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Published on: December 26, 2016
Adipocytokines and CD34 progenitor cells in Alzheimer's disease
Boris Bigalke1, Brigitte Schreitmüller, Kateryna Sopova
1Medizinische Klinik III, Kardiologie und Kreislauferkrankungen, Eberhard-Karls-Universität Tübingen, Tübingen, Germany.
Insights
Low leptin levels and increased CD34(+) progenitor cells are linked to Alzheimer's disease (AD). These findings suggest leptin and CD34(+) cells may play a role in AD pathogenesis and connect vascular disease to AD.
Area of Science:
- Neuroscience
- Cardiovascular Science
- Immunology
Background:
- Alzheimer's disease (AD) and atherosclerosis share vascular risk factors.
- Adipocytokines and CD34(+) progenitor cells are implicated in atherosclerosis but their role in AD is unclear.
Purpose of the Study:
- To investigate the association of leptin, adiponectin, and CD34(+) progenitor cells with early Alzheimer's disease.
- To explore the relationship between these factors and AD pathogenesis.
Main Methods:
- Enzyme-linked immunosorbent assay (ELISA) for adiponectin and leptin.
- Flow cytometry for CD34(+) progenitor cells.
- Analysis of 41 early AD patients and 37 healthy controls.
Main Results:
- AD patients had significantly lower leptin levels (P=0.038) and higher CD34(+) cell counts (P=0.02).
- Leptin levels inversely correlated with CD34(+) cells (r=-0.248, P=0.037).
- Decreased leptin and increased CD34(+) cells were independently associated with AD presence.
Conclusions:
- Low leptin and high CD34(+) cells are associated with Alzheimer's disease.
- Leptin levels predict CD34(+) cell numbers in AD patients.
- These findings suggest a link between leptin, CD34(+) cells, and AD pathogenesis, potentially connecting vascular disease to AD.
Background:
Alzheimer's disease (AD) and atherosclerosis share common vascular risk factors such as arterial hypertension and hypercholesterolemia. Adipocytokines and CD34(+) progenitor cells are associated with the progression and prognosis of atherosclerotic diseases. Their role in AD is not adequately elucidated.
Methods And Findings:
In the present study, we measured in 41 patients with early AD and 37 age- and weight-matched healthy controls blood concentrations of adiponectin and leptin by enzyme linked immunoabsorbent assay and of CD34(+) progenitor cells using flow cytometry. We found significantly lower plasma levels of leptin in AD patients compared with the controls, whereas plasma levels of adiponectin did not show any significant differences (AD vs. control (mean ± SD): leptin:8.9 ± 5.6 ng/mL vs.16.3 ± 15.5 ng/mL;P = 0.038; adiponectin:18.5 ± 18.1 µg/mL vs.16.7 ± 8.9 µg/mL;P = 0.641). In contrast, circulating CD34(+) cells were significantly upregulated in AD patients (mean absolute cell count ± SD:253 ± 51 vs. 203 ± 37; P = 0.02) and showed an inverse correlation with plasma levels of leptin (r = -0.248; P = 0.037). In logistic regression analysis, decreased leptin concentration (P = 0.021) and increased number of CD34(+) cells (P = 0.036) were both significantly associated with the presence of AD. According to multifactorial analysis of covariance, leptin serum levels were a significant independent predictor for the number of CD34(+) cells (P = 0.002).
Conclusions:
Our findings suggest that low plasma levels of leptin and increased numbers of CD34(+) progenitor cells are both associated with AD. In addition, the results of our study provide first evidence that increased leptin plasma levels are associated with a reduced number of CD34(+) progenitor cells in AD patients. These findings point towards a combined involvement of leptin and CD34(+) progenitor cells in the pathogenesis of AD. Thus, plasma levels of leptin and circulating CD34(+) progenitor cells could represent an important molecular link between atherosclerotic diseases and AD. Further studies should clarify the pathophysiological role of both adipocytokines and progenitor cells in AD and possible diagnostic and therapeutic applications.
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