Cognitive Health & Neuroprotection Claims
- Drug Discovery & Preclinical
- Monoclonal Antibodies
- Antibody-Drug Conjugates
- Vaccines (Prophylactic & Therapeutic)
- Cell & Gene Therapies (CGT)
- Allergy & Hypersensitivity
- Biomarker
- High-Dimensional Single-Cell Analysis by Flow Cytometry
- High-Throughput Cytokine & Chemokine Profiling by Multiplexing
- Biomarkers via Advanced IHC & Spatial Imaging
- Rare Cellular Functional Biomarkers by ELISPOT
- Real-Time Kinetic Biomarkers by IncuCyte S3
- Genomic Biomarker Analysis by qPCR & Droplet Digital PCR
- Seahorse XF: Immunometabolism & Bioenergetics
- MALDI Biotyper: Rapid Microbial & Proteomic Profiling
- Sapidyne KinExA
- Robust Protein Quantification by ELISA
- Advanced LNP Formulation & Screening – Unchained Labs Sunshine
- Translational & Clinical Research
- Immunogenicity Risk Assessment & Immunotoxicology
- Regulated Bioanalysis: PK, PD & Soluble Biomarkers
- Histopathology & Spatial Biology
- Advanced Flow Cytometry & Cellular Immunology
- Molecular Bioanalysis & Genomic Profiling
- Functional Potency & Ex Vivo Translational Models
- Central Laboratory & Clinical Trial Sample Management
- Dermo-Cosmetics & FMCG
- Nutraceuticals & Wellness
- Biorepository
Cognitive Health & Neuroprotection Claims
Cognitive and neuroprotection claims require the demonstration of neuronal protection, inflammation control, and metabolic support, particularly under degenerative or stress conditions. We link molecular activity to functional neuronal outcomes by evaluating:
Cell-Based Models:
Neuronal and glial models focusing on cell survival, neuroinflammation, and oxidative stress.
Neuronal Energy Metabolism:
Assessed using the Seahorse XF Analyzer to provide real-time insights into neuronal mitochondrial resilience, a central driver of neuronal health.
Neuroinflammatory Responses:
Quantified via Luminex MAGPIX to simultaneously profile key inflammatory mediators and cytokines relevant to neurodegeneration and cognitive decline.
Cellular Protection:
Flow cytometer assessment of neuronal viability, oxidative stress markers, and apoptosis for detailed characterization of protective effects at the cellular level.
The Result:
A mechanistic framework that confidently supports claims related to mental resilience, neuroprotection, and cognitive performance.