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Category Archives: Longevity Medicine

Investing in Cryonics for the Long, Long Term

An open access anthropology paper on cryonics, illustrating in a number of subtle and less subtle ways the eternal divide between students of soft sciences and students of hard sciences: “Cryonics is a particularly American social practice, created and taken up by a particular type of American: primarily a small faction of white, male, atheist, Libertarian, middle- and upper-middle-income, computer/engineering ‘geeks’ who believe passionately in the free market and its ability to support technological progress. In this article, I investigate the relations between the discourses and practices of cryonics and its underpinnings in the values associated with neoliberal capitalism. I take seriously the premise that cryonics is an investment in the possibility of an extended future and a potential insurance policy against death. I show how cryonics is conceived of as an attempt to gain sovereignty over the limits of biological time, achieved through both monetary investment and the banking of biological objects understood to be actual selves. Cryonics demonstrates a unique way in which time, capital, and biotechnoscience can come together in the name of future life. An examination of the extreme example of cryonics reveals how speculative economic reasoning is applied to lives and bodies in the United States. I argue that cryonics is one response to American anxieties about time, the impending decline of the human body, and its culmination in death that draws on logics of biomedicine, technological progress, and investment forms. I describe some of the many unique aspects of cryonics and some of its similarities to venture capitalism, mainstream biomedical practice, and other sites where investment in the self and biotechnoscience come together, chiefly in other forms of tissue banking.”

View the Article Under Discussion: http://www.informaworld.com/smpp/section?content=a921989939&fulltext=713240928

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Investing in Cryonics for the Long, Long Term

An open access anthropology paper on cryonics, illustrating in a number of subtle and less subtle ways the eternal divide between students of soft sciences and students of hard sciences: "Cryonics is a particularly American social practice, created and taken up by a particular type of American: primarily a small faction of white, male, atheist, Libertarian, middle- and upper-middle-income, computer/engineering 'geeks' who believe passionately in the free market and its ability to support technological progress. In this article, I investigate the relations between the discourses and practices of cryonics and its underpinnings in the values associated with neoliberal capitalism. I take seriously the premise that cryonics is an investment in the possibility of an extended future and a potential insurance policy against death. I show how cryonics is conceived of as an attempt to gain sovereignty over the limits of biological time, achieved through both monetary investment and the banking of biological objects understood to be actual selves. Cryonics demonstrates a unique way in which time, capital, and biotechnoscience can come together in the name of future life. An examination of the extreme example of cryonics reveals how speculative economic reasoning is applied to lives and bodies in the United States. I argue that cryonics is one response to American anxieties about time, the impending decline of the human body, and its culmination in death that draws on logics of biomedicine, technological progress, and investment forms. I describe some of the many unique aspects of cryonics and some of its similarities to venture capitalism, mainstream biomedical practice, and other sites where investment in the self and biotechnoscience come together, chiefly in other forms of tissue banking."

View the Article Under Discussion: http://www.informaworld.com/smpp/section?content=a921989939&fulltext=713240928

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Evolution and Gender Longevity Differences

This particular researcher is somewhat fixated on TOR (when all you have is a hammer...) but this open access paper provides an interesting set of ideas on why men and women have differing life expectancies: "Women have lived longer than men in different countries and in every era ... Yet, it is believed that men do not age faster than women but simply are weaker at every age. In contrast, I discuss that men [do] age faster. From [an] evolutionary perspective, high accidental death rate in young males is compatible with fast aging. Mechanistically, hyper-activated mTOR (Target of Rapamycin) may render young males robust at the cost of accelerated aging. But if women age slower, why then is it women who have menopause? Some believe that menopause is programmed and purposeful (grandmother theory). In contrast, I discuss how menopause is not programmed but rather is an aimless continuation of the same program that initially starts reproduction at puberty. This quasi-program causes over-activation of female reproductive system, which is very vulnerable to over-activation."

View the Article Under Discussion: http://www.impactaging.com/papers/v2/n5/full/100149.html

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Bone Scaffolds to Order

Researchers continue to make progress in scaffolding materials that enable the body to regrow missing bone: "In contrast to long-term solutions based on titanium, degradable implants are intended to replace the missing pieces of bone only until the fissure closes itself up. That may last months or even years, depending on the size of the defect, the age and health status of the patient. A new implant improves the conditions for the healing process. It emerged from the "Resobone" project of the federal ministry for education and research, and is sized-to-fit for each patient. Unlike the conventional bony substitutes to date, it is not made up as a solid mass, but is porous instead. Precise little channels permeate the implant at intervals of just a few hundred micrometers. ... The porous canals create a lattice structure which the adjacent bones can grow into. ... the Resobone implants will primarily replace missing facial, maxillary and cranial bones. Currently, they are able to close fissures of up to 25 square centimeters in size. ... The patient's computer tomography serves as the template for the precision-fit production of the implants. The work processes - from CT imaging, to construction of the implant, through to its completion - are coordinated in such precise sequences that the replacement for a defective zygomatic bone can be produced in just a few hours, while a five-centimeter large section of cranium can be done overnight."

View the Article Under Discussion: http://www.fraunhofer.de/en/press/research-news/2010/06/bone-replacement-laser-melting.jsp

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More Tissue Engineered Skin

From the Sydney Morning Herald: "A full thickness artificial skin which should dramatically reduce the pain and scarring associated with skin grafts is being developed by Sydney researchers. Burns experts from the University of Sydney and Concord Hospital have started animal trials of a living skin that is grown outside the body and is completely functional when grafted on to the body. Unlike traditional skin grafts, which involve only the thin outer layer of the skin known as the epidermis, the new skin will be able to replace the crucial second layer of skin called the dermis. ... It takes the body weeks to grow into a skin graft and in that time a lot of excess elastic fibres and collagen will be produced that will then turn into a scar. The scar contracts and it can get so tight that patients lose the movement of their mouth and can't talk, or they can't bend their fingers. ... Initial testing of the artificial dermis in mice has found it does not scar and contract when it is transplanted. ... The research has been so successful that a new foundation has been created to centralise the burns research being done at three Sydney hospitals. ... They hope to create scaffolds that can individualise the skin, allowing it to be different colours."

View the Article Under Discussion: http://www.smh.com.au/lifestyle/wellbeing/fully-functional-artificial-skin-being-trialled-by-sydney-researchers-20100614-yaau.html

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A Five Year Timeline for Tissue Engineered Livers

From the Telegraph: a new methodology "could be used to recycle thousands of donated organs which are at present considered too old or damaged for transplantation. ... Many livers have to be discarded because they are too old or too damaged to be of any use.
The new technique works by effectively chemically stripping the old liver down too its basic 'scaffold' or exoskeleton in a process of called 'decellularisation'. Onto this frame of connective tissue and blood vessels, they then regrow the new liver using stem cells from the patient. Stem cells from embryos could also be used. The effectively brand new liver is then transplanted back into the patient. At the moment the technique will require donor organs but it is hoped that eventually pig's livers or artificial scaffolds can be used instead - effectively avoiding donors altogether. ... This scaffold retains for the most part the detailed microarchitecture of the liver, including essential structures such as the blood vessels. We take advantage of this remaining structure to repopulate the scaffold with liver cells to recreate a functional liver. As we have shown this re-engineered liver performs the most essential liver functions in the lab and can be transplanted into rats and stays intact, with the cells able to survive."

View the Article Under Discussion: http://www.telegraph.co.uk/health/healthnews/7825180/Livers-grown-in-the-laboratory-could-solve-organ-transplant-shortage.html

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