Explore the biology of aging and the cutting-edge research on extending healthy lifespan — telomeres, senescent cells, caloric restriction, rapamycin, and the quest to slow or reverse aging.
Explore the biology of aging and the cutting-edge research on extending healthy lifespan — telomeres, senescent cells, caloric restriction, rapamycin, and the quest to slow or reverse aging.
Elizabeth Blackburn, Carol Greider, and Jack Szostak won the 2009 Nobel Prize for discovering how telomeres and the enzyme telomerase protect chromosomes — research that revealed a molecular clock of aging in every cell. Caloric restriction studies in rhesus monkeys at the University of Wisconsin, published in 2009 and 2014, showed that eating 30% fewer calories extended lifespan and dramatically reduced age-related diseases. The drug rapamycin, originally discovered in Easter Island soil bacteria in 1972, has extended lifespan by up to 25% in mice, making it one of the most promising pharmacological candidates for human aging intervention.
Superlore makes learning about Longevity Science effortless with AI-generated audio lessons. Listen during your commute, workout, or downtime — and absorb complex ideas at your own pace. Every lesson includes citations so you can dive deeper into the sources.
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Longevity Science is one of those subjects that connects to almost everything else. A solid grasp of the fundamentals helps you see the bigger picture — in work, conversation, and life.
The world of Longevity Science is constantly evolving. Superlore's AI generates lessons using the latest research and information, so you're always learning what's current.
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Superlore generates AI-powered audio lessons about Longevity Science that you can listen to anywhere. Just type your topic, choose a length and voice, and get a studio-quality lesson in under 60 seconds — complete with citations and source references.
Yes! Audio learning is proven to improve retention, especially for complex subjects like Longevity Science. Superlore lets you learn during commutes, workouts, or downtime — turning passive time into productive study sessions.
You can explore any angle of Longevity Science — from beginner overviews to deep dives on specific subtopics. Related areas include Nutrition Science, Exercise Science, Biotechnology, Genetics.
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