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Archive for the ‘life extension’ category: Page 506

Jan 16, 2017

Flatworms lose their heads but not their memories

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

(Phys.org) —Tufts University biologists using new, automated training and testing techniques have found that planarian flatworms store memory outside their brains and, if their heads are removed, can apparently imprint these memories on their new brains during regeneration.

The work, published online in the Journal of Experimental Biology, can help unlock the secrets of how memories can be encoded in living tissues, noted Michael Levin, Ph.D., Vannevar Bush professor of biology at Tufts and senior author on the paper.

“As and biomedicine advance, there’s a great need to better understand the dynamics of memory and the brain-body interface. For example, what will happen to stored memory if we replace big portions of aging brains with the progeny of fresh ?” said Levin, who directs the Center for Regenerative and Developmental Biology in Tufts’ School of Arts and Sciences.

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Jan 15, 2017

Cellular Reprogramming Rejuvenates Old Mice and Boosts Lifespans 30%

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

The quest for the fountain of youth is as ancient as humanity itself. Now, it appears scientists may have found the source.

Using a process designed to “reprogram” normal adult cells into pluripotent stem cells—cells that can transform into many different kinds of cells—researchers have managed to boost the life spans of mice by up to 30% and rejuvenate some of their tissues.

Continue reading “Cellular Reprogramming Rejuvenates Old Mice and Boosts Lifespans 30%” »

Jan 14, 2017

Institute of Exponential Sciences D.N.A conference: Liz Parrish

Posted by in categories: biotech/medical, life extension

I missed this one. A Liz lecture with what they do and about regulation questions from the audience.


The fourth speaker at the “Designing New Advances” conference hosted by the Institute of Exponential Sciences in Utrecht. Liz Parrish, CEO BioViva Sciences, talks about her work. Learn more about gene therapies and ageing diseases.

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Jan 13, 2017

Researchers Discover a Pomegranate Compound Could Increase Life Expectancy, Reduce Aging

Posted by in category: life extension

Scientists may be able to unlock the potential of a compound found in a common fruit, whose interaction with a certain gut bacteria helps ward off aging.

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Jan 13, 2017

Senescent cell removal could help chemotherapy patients

Posted by in categories: biotech/medical, life extension

Senescent cell therapy for treating age-related diseases could also help people after chemotherapy.


Senescent cell removal therapies could help reduce the damaging impact chemotherapy has on patients as well as being used to address one of the aging processes to treat diseases.

#aging #cancer

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Jan 12, 2017

Is An Anti-Aging Serum In Your Future? Science-Backed Therapy Targeting Senescent Cells May Be The Answer

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

Senolytics to remove senescent cells will deliver the first “repair” based approach to treat the aging process. This is the arrival of true rejuvenation biotechnology in the SENS model of damage repair.


Senescent cell removal with companies such as Unity, entering human clinical trials in the next 18 months will deliver the first true damage repair rejuevenation biotechnology. This will be the first “repair” approach to the aging process and one the SENS Research Foundation has been advocating for over a decade.

#aging #crowdfundthecure

Continue reading “Is An Anti-Aging Serum In Your Future? Science-Backed Therapy Targeting Senescent Cells May Be The Answer” »

Jan 12, 2017

Scientists discover master regulator of cellular aging

Posted by in categories: biotech/medical, life extension

This is probably important.


Scientists at The Scripps Research Institute (TSRI) have discovered a protein that fine-tunes the cellular clock involved in aging.

This novel , named TZAP, binds the ends of chromosomes and determines how long , the segments of DNA that protect chromosome ends, can be. Understanding telomere length is crucial because telomeres set the lifespan of cells in the body, dictating critical processes such as aging and the incidence of cancer.

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Jan 12, 2017

Craig Venter — How Genome Sequencing Can Fight Aging

Posted by in categories: biotech/medical, life extension

A genome sequenced every 15 minutes.


Filmed November 2016.

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Jan 12, 2017

An Aging Population Is Stalling Productivity

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

Once again the figures show that young to old disparity in the population is the problem not overpopulation. We really need to develop rejvenation biotechnology with all haste.


Once again overpopulation isnt the problem it is the disparity between young and old in the workforce. This makes rejuvenation biotechnology a suitable solution to avoid economic collapse.

“The world is experiencing unparalleled population aging. This poses problems for productivity and growth, unless we do something about it”

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Jan 11, 2017

Glia, not neurons, are most affected by brain aging

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

The microglia are central to aging in the brain and science is already finding ways to reverse it like introducing young microglia to the brain to remove plaques associated with Alzheimers. Brain aging is not a one way process!


The difference between an old brain and a young brain isn’t so much the number of neurons but the presence and function of supporting cells called glia. In Cell Reports on January 10, researchers who examined postmortem brain samples from 480 individuals ranging in age from 16 to 106 found that the state of someone’s glia is so consistent through the years that it can be used to predict someone’s age. The work lays the foundation to better understand glia’s role in late-in-life brain disease.

“We extensively characterized aging-altered changes across 10 human and found that, in fact, glial cells experience bigger changes than ,” says Jernej Ule, a neurobiologist at the Francis Crick Institute and the University College London, who led the study with departmental colleague Rickie Patani (@PataniLab) and first author Lilach Soreq. “There’s quite a bit of regional information that will be of interest to different people—for example some will notice a very unique pattern of astrocyte-specific changes in the substantia nigra—and we provide a lot of data that still needs to be analyzed.”

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