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Archive for the ‘life extension’ category: Page 429

Feb 2, 2019

AHS18 Michael Rose — Evolutionary Biology of Diet, Aging, and Mismatch

Posted by in categories: biological, evolution, life extension, mathematics

Human health depends on age and evolutionary history. Firstly, adaptation is age-specific, with Hamilton’s forces of natural selection leading to much greater adaptation at earlier ages than later ages. This of course is how evolutionary biologists explain the existence of aging in the first place. Secondly, when environmental conditions change, it takes surprisingly few generations for populations to adapt to such new conditions, at least at early ages when natural selection is intense. Thirdly, at later ages, when the forces of natural selection are weak, natural selection will often fail to produce adaptation to a selective environment that is not evolutionarily ancient. All three of these themes will be illustrated using both explicit mathematical theory and findings from experimental evolution. At the end of the presentation, we will apply these general scientific insights to the case of human evolutionary history, human aging, and optimal human diets.

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Feb 1, 2019

Rejuvenation Roundup January 2019

Posted by in category: life extension

Brought to you by Nicola Bagalà, the Rejuvenation Roundup is our monthly digest, which takes a look at the big news stories involving the industry and helps keep you informed of current developments in the aging research field.


Welcome to the first Rejuvenation Roundup of the new year! There is quite a bit of news to go through and upcoming events to look forward to, so get comfortable and let’s get started.

LEAF News

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Jan 31, 2019

Could targeting this enzyme slow aging and related diseases?

Posted by in categories: biotech/medical, life extension

In showing how an enzyme halts cell division by producing reactive oxygen species, scientists shed new light on the biology of aging and related diseases.

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Jan 31, 2019

An amazing panel with Aubrey de Grey, Judy Campisi, and Nir Barzilai

Posted by in categories: genetics, life extension

Click on photo to start video.

Hosted by John Lewis of Oisin. Panel title: “A Therapeutic Revolution Against Aging”.


Aubrey de Grey, Judy Campisi, Nir Barzilai in a panel titled “A Therapeutic Revolution Against Aging”. Hosted by John Lewis of Oisin.

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Jan 31, 2019

Senescent Cells and Senolytics

Posted by in categories: biotech/medical, life extension

As your body ages, increasing amounts of your cells enter into a state of senescence. Senescent cells do not divide or support the tissues of which they are part; instead, they emit a range of potentially harmful chemical signals that encourage nearby cells to enter the same senescent state.

Their presence causes many problems: they degrade tissue function, increase levels of chronic inflammation, and can even eventually raise the risk of cancer. Today, we will talk about what senescent cells are, how they contribute to age-related diseases, and, perhaps most importantly, what science is hoping to do about the problem.

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Jan 31, 2019

Translating Aging Research – Ending Age Related Diseases 2018

Posted by in categories: biotech/medical, life extension

Ending Age-Related Diseases — October 3, 2018.

This is a video from the Ending Age-Related Diseases 2018 conference, which was held earlier this year at the Cooper Union in New York City. The conference was designed to bring the worlds of research and investment together in one place and explore the progress and challenges that the industry faces in developing and funding therapies to end age-related disease.

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Jan 31, 2019

New Aging Clock Could Predict Your Future Lifespan

Posted by in categories: biotech/medical, genetics, life extension

A new aging clock developed by Professor Steve Horvath and his research team takes measuring your biological age a step further and can accurately predict your future lifespan.

The epigenetic clock

As we age, our DNA experiences chemical changes called DNA methylation (DNAm); these changes are used as a way to measure age and are the basis of the epigenetic clock. As we age, the methylation patterns present on our DNA change, and researchers can measure these changes to work out how old an animal or person is.

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Jan 30, 2019

A Deeper Look At Human Longevity Genes

Posted by in categories: biotech/medical, life extension

(Advances in science and public health are increasing longevity and enhancing the quality of life for people around the world. In this series of interviews with the Milken Institute Center for the Future of Aging, 14 visionaries are revealing exciting trends and insights regarding healthy longevity, sharing their vision for a better future. The Longevity Innovators interviews highlight new discoveries in biomedical and psychosocial science, as well as strategies to promote prevention and wellness for older adults. This is the last story in the series.)

Director of the Longevity Genes Project at the Albert Einstein College of Medicine, Dr. Nir Barzilai has discovered several longevity genes in humans that appear to protect centenarians against major age-related diseases. Barzilai is also co-founder of CohBar, a biotech company developing mitochondria-based therapeutics to treat diseases associated with aging. In an interview with the Milken Institute Center for the Future of Aging, Barzilai explains why some people have longevity genes and the challenges in drug design for age-related diseases:

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Jan 30, 2019

Bedford Day Celebration with Ben Best

Posted by in categories: biotech/medical, cryonics, life extension

Celebrate Bedford Day, a celebration of the first human to be placed into cryonic suspension.

Dr. James Bedford is the oldest person currently in Cryostasis.

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Jan 30, 2019

The Bioart of Neurons and Memory

Posted by in categories: biotech/medical, cryonics, life extension, neuroscience

Demonstrating the preservation of cells after a living organism is pronounced dead and revived is not a traditional bioart topic. But it is an important one. It is a crucial step for advances in the use of lowered temperatures for sustaining the efficacy of organs and organisms during medical procedures, and especially of preserving neurons for the science cryonics.

My recent bioart research is a breakthrough that will help to build momentum toward more advanced studies on information storage within the brain, as well as short-term behaviors of episodic, semantic, procedural, and working memory.

In this article, I will review how I became involved in this research, the guidance along the way, my initial training at 21st Century Medicine, pitching the research project to Alcor, and submitting my proposal to its Research Center (ARC). I will then take you into the lab, the process of trial and error in our first studies, developing a protocol based on olfactory imprinting and applying several cryopreservation methods, developing the migration index, and the rewards of working with a lab technician who became an admiral colleague.

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