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Meet the Zombie Cells Aging Your Body
24 ago 20265 min de lectura

Meet the Zombie Cells Aging Your Body

Every cell in your body has a life cycle. It's born, it does its work, and when it's worn out or damaged, it retires, and your body clears it away to make room for a fresh one. It happens billions of times a day, and most of the time it works beautifully.

But every so often, a cell that should retire doesn't.

It's been damaged, and instead of stepping aside cleanly, it refuses to do its job and leave. Scientists have a name for these cells that won't die: zombie cells. And it won't be the last.

What a Zombie Cell Is

To understand a zombie cell, it helps to know what's supposed to happen instead.


When a cell takes on too much damage, it's supposed to do one of two things: repair itself, or shut down for good so the body can clear it away. A zombie cell, known as senescent cell in the literature, does neither. It stops dividing and working, but it won't shut down or leave. It just stays.¹

Here's the strange part. It's not dead. It's still there, still active in its own way, using energy and taking up space. Alive enough to matter, broken enough to cause problems. This is where the "zombie" nickname comes from, and it's quite accurate.

How a Cell Turns

Here's the part that surprises people. A zombie cell doesn't start as a monster. It starts as a cell trying to protect your body.


When a cell's DNA gets damaged badly enough, letting it keep dividing is dangerous, because it could pass that damage on, or turn cancerous. So the cell makes a sacrifice. It shuts down its own ability to divide, taking itself out of the game to protect everything around it. That shutdown is senescence, and in that moment, it's an act of protection.¹

But the sacrifice costs it something. A cell in this state isn't the cell it once was. It lingers on, hollowed out, still alive but without a purpose. And here's the cruel turn: the cell that shut itself down to protect its neighbors becomes the thing that puts them in danger.

This is where the spread begins.

How They Spread

When the cell shuts itself down, it calls for help.


It sends out a signal, a plea to the body's immune system: "Something's wrong here, come remove me." The fallen cell is still trying to do the right thing. It wants to be cleared.

But the cleanup crew is slow, and the call often goes unanswered. So the signal keeps going, but no help comes. Our hero-turned-zombie can't hold on anymore, and starts turning the cells around it.

One zombie becomes two, two become four, panic starts to grow, until a whole stretch of tissue has turned. Not by multiplying, but by conversion.

That spreading signal has a name: the senescence-associated secretory phenotype, or SASP, and it's the main way senescent cells reshape the tissue around them.²⁻³

Why the Horde Grows

For most of our life, our immune system (the cleanup crew) is able to keep up. The signal gets answered, the fallen cells are cleared, the tissue heals. But the horde keeps growing stronger and stronger.


Our cleanup crew ages along with us. It slows down, loses its tools, and starts missing signals. Zombies that would've been cleared linger, healthy cells get caught in the crossfire, and the horde becomes unstoppable.

The body is losing the fight because it's getting old. More and more zombie cells spread, and the horde itself becomes an engine of aging.⁴

Fighting Back

Here's where the story turns. We're not helpless against the horde, and a few natural compounds have shown real promise.


Three of them play different roles in the fight:
  • Resveratrol (The Quarantine Zone). It doesn't attack the zombies. It contains them, forming a kind of quarantine around the horde that keeps the SASP from leaking out to healthy cells.⁵
  • Fisetin (The Frontline). This one goes straight at the horde. In animal studies, it's stood out for clearing senescent cells. It's still early research, but some of the most exciting work in the field.⁶
  • Quercetin (The Reinforcements). It fights alongside fisetin, not alone. Milder on its own, but in company it pulls its weight.⁷

This is emerging research, still in lab and animal studies. But for the first time, we have something to push back against the horde.

Where That Leaves Us

We're not without options. We built Neumina's NAD+ Complex around the compounds researchers are studying for this fight: resveratrol to contain the spread, fisetin and quercetin to go after the cells. Not a cure, just a way to send some support to a body that's been fighting on its own for years.


Your body has been clearing these zombie cells your whole life. That quiet work is exactly what the research is now learning to support. Aging isn't a battle we lose all at once. It's an ongoing story, cell by cell, and for the first time, we're learning how to support it.

Explore Neumina's Sea Moss Complex → 

These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure, or prevent any disease.

References

  1. Ajoolabady A, Pratico D, Bahijri S, et al. Hallmarks of cellular senescence: biology, mechanisms, regulations. Exp Mol Med. 2025;57:1482-1491. doi:10.1038/s12276-025-01480-7
  2. Wang B, Han J, Elisseeff JH, et al. The senescence-associated secretory phenotype and its physiological and pathological implications. Nat Rev Mol Cell Biol. 2024;25:958-978. doi:10.1038/s41580-024-00727-x
  3. Ohtani N. The roles and mechanisms of senescence-associated secretory phenotype (SASP): can it be controlled by senolysis? Inflamm Regen. 2022;42(1):11. doi:10.1186/s41232-022-00197-8
  4. Majewska J, Krizhanovsky V. Immune surveillance of senescent cells in aging and disease. Nat Aging. 2025;5:1415-1424. doi:10.1038/s43587-025-00910-5
  5. Pitozzi V, Mocali A, Laurenzana A, et al. Chronic resveratrol treatment ameliorates cell adhesion and mitigates the inflammatory phenotype in senescent human fibroblasts. J Gerontol A Biol Sci Med Sci. 2013;68(4):371-381. doi:10.1093/gerona/gls183Preclinical (human cell culture); resveratrol reduced SASP signals. It does not clear senescent cells.
  6. Murray KO, Mahoney SA, Ludwig KR, et al. Intermittent supplementation with fisetin improves physical function and decreases cellular senescence in skeletal muscle with aging. Aging Cell. 2025;24(8):e70114. doi:10.1111/acel.70114Animal study (old mice); proof-of-concept for fisetin's senolytic effect.
  7. Islam MT, Tuday E, Allen S, et al. Senolytic drugs, dasatinib and quercetin, attenuate adipose tissue inflammation, and ameliorate metabolic function in old age. Aging Cell. 2023;22(2):e13767. doi:10.1111/acel.13767Animal study; cited for the senolytic mechanism, studied in combination.
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Amy Qin, PhD, RD, CDCES, Nutrition Scientist at Neumina

Amy Qin is a Nutrition Scientist at Neumina with training in both nutrition research and clinical care. She received her PhD in Nutrition and Metabolism from the University of Wisconsin-Madison and completed clinical training at Stanford Hospital and UCSF Benioff Children's Hospital.

Her work focuses on applying nutrition science to metabolism, aging, and chronic disease management in ways that are practical and personalized.