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Neurosenescence, inflammaging and neuroinflammation in neurodegenerative disorders
Duraisamy Kempuraj1, Prathiv Raj Ramesh Babu1,2, Nithura Jayakumar1,3
1Center of Excellence for Neuroinflammation Research, Institute for Neuro-Immune Medicine (INIM), Dr. Kiran C. Patel College of Osteopathic Medicine, Nova Southeastern University, Fort Lauderdale, FL, United States.
Abstract:
Senescence is the biological aging associated with the gradual deterioration of cells and functions of various organs over time. This irreversible process is caused by genetic, metabolic, and environmental factors, such as telomere shortening, exposure to cytotoxic substances, and accumulated cellular damage over time, although the rate of degradation can be modified by lifestyle factors. Immunosenescence specifically refers to senescent changes in the innate and adaptive immunity and is associated with low inflammation known as inflammaging. As immunosenescence implies, reduced immune function leads to impaired tissue function and an increased risk of infection and heightened susceptibility to chronic, autoimmune, and neurodegenerative disorders, such as Alzheimer's disease (AD) in the elderly. An increase in senescent cells is common in aging, which leads to age-associated diseases. Cellular senescence may also contribute to the onset and severity of Parkinson's disease (PD) neuropathology. Inflammaging with high levels of proinflammatory marker expression may result from changes in immune responses, chronic antigenic stimulation, and senescence-associated secretory phenotype (SASP) factors, such as increased expression of interleukin-6 (IL-6), insulin-like growth factor binding proteins (IGFBPs), transforming growth factor-beta (TGF-β) and matrix metalloproteinase-10 (MMP-10) has been reported in AD patients. The levels of the senescence marker p16INK4a and several SASP factors, such as MMP-3, IL-6, IL-1α and IL-8 are elevated along with low levels of astrocytic lamin B1 in the substantia nigra of PD. This review discusses recent developments in neurosenescence and immunosenescence in AD and PD, as well as potential senolytic therapies.
Insights
Cellular senescence, or aging, contributes to neurodegenerative diseases like Alzheimer's and Parkinson's by impairing immune function and causing inflammation. Senolytic therapies offer potential treatment avenues for these age-related conditions.
Area of Science:
- Gerontology
- Immunology
- Neuroscience
Background:
- Cellular senescence, a key aspect of biological aging, involves gradual deterioration of cells and organ functions.
- Immunosenescence, the aging of the immune system, is linked to inflammaging, characterized by chronic low-grade inflammation.
- Increased senescent cells and inflammaging are implicated in age-associated diseases, including Alzheimer's (AD) and Parkinson's (PD).
Purpose of the Study:
- To review recent advancements in understanding neurosenescence and immunosenescence in Alzheimer's disease and Parkinson's disease.
- To explore the role of cellular senescence and inflammaging in the pathogenesis of AD and PD.
- To discuss the potential of senolytic therapies for treating these neurodegenerative disorders.
Main Methods:
- Literature review of recent developments in neurosenescence and immunosenescence.
- Analysis of cellular senescence markers (e.g., p16INK4a) and senescence-associated secretory phenotype (SASP) factors in AD and PD.
- Examination of the link between inflammaging and neurodegeneration.
Main Results:
- Senescent cells and inflammaging are prevalent in aging and contribute to age-associated diseases.
- Specific SASP factors (IL-6, TGF-β, MMP-10) are elevated in AD, while markers like p16INK4a and IL-6 are increased in PD.
- Reduced immune function due to immunosenescence heightens susceptibility to infections and chronic diseases.
Conclusions:
- Cellular senescence and immunosenescence play significant roles in the development and progression of Alzheimer's and Parkinson's diseases.
- Inflammaging, driven by SASP factors, is a key mechanism linking senescence to neurodegeneration.
- Senolytic therapies represent a promising therapeutic strategy for age-related neurodegenerative conditions.
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