Inflammation in ALS/FTD pathogenesis
Воспаление в патогенезе ALS/FTD
2018-11-21
SCID: 54.1/tkmvjfym
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Amyotrophic lateral sclerosisAutoinflammatory stateC9orf72Frontotemporal dementiaInnate immune responsesMicroglial dysfunctionNeuroinflammationOPTNPeripheral immune alterationsTBK1
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Abstract (AI)
Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) are neurodegenerative diseases that overlap in their clinical presentation, pathology and genetics, and likely represent a spectrum of one underlying disease. In ALS/FTD patients, neuroinflammation characterized by innate immune responses of tissue-resident glial cells is uniformly present on end-stage pathology, and human imaging studies and rodent models support that neuroinflammation begins early in disease pathogenesis. Additionally, changes in circulating immune cell populations and cytokines are found in ALS/FTD patients, and there is evidence for an autoinflammatory state. However, despite the prominent role of neuro- and systemic inflammation in ALS/FTD, and experimental evidence in rodents that altering microglial function can mitigate pathology, therapeutic approaches to decrease inflammation have thus far failed to alter disease course in humans. Here, we review the characteristics of inflammation in ALS/FTD in both the nervous and peripheral immune systems. We further discuss evidence for direct influence on immune cell function by mutations in ALS/FTD genes including C9orf72, TBK1 and OPTN, and how this could lead to the altered innate immune system "tone" observed in these patients.
Key Findings
1
ALS and FTD overlap clinically, pathologically, and genetically and likely represent a spectrum of a single underlying disease.
2
ALS/FTD patients exhibit changes in circulating immune cell populations and cytokines, indicating a systemic autoinflammatory state.
3
Despite rodent evidence that modifying microglial function can mitigate pathology, anti-inflammatory therapies have so far failed to change disease course in human ALS/FTD.
4
Mutations in ALS/FTD genes (C9orf72, TBK1, OPTN) can directly influence immune cell function and may alter innate immune system 'tone' in patients.
5
Neuroinflammation with innate immune activation of tissue-resident glial cells is uniformly present in end-stage ALS/FTD pathology and appears early in disease pathogenesis according to imaging and rodent models.
Research Object
Inflammation in ALS/FTD patients (neuroinflammation in CNS glia and systemic/autoinflammatory immune changes)
Research Subject
Characteristics, timing, and mechanisms by which neuro- and systemic inflammation (including innate immune responses of tissue-resident glia and altered circulating immune cells/cytokines) contribute to ALS/FTD pathogenesis and are influenced by ALS/FTD gene mutations (e.g., C9orf72, TBK1, OPTN)
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2018-11-21
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