MTOR ELISA Kit
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- Target See all MTOR (mTOR) ELISA Kits
- MTOR (mTOR) (Mechanistic Target of Rapamycin (serine/threonine Kinase) (mTOR))
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Reactivity
- Rat
- Detection Method
- Colorimetric
- Method Type
- Sandwich ELISA
- Detection Range
- 0.156 ng/mL - 10 ng/mL
- Minimum Detection Limit
- 0.156 ng/mL
- Application
- ELISA
- Purpose
- MTOR ELISA Kit is an ELISA Kit against MTOR.
- Sample Type
- Plasma, Serum
- Analytical Method
- Quantitative
- Sensitivity
- 0.01 ng/mL
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- Discover our best selling mTOR ELISA Kit
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- Discover our top product mTOR ELISA Kit
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- Application Notes
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Stability: The stability of the kit is determined by the rate of activity loss. The loss rate is less than 5 % within the expiration date under appropriate storage conditions. To minimize performance fluctuations, operation procedures and lab conditions should be strictly controlled. It is also strongly suggested that the whole assay is performed by the same user throughout.
Recommended dilutions: Optimal dilutions/concentrations should be determined by the end user.
Standard Form: Lyophilized
- Comment
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The stability of the kit is determined by the rate of activity loss. The loss rate is less than 5% within the expiration date under appropriate storage conditions. To minimize performance fluctuations, operation procedures and lab conditions should be strictly controlled. It is also strongly suggested that the whole assay is performed by the same user throughout.
- Plate
- Pre-coated
- Restrictions
- For Research Use only
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- Storage
- 4 °C/-20 °C
- Storage Comment
- Upon receipt, store the kit according to the storage instruction in the kit's manual.
- Expiry Date
- 6 months
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- Target See all MTOR (mTOR) ELISA Kits
- MTOR (mTOR) (Mechanistic Target of Rapamycin (serine/threonine Kinase) (mTOR))
- Alternative Name
- MTOR (mTOR Products)
- Pathways
- PI3K-Akt Signaling, RTK Signaling, AMPK Signaling, Interferon-gamma Pathway, Fc-epsilon Receptor Signaling Pathway, EGFR Signaling Pathway, Neurotrophin Signaling Pathway, Regulation of Actin Filament Polymerization, Regulation of Muscle Cell Differentiation, Regulation of Cell Size, Skeletal Muscle Fiber Development, Regulation of Carbohydrate Metabolic Process, Autophagy, CXCR4-mediated Signaling Events, BCR Signaling, Warburg Effect
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