"We are on the verge of a revolution in medicine: understanding, treating, and ultimately preventing the causes of degenerative aging. But medical revolutions only happen if we all stand up in support of funding and research. We did it for cancer. We're doing it for Alzheimer's. We can do it for aging - and create an era of longer, healthier lives!"

  
Search

Required Reading
Activism and Advocacy
Calorie Restriction
The Community, Visualized
Cryonics
Envisaging a World Without the FDA
Healthy Life Extension Explained
Introductory Articles
Longevity Meme Newsletter
The Most Important Debate
Stem Cells, Regenerative Medicine
SENS, Negligible Senescence
What is Anti-Aging?

Initiatives
Biogerontology Research Foundation
LifeStar Institute
Methuselah Foundation
Mprize for Longevity Research
Science Against Aging (Translate)
SENS Foundation

On the Causes of Aging
Accumulating AGEs
The Failing Immune System
Junk in the Lysosome
Mitochondrial Free Radicals
Senescent Cells
Other Causes of Aging

Benefiting From Medical Research
How to Read Scientific Research
Researching Therapies and Clinical Trials

Objections Answered
Boredom
Inequality and Economics
Overpopulation
Stagnation
Being Older for Longer?
What About Retirement?

Recent Entries

  • Subtleties of Calorie Restriction and Evolution
  • Signs of the Times: Engineered Organs in the Popular Press
  • Genescient Envisioned as Sirtris++
  • Help the Immortality Institute Fund Research Into Laser Ablation of Lipofuscin
  • The Singularity's Time in the Sun
  • Deciphering the Machine By Pulling Out Cogs and Flipping Switches
  • Scientific American on Alzheimer's Research
  • The Downward Spiral
  • A Male-Only Longevity Mutation in Mice
  • Cryonics and Economic Incentives
  • Bid in a Charity Auction For a Portrait of Aubrey de Grey
  • You Have To Do Better Than That
  • Failing Memory and the Failing Immune System: Reversible?
  • A New Spanner to Throw Into the Works of Cancer
  • The Benefits of Falling Costs in Biotechnology
  • SENS 4: Early Registration and Abstract Submission Deadline Approaches
  • A Cautionary Tale and a Point of Principle
  • On the 2009 AGE Conference
  • An Update on Decellularization / Recellularization
  • Accumulating Mitochondrial DNA Damage: More Harm or Less Repair?

    Blogs of Interest
    Accelerating Future
    Ageing Research
    Anti-Ageing Research
    Alcor News
    Al Fin Longevity
    April's CR Diary
    Andart
    Biosingularity
    CRON Diary
    Cryonics Society
    Depressed Metabolism
    Distributed Republic
    Ethical Technology Blog
    Existence is Wonderful
    Future Current
    FuturePundit
    grailsearch.org
    green light go
    In Search of Enlightenment
    Longevity Science
    Marginal Revolution
    Metamagician and the Hellfire Club
    Metamodern
    Methuselah Foundation Blog
    Mises Economics Blog
    Nanodot
    Ouroboros
    Overcoming Bias
    Pimm - Partial immortalization
    Responsible Nanotechnology
    ScienceBlogs
    Sentient Developments
    Singularity Hub
    Singularity Institute Blog
    The Loom
    The Speculist
    Transumanar

    Archives (Monthly)

    July 2009
    June 2009
    May 2009
    April 2009
    March 2009
    February 2009
    January 2009
    December 2008
    November 2008
    October 2008
    September 2008
    August 2008
    July 2008
    June 2008
    May 2008
    April 2008
    March 2008
    February 2008
    January 2008
    December 2007
    November 2007
    October 2007
    September 2007
    August 2007
    July 2007
    June 2007
    May 2007
    April 2007
    March 2007
    February 2007
    January 2007
    December 2006
    November 2006
    October 2006
    September 2006
    August 2006
    July 2006
    June 2006
    May 2006
    April 2006
    March 2006
    February 2006
    January 2006
    December 2005
    November 2005
    October 2005
    September 2005
    August 2005
    July 2005
    June 2005
    May 2005
    April 2005
    March 2005
    February 2005
    January 2005
    December 2004
    November 2004
    October 2004
    September 2004
    August 2004
    July 2004
    June 2004
    May 2004
    April 2004
    March 2004
    February 2004
    January 2004

    Creative Commons License
    Attribution, noncommercial, no derivative works. Play nice.

  • Thursday, April 20, 2006

    Deciphering Embryonic Stem Cell Differentiation

    The mechanisms governing stem cell differentiation are complex indeed, but deciphering this biochemistry is the key to controlling cells for tissue engineering and regenerative medicine - producing replacement tissue on demand, and eventually creating totipotent stem cells on demand. Here is a selection of recent articles on step by step progress in this area:

    Scientists announce stem-cell discovery

    The scientists say the imprints, or "signatures," appear near the master genes that control embryonic development and probably coordinate their in the early stages of cell differentiation. Not only do the findings help to unlock the basis for embryonic stem cells' seemingly unlimited potential but the researchers say they also suggest ways to understand why ordinary cells are so limited in their abilities to repair or replace damaged cells.

    "This is an entirely new and unexpected discovery," said Brad Bernstein, lead author of the study, an assistant professor at Harvard and a researcher in the Chemical Biology program at the Broad Institute. "It has allowed us to glimpse the molecular strategies that cells use to maintain an almost infinite potential, which will have important applications to our understanding of normal biology and disease."

    How embryonic stem cells maintain their identity

    The results also add to the team's earlier finding, reported in Cell last year, that a trio of transcription factors--Oct4, Sox2, and nanog--are key regulators of embryonic stem cells' pluripotency and self-renewal," he said. Pluripotency refers to the cell's ability to develop into multiple cell types. The three factors apparently work together to activate pathways critical for stem cell identity, while repressing those leading to differentiation.

    Notch Promotes Neural Lineage Entry by Pluripotent Embryonic Stem Cells

    Pluripotent [embryonic stem (ES)] cells should be a valuable source of neural cell types for cell biological investigation, neurodegenerative disease modelling, pharmaceutical screening, and possibly even regenerative therapies. If ES cells are to be harnessed effectively for these goals, it will be necessary to develop robust methods for directing neural commitment and suppressing differentiation into other lineages. In this study we have presented evidence for an unsuspected role of the Notch signalling pathway in promoting and directing primary fate choice in ES cell differentiation. Activation of Notch thus emerges as a key tool for steering ES cells toward the neural fate and away from nonneural fates.

    If you're up for light scientific literature, the Notch paper above illustrates the real complexity in the study of cellular biochemistry: cells talk to and influence one other. Put a bunch of cells together, and they'll respond in all sorts of interesting, emergent ways to the introduction of biochemical signals of differentiation, signalling between one another all the while.

    Furthermore, even at standard cell densities, 5% to 10% of cells still resist differentiation. This is approximately half the number observed for control cultures but nonetheless raises the question why do some ES cells elude neural commitment?

    ...

    In the developing embryo, neighbouring cells must continually communicate with each other to coordinate patterning of tissues. Notch signalling patterns tissues by at least two types of mechanism. Lateral inhibition mechanisms ensure that neighbouring cells follow different fates, so that one single cell type does not dominate within a particular region. Lateral induction, a form of community effect, acts in the opposite way to ensure that cells within a particular region adopt the same fate choice. In the context of neural induction from ES cells, our findings indicate that Notch signalling acts to amplify and consolidate neural specification.

    The complexity is enormous; researchers must develop better methodologies to work with very complex situations in order to keep up the rate of progress in biotechnology and medical science.

    Technorati tags: ,

    Posted by Reason at April 20, 2006 10:04 PM | TrackBack (1)

    Post a comment; thoughtful, considered opinions are valued. Please note that comments incorporating ad hominem attacks, advertising and other forms of inappropriate behavior are likely to be deleted.










    Remember personal info?