Abcam Human Neurofilament H ELISA Kit (200 kDa Neurofilament protein)
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Specifications:
Application | ELISA-Based Assays |
Storage Temperature | 2-8°C |
Product Type | Elisa Kit |
Product Brand | abcam |
Product Grade | Molecular Biology |
The Abcam Human Neurofilament H ELISA Kit (200 kDa Neurofilament Protein) is a high-performance tool designed for the quantitative measurement of Human Neurofilament H (NF-H) in tissue extracts and cell lysate samples. Utilizing the SimpleStep ELISA® technology, this single-wash protocol delivers accurate results in just 90 minutes, making it a convenient and reliable option for research applications.
Target Overview: Neurofilament H (200 kDa)
- Function:
- Neurofilament H (NF-H) is a key structural component of the neuronal cytoskeleton, playing a critical role in maintaining the caliber and stability of axons.
- It interacts with other intermediate filament proteins, including NEFL (light chain) and NEFM (medium chain), to form neurofilaments crucial for proper neuronal function.
- NF-H is particularly significant in mature axons and may also interact with PRPH and INA to create filamentous neuronal networks.
- Alternative Names:
- NF-H
- Neurofilament heavy polypeptide
- 200 kDa neurofilament protein
- Neurofilament triplet H protein
Kit Features and Benefits
- Simplified Workflow:
- Single-wash, 90-minute assay for time-efficient processing.
- High Specificity:
- Targets Human Neurofilament H (NF-H) with precision, ensuring minimal cross-reactivity.
- Broad Sample Compatibility:
- Suitable for analyzing tissue extracts and cell lysates.
- Comprehensive Kit Components:
- Includes pre-coated 96-well microplate and all necessary reagents for a complete assay.
Applications
- Neuroscience Research:
- Study axonal structure and function in neuronal systems.
- Investigate neurodegenerative diseases, such as ALS, Parkinson’s disease, or Alzheimer’s disease, where neurofilament levels are biomarkers for neuronal damage.
- Cell Biology:
- Analyze the role of neurofilaments in maintaining cytoskeletal integrity.
- Examine NF-H dynamics during neuronal differentiation and axonal injury.
- Protein Quantification:
- Quantify NF-H expression levels in various cell and tissue models.
- Drug Discovery:
- Evaluate the effects of therapeutic compounds on neuronal health and axonal stability.
Kit Components
- 10X Human Neurofilament H (Capture Antibody) – 600 µL
- 10X Human Neurofilament H (Detector Antibody) – 600 µL
- 10X Wash Buffer PT (ab206977) – 20 mL
- 50X Cell Extraction Enhancer Solution (ab193971) – 1 mL
- 5X Cell Extraction Buffer PTR (ab193970) – 10 mL
- Antibody Diluent 5BI – 6 mL
- Human Neurofilament H Lyophilized Recombinant Protein – 2 vials
- Plate Seals – 1 unit
- Sample Diluent NS (ab193972) – 12 mL
- SimpleStep Pre-Coated 96-Well Microplate (ab206978) – 1 unit
- Stop Solution – 12 mL
- TMB Development Solution – 12 mL
Technical Specifications
- Analytical Sensitivity: High sensitivity for precise quantification.
- Assay Duration: 90 minutes.
- Assay Range: Reliable detection across a broad range of NF-H concentrations.
- Sample Volume: Requires only 50 µL per sample.
- Instrument Compatibility: Requires a colorimetric microplate reader.
Shipping and Storage
- Shipping Conditions: Shipped on wet ice to maintain reagent stability.
- Storage: Store at 2–8°C as per component-specific guidelines to ensure longevity and performance.
Use Cases
- Quantifying Axonal Injury:
- Assess NF-H levels as a biomarker for axonal damage in neurodegenerative diseases.
- Drug Efficacy Testing:
- Monitor changes in NF-H expression in response to neuroprotective treatments.
- Neuronal Differentiation Studies:
- Evaluate NF-H as an indicator of mature neuronal phenotypes.
- Cytoskeletal Dynamics:
- Investigate how alterations in neurofilament composition affect neuronal structure and function.
Notes
- For Research Use Only: Not for use in diagnostic procedures.
- Validation: Each kit lot undergoes rigorous testing for sensitivity, specificity, and reproducibility.
This ELISA kit is a valuable tool for neuroscience and cell biology researchers aiming to unravel the complexities of neuronal structure and neurodegeneration.