Tag Archives: senolytics

Exploring Longevity’s Next Frontier Senolytics and Zombie Cells

Exploring Longevity’s Next Frontier: Senolytics and Zombie Cells

They’re commonly known as “zombie cells,” but senescent cells are no work of fiction. Discovered in the early 1960s by Leonard Hayflick and Paul Moorhead, senescent cells are cells that remain metabolically active despite being damaged or stressed to the point that they permanently stop dividing. Unlike healthy cells, senescent cells no longer function normally and cannot continue the process of replication. Instead, they linger in tissues throughout the body, secreting a mix of inflammatory molecules known as the senescence-associated secretory phenotype (SASP).

Initially, cellular senescence serves an important protective role, helping prevent damaged cells from becoming cancerous and supporting processes such as wound healing. However, the accumulation of senescent cells over time can become harmful, especially as natural clearance mechanisms, including immune system activity, decline with age. Senescent cells and SASP contribute to tissue damage, promote senescence in neighboring cells, and are increasingly associated with chronic inflammation and age-related diseases.

But researchers are exploring whether senolytics may offer a way to address this process.

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A Look into Senolytic Therapies for Longevity

With a focus on extending and improving the human lifespan, the medical community continues to explore potential avenues in longevity. One such development has directed increased attention to the practice of senolytics – or, the process of flushing senescent cells from the body to discard harmful proteins. Senescent cells are malfunctioning, aged cells which can trigger inflammation and dysfunction, developed in response to disease, injury, or cancerous formations. 

These cells can remain in the body, contributing to the development of many diseases and features of aging, such as heart disease, dementia, osteoporosis, and lung disease. Removing senescent cells from mice was found to alleviate insulin resistance, cell dysfunction, and ameliorate other complications in cases of kidney failure and disease.

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