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High-throughput proteomic platforms are crucial to identify novel Alzheimer's disease (AD) biomarkers and pathways. In this study, we evaluated the reproducibility and reliability of aptamer-based (SomaScan 7k) and antibody-based (Olink Explore 3k) proteomic platforms in cerebrospinal fluid (CSF) samples from the Ace Alzheimer Center Barcelona real-world cohort. Intra- and inter-platform reproducibility were evaluated through correlations between two independent SomaScan assays analyzing the same samples, and between SomaScan and Olink results. Association analyses were performed between proteomic measures, CSF biological traits, sample demographics, and AD endophenotypes. Our 12-category metric of reproducibility combining correlation analyses identified 2428 highly reproducible SomaScan CSF measures, with over 600 proteins well reproduced on another proteomic platform. The association analyses among AD clinical phenotypes revealed that the significant associations mainly involved reproducible proteins. The validation of reproducibility in these novel proteomics platforms, measured using this scarce biomaterial, is essential for accurate analysis and proper interpretation of innovative results. This classification metric could enhance confidence in multiplexed proteomic platforms and improve the design of future panels.
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http://dx.doi.org/10.3390/ijms26010286 | DOI Listing |
J Mass Spectrom Adv Clin Lab
August 2025
U1135, Centre d'Immunologie et des Maladies Infectieuses (Cimi-Paris), Sorbonne Université, Paris, France.
Introduction: The genus including clinically isolated species and , has a still underexplored role in clinical microbiology. Despite the clinical relevance of spp., current MALDI-TOF commercial systems fail to differentiate these species.
View Article and Find Full Text PDFInt J Nanomedicine
September 2025
College of Basic Medical Sciences, Guizhou Medical University, Guiyang, Guizhou, People's Republic of China.
Purpose: Natural killer (NK) cell-derived extracellular vesicles (NK-EVs) have garnered significant research interest in the field of tumor immunotherapy. However, the large-scale production of NK-EVs remains a major challenge, limiting their clinical application. This study aims to develop a simple and efficient method for the preparation of NK cell-derived nanovesicles (NK-NVs) and to evaluate their cytotoxicity and drug delivery potential.
View Article and Find Full Text PDFPlant Cell Environ
September 2025
State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, College of Plant Protection, Yunnan Agricultural University, Kunming, China.
Light and darkness are critical environmental factors that regulate plant immune responses. OsPIL1, a phytochrome-interacting factor-like protein, has been implicated in rice immunity against Magnaporthe oryzae, although its underlying mechanism remains unclear. This study aimed to dissect how OsPIL1 integrates light or darkness to modulate rice immunity.
View Article and Find Full Text PDFAnal Chim Acta
November 2025
Department of Chemical Engineering and Analytical Chemistry, Institute for Research on Nutrition and Food Safety (INSA·UB), University of Barcelona, Spain. Electronic address:
Background: Targeted bottom-up proteomics is of great interest for the straightforward, accurate, and sensitive measurement of specific protein biomarkers from surrogate peptide fragments. However, this approach typically relies on off-line enzymatic digestion with trypsin, a time-consuming step that may be inadequate for covering certain sequence regions containing important post-translational modifications (PTMs).
Results: In this study, we present an in-line enzymatic digestion strategy for the targeted bottom-up analysis of α-synuclein (α-syn), which is a protein biomarker of Parkinson's disease (PD).
Oncogene
September 2025
Division of Neurosurgery, Children's Hospital Los Angeles, Los Angeles, CA, USA.
It has become evident from decades of clinical trials that multimodal therapeutic approaches with focus on cell intrinsic and microenvironmental cues are needed to improve understanding and treat the rare, inoperable, and ultimately fatal diffuse intrinsic pontine glioma (DIPG), now categorized as a diffuse midline glioma. In this study we report the development and characterization of an in vitro system utilizing 3D Tumor Tissue Analogs (TTA), designed to replicate the intricate DIPG microenvironment. The innate ability of fluorescently labeled human brain endothelial cells, microglia, and patient-derived DIPG cell lines to self-assemble has been exploited to generate multicellular 3D TTAs that mimic tissue-like microstructures, enabling an in- depth exploration of the spatio-temporal dynamics between neoplastic and stromal cells.
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