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Dried Blood Spot Collection of Health Biomarkers to Maximize Participation in Population Studies
Published on: January 28, 2014
Biomarkers
Dieu-Trang Fuchs1, Yosef Koronyo1, Miyah R Davis1
1Department of Neurosurgery, Maxine Dunitz Neurosurgical Research Institute, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Background:
Histological and in vivo imaging studies suggest a loss of retinal ganglion cells (RGCs) in Alzheimer's disease (AD) patients, potentially contributing to dysfunctions such as contrast sensitivity, color vision, and circadian rhythms. We previously reported elevated pathogenic-tau isoforms, particularly hyperphosphorylated tau at serine 396 (pS396-tau) and tau oligomers (oligo-tau), in the retinas of patients with mild cognitive impairment (MCI, due-to-AD) and AD dementia compared to cognitively normal (CN) individuals. However, the presence of pathogenic-tau isoforms in RGCs and their impact on RGC integrity in AD have not been studied.
Method:
Retinal cross-sections from 25 patients with MCI or AD and 16 age- and sex-matched CN controls were analyzed. Immunofluorescence and Nissl staining were conducted, using the RGC marker ribonucleic acid binding protein with multiple splicing (RBPMS) in conjunction with pathogenic tau-isoforms, and markers of apoptosis, granulovacuolar degeneration (GVD) bodies, and GVD-associated necroptosis. Stereological quantifications and analyses of RGC size and distribution were performed. Findings were correlated with corresponding brain pathology and cognitive status.
Result:
We present the first evidence of tau inclusions, pS396-tau and T22+ oligo-tau, within RBPMS+ RGCs, alongside a 46-56% reduction in RBPMS+-RGCs and Nissl+-neurons in the ganglion cell layer of MCI and AD retinas. RGC loss was accompanied by morphological and molecular alterations: soma hypertrophy (10-50% enlargement), nuclear displacement, apoptosis (30-50% increase), and prominent expression of CHPM2B+ GVD bodies and pMLKL+ GVD-necroptotic markers. PS396-tau+-RGC and oligo-tau+-RGC counts were 2.1-3.5-fold higher in MCI and AD retinas compared to CN. Tauopathy-laden RGCs intercorrelated (r = 0.85, p <0.0001), and were associated with RGC reduction (r = -0.40-(-0.64), p <0.05-0.01). Their abundance linked with advanced brain pathology (Braak stage V-VI) and cognitive decline (clinical dementia rating 3, mini mental state evaluation <26).
Conclusion:
Our findings suggest that abnormal tau-isoforms accumulate within RBPMS+ RGCs in MCI and AD patients, contributing to early and pronounced RGC loss and correlating with disease severity. This link involves apoptotic and GVD-necroptotic cell death pathways. Future research should validate these results in larger cohorts and develop RGC-tauopathy as a noninvasive biomarker for early AD detection and monitoring.
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