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Biological Immortality Information

Biological immortality refers to a stable rate of mortality as a function of chronological age. Some individual cells and entire organisms in some species achieve this state either throughout their existence or after living long enough. This requires that death occur from injury or disease rather than deterioration, i.e., the absence of cellular senescence. However, this definition of immortality has been challenged in the new Handbook of the Biology of Aging,[1] because the increase in rate of mortality as a function of chronological age may be negligible at extremely old ages, also referred to as the late-life mortality plateau. The rate of mortality may cease to increase in old age, but in most cases that rate is typically very high.[2] As a hypothetical example, there is only a 50% chance of a human surviving another year at age 110 or greater. The fact that some multi-cellular organisms do not experience senescence implies that aging is not an Aristotelian inevitability and refutes the prior hypothesis that aging follows a Gompertz model.[3] No actual organism or individual cell is inviolably immortal (i.e. "invincible" or "indestructible"). Biologically immortal living things die, for example, upon receiving sufficient injury or otherwise having its body destroyed or diseased.

Contents

Cell lines

Main article: Cell culture

Biologists have chosen the word immortal to designate cells that are not limited by the Hayflick limit (where cells no longer divide because of DNA damage or shortened telomeres). Prior to Leonard Hayflick, Alexis Carrel hypothesized that all normal somatic cells are immortal.

The term immortalization was first applied to cancer cells that expressed the telomere-lengthening enzyme telomerase, and thereby avoided apoptosis (cell death caused by intracellular mechanisms). Among the most commonly used cell lines are HeLa and Jurkat, both of which are immortalized cancer cell lines. Normal stem cells and germ cells can also be said to be immortal (when humans refer to the cell line).

Immortal cell lines of cancer cells can be created by induction of oncogenes or loss of tumor suppressor genes. One way to induce immortality is through viral-mediated induction of the large T-antigen,[4] commonly introduced through simian virus 40 (SV-40).

Organisms

Immortality may not be desirable for multi-cellular organisms, as the main controls over cancer are the apoptotic mechanisms.[5]

Tardigrades

Tardigrades, otherwise known as "water bears", are highly resilient microscopic animals. Capable of surviving extremes such as heat, radiation, drought, and even the vacuum of space by going into suspended animation, where their metabolism slows to near zero and they simply wait out the harsh conditions until the environment is more favorable.

Bacteria

Bacteria are said to be biologically immortal, but only at the level of the colony. An individual bacterium can easily die. The two daughter bacteria resulting from cell division of a parent bacterium can be regarded as unique individuals or as members of a biologically "immortal" colony. The two daughter cells can be regarded as "rejuvenated" copies of the parent cell because damaged macromolecules have been split between the two cells and diluted. In the same way stem cells and gametes can be regarded as "immortal".

Hydra

Hydras are a genus of simple, fresh-water animals possessing radial symmetry and no post-mitotic cells. The fact that all cells continually divide allows defects and toxins to be "diluted". It has been suggested that hydras do not undergo senescence (aging), and as such are biologically immortal.[6] However, this does not explain how hydras are consequently able to maintain telomere lengths.

Jellyfish

Turritopsis nutricula is a small (5 millimeters (0.20 in)) species of jellyfish which uses transdifferentiation to replenish cells after sexual reproduction. This cycle can repeat indefinitely, potentially rendering it biologically immortal. It originated from the Caribbean sea, but has now spread around the world.

Lobsters

Older lobsters are more fertile than younger lobsters. Some scientists have claimed that they could effectively live indefinitely, barring injury, disease, capture, etc. See Lobster longevity

Planarian Flatworms

Planarian flatworms (both sexual and asexual) appear to exhibit an ability to live indefinitely and have an "apparently limitless [telomere] regenerative capacity fueled by a population of highly proliferative adult stem cells."[7].

Life extensionists

This article contains weasel words: vague phrasing that often accompanies biased or unverifiable information. Such statements should be clarified or removed. (September 2011)

Some life extensionists, such as those who practice cryonics, have the hope that humans may someday become biologically immortal.

Biogerontologist Marios Kyriazis suggested that biological immortality in humans is an inevitable consequence of natural evolution.[8][9] His ELPIs (Extreme Lifespans through Perpetual-equalising Interventions) theory proposes that [10] the ability to attain indefinite lifespans is inherent in human biology, and that there will come a time when humans will continue to develop their intelligence and sophistication by living indefinitely, rather than through Darwinian evolution.[11][12]

See also

Book: Biological Immortality
Wikipedia books are collections of articles that can be downloaded or ordered in print.

References

  1. ^ Masoro, E.J.; Austad, S.N. (ed.) (2006). Handbook of the Biology of Aging (Sixth ed.). San Diego, CA, USA: Academic Press. ISBN 0-12-088387-2.
  2. ^ Michael R. Rose; Casandra L. Rauser; Laurence D. Mueller (Nov–Dec 2005). "Late life: a new frontier for physiology". Physiological and Biochemical Zoology 78 (6): 869–878. doi:10.1086/498179. PMID 16228927.
  3. ^ Despain, David (December 6, 2010). "How to achieve ‘biological immortality’ naturally". http://www.kurzweilai.net/how-to-achieve-biological-immortality-naturally?utm_source=KurzweilAI+Daily+Newsletter&utm_campaign=a7cde470e7-UA-946742-1&utm_medium=email. Retrieved December, 2010.
  4. ^ Michael R. Rose; Casandra L. Rauser; Laurence D. Mueller (1983). "Expression of the Large T Protein of Polyoma Virus Promotes the Establishment in Culture of "Normal" Rodent Fibroblast Cell Lines". PNAS 80 (14): 4354–4358. doi:10.1073/pnas.80.14.4354. PMC 384036. PMID 6308618. http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=384036.
  5. ^ Michael R. Rose; Casandra L. Rauser; Laurence D. Mueller (February 2003). "Predominant suppression of apoptosome by inhibitor of apoptosis protein in non-small cell lung cancer H460 cells: therapeutic effect of a novel polyarginine-conjugated Smac peptide". Cancer Res. 63 (19): 831–7. PMID 12591734.
  6. ^ Hydra senescence
  7. ^ Thomas C. J. Tan, Ruman Rahman, Farah Jaber-Hijazi, Daniel A. Felix, Chen Chen, Edward J. Louis, and Aziz Aboobaker (February 2012). [http://www.pnas.org/content/early/2012/02/22/1118885109.full.pdf+html "Telomere maintenance and telomerase activity are differentially regulated in asexual and sexual worms"]. PNAS 109 (9). doi:10.1073/pnas.1118885109. http://www.pnas.org/content/early/2012/02/22/1118885109.full.pdf+html.
  8. ^ https://acrobat.com/#d=MAgyT1rkdwono-lQL6thBQ
  9. ^ http://hplusmagazine.com/2011/03/04/indefinite-lifespans-a-natural-consequence-of-the-global-brain/
  10. ^ http://www.telegraph.co.uk/health/dietandfitness/8822879/Has-the-fountain-of-youth-been-found.html
  11. ^ http://www.elpistheory.info/
  12. ^ http://www.youtube.com/watch?v=wo4btGHy4XI

Bibliography

External links

Longevity
Terminology Centenarian · Supercentenarian · Maximum life span · Life extension · Life expectancy · Immortality (Biological immortality)
Issues Alleged Brazilian supercentenarians · Longevity claims · Incomplete longevity claims · Longevity myths · People reported to have lived beyond 130
Records Oldest people · Oldest people by year of birth · 100 verified oldest people (males · females) · Oldest people by nation · Oldest living people by nation · Longest marriages · Oldest twins
Centenarians Living · Activists, non-profit leaders, and philanthropists · Actors, filmmakers, and entertainers · Artists · Authors, poets, and journalists · Businessmen · Educators, school administrators, social scientists, and linguists · Explorers · Jurists and practitioners of law · Medical professionals · Military commanders · Musicians, composers, and music patrons · Philosophers and theologians · Politicians and government servants · Religious figures · Royalty and nobility · Scientists and mathematicians · Sportspeople · Miscellaneous
Supercentenarians Living · Deaths by year (before 1980 · 1980s · 1990s · 2000 · 2001 · 2002 · 2003 · 2004 · 2005 · 2006 · 2007 · 2008 · 2009 · 2010 · 2011 · 2012) By continent (Europe) By country (Australia · Austria · Belgium · Canada · Denmark · Finland · France · Germany · Italy · Japan · Netherlands · Norway · Portugal · Spain · Sweden · Switzerland · United Kingdom · United States)
War-related lists List of last surviving veterans of military insurgencies and wars (European · American · Canadian) · Last surviving World War I veterans by country · Surviving veterans of the Spanish Civil War · Living recipients of the Knight's Cross · Last survivors of historic events
Non-human Long-living organisms · List of oldest trees · List of oldest dogs
See also Gerontology · Ageing · Life extension-related topics · Extreme longevity tracking · FOXO3 longevity gene

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have the potential to contribute to individual somatic mosaicism Coufal et al 2009 L1 retrotransposition in human neural progenitor cells Nature doi 10 1038 nature08248 Evolution of reverse transcriptases from a common ancestor bearing a LINE archetype Xiong and Eickbush R772 Nakamura et al R498 The root of their evolution goes back to the transfer

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