends of albumin and CYP450 expression. CK-19 expression gene diminished more prominent in hepatocyte differentiated iPSCs.
These results were confirmed by the presence of HNF4-α and CEBPA positive signal protein with IF examination, showing mature hepatocyte.The conclusion of this study is hepatocyte differentiated iPSCs in decellularized liver scaffold differentiation is more mature with lower cell-extracelullar matrix adhesion, spatial cell distribution far from each other, and lower albumin and CYP450 expression than hepatocyte differentiated MSCs in decellularized liver scaffold.
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Jakarta: Fakultas Kedokteran Universitas Indonesia, 2021
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UI - Tesis Membership  Universitas Indonesia Library
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"It is pointed out that a cancer stem cell is a type within a tumor that possesses the capacity of self-renewal and can give rise to the heterogeneous lineages of cancer cells, which comprise the tumor. It is emphasized that a unique feature of cancer stem cells is that, although conventional chemotherapy kills most cells in a tumor, cancer stem cells remain intact. Vast applications of the following specific stem cells in disease and tissue injury are discussed: embryonic stem cells, human mesenchymal stem cells, cancer stem cells, arterial stem cells, neural stem cells, cardiac stem cells, dental stem cells, limbal stem cells, and hematopoietic stem cells. Because human embryonic stem cells possess the potential to produce unlimited quantities of any human cell type, considerable focus is placed on their therapeutic potential in this volume. These cells are used in tissue engineering, regenerative medicine, pharmacological and toxicological studies, and fundamental studies of cell differentiation. It is pointed out that the formation of embryoid bodies, which are three-dimensional aggregates of embryonic cells, is the initial step in the differentiation of these cells. Therapeutic implications of signalling pathways in cancer stem cells are pointed out. Targeting self-renewal pathways in cancer stem cells are also included. Application of mesenchymal stem cells for treating ischemic brain injury is explained. Neural stem cells proliferation into the surrounding area of the traumatic brain injury is explained."
Dordrecht: Springer, 2012
e20418117
eBooks  Universitas Indonesia Library
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