Stem Cells Research - Stem Cells in Science, Medicine, Biology and Bioethics
stem_cells bioethics
  Site Home
  Previous Page
Sponsored Links
Stem Cells - Biology
Stem Cells - Medicine
Link Exchange, Links Swap, Reciprocal Link Trade

Section Navigation

bioethics

stem cells

Importantly, such information would enable scientists to grow embryonic and adult stem cells more efficiently in the laboratory. Up to Stem cells are unspecialized. One of the fundamental properties of a stem cell is that it does not have any tissue-specific structures that allow it to perform specialized functions.


stem cells

The successful generation of an unlimited supply of dopamine neurons could make neurotransplantation widely available for Parkinson's patients at some point in the future. Scientists are trying to understand two fundamental properties of stem cells that relate to their long-term self-renewal: 1) why can embryonic stem cells proliferate for a year or more in the laboratory without differentiating, but most adult stem cells cannot; and 2) what are the factors in living organisms that normally regulate stem cell proliferation and self-renewal? Discovering the answers to these questions may make it possible to understand how cell proliferation is regulated during normal embryonic development or during the abnormal cell division that leads to cancer.


stem cells

Up to Stem cells are unspecialized. One of the fundamental properties of a stem cell is that it does not have any tissue-specific structures that allow it to perform specialized functions. A stem cell cannot work with its neighbors to pump blood through the body (like a heart muscle cell); it cannot carry molecules of oxygen through the bloodstream (like a red blood cell); and it cannot fire electrochemical signals to other cells that allow the body to move or speak (like a nerve cell).


stem cells

Importantly, such information would enable scientists to grow embryonic and adult stem cells more efficiently in the laboratory. Up to Stem cells are unspecialized. One of the fundamental properties of a stem cell is that it does not have any tissue-specific structures that allow it to perform specialized functions.


stem cell research

stem cell research

The internal signals are controlled by a cell's genes, which are interspersed across long strands of DNA, and carry coded instructions for all the structures and functions of a cell. The external signals for cell differentiation include chemicals secreted by other cells, physical contact with neighboring cells, and certain molecules in the microenvironment.


However, a number of experiments over the last several years have raised the possibility that stem cells from one tissue may be able to give rise to cell types of a completely different tissue, a phenomenon known as plasticity. Examples of such plasticity include blood cells becoming neurons, liver cells that can be made to produce insulin, and hematopoietic stem cells that can develop into heart muscle.


For instance, if the starting stem cells are derived from the inner cell mass of the embryo, they can generate many cell types of the body derived from all three embryonic cell types: endoderm, mesoderm and ectoderm.




7E6F3073-9887-4199-B09C-F75718B03F39
C8B6A194-6718-4226-859F-A15812B3927B
43248300-FA4E-4600-A141-6C80A29045EF
E77FA1D7-C29E-45BC-8379-4EBD2241AD25
7305C813-D9D4-4771-8744-0CE03970D521
2EA938F5-D203-482A-B6AF-15EE674FC0D5
15467C38-E472-48F9-A7EC-4E2AD424C63F
CF3151E9-C7A2-44FF-A7F4-33E34136A8A1
CB4763C6-C0EE-45C3-9D32-B9A32E57FE31
0657EE56-9602-49AF-8B17-504C4F796182
78E67B0B-2886-4121-AFE1-0602CA836584
FA6462D5-14E8-467C-AEBF-D617905D85B4
BF942E17-D42A-437B-8E1D-EE89EB7B7B3A
B429BD37-31A2-4868-B69D-A4B353345430
8CDF01AE-0491-4BE6-91A1-04E822B05DFE
5E37D445-5222-4B54-83D6-F1ADBFF24290
51C292AE-61C4-41AB-9726-096EAE855F4E
1E947455-9494-4935-AA67-A8A98943F5A5
889A1296-00A1-4630-8FC2-73CEB919CDC4
3363FB2D-7CE9-40B0-9F58-0D5EC9BE62E2
A07B8770-A947-4CD4-8CBD-05B7F96D9FA7
DEE4F58F-C67A-4B54-80B7-65ADBD36B249
B67964D5-F0C7-42A1-A0A2-8964E3473A4C
1DE20B84-89ED-4A20-8038-15B513215866
A3901853-9C81-4F87-A4A9-C581E176C0B2
2FC5064F-AFFE-4AA9-B6E0-C18EED933092
DC3938C5-790D-46E1-AB22-02C856339674
4BEC5FCA-6C16-45C9-994F-081D6DAFD18B



ICL's Comprehensive Frequently Asked Questions Data Bank

ICL's Comprehensive Frequently Asked Questions Data Bank

ICL's Comprehensive Frequently Asked Questions Data Bank

ICL's Comprehensive Frequently Asked Questions Data Bank

ICL's Comprehensive Frequently Asked Questions Data Bank

ICL's Comprehensive Frequently Asked Questions Data Bank

ICL's Comprehensive Frequently Asked Questions Data Bank

stem_cells | bioethics
Stem Cells are a Great Promise for the Future of Medicine!
Stem Cells Research
X -PLinx - 3001