Technical Data

301330-ML650
Clone Type
Polyclonal
Host
Rabbit
Source
Human
Conjugate
MaxLight™650
Isotype
IgG
Grade
Affinity Purified
Applications
WB
Crossreactivity
Hu Mo
Shipping Temp
Blue Ice
Storage Temp
4°C Do Not Freeze
Notes
Preservative Free
BSA Free
Rabbit Anti-CLAC-P, NC2-1 Region (CLACP, Collagen-like Alzheimer Amyloid Plaque Component, CLAC-P NC2-1) (MaxLight 650)

MaxLight™ 650 is a new Far-IR stable dye conjugate comparable to Alexa Fluor™647, DyLight™649, Cy5™ and offers better labeling efficiency, brighter imaging and increased immunodetection. Absorbance (655nm); Emission (676nm); Extinction Coefficient 250,000.

The 9D2 antigen isolated from senile plaque amyloid was identified as collagen-like Alzheimer amyloid plaque component (CLAC), and its precursor as CLACP/collagen type XXV. Both secreted and membrane-tethered forms of CLAC-P/collagen type XXV specifically bind to fibrillized Abeta, implicating these proteins in beta-amyloidogenesis and neuronal degeneration in AD.
Applications
Suitable for use in Western Blot. Other applications not tested.
Recommended Dilution
Optimal dilutions to be determined by the researcher.
Storage and Stability
Store product at 4°C in the dark. DO NOT FREEZE! Stable at 4°C for 12 months after receipt as an undiluted liquid. Dilute required amount only prior to immediate use. Further dilutions can be made in assay buffer. Caution: MaxLight™650 conjugates are sensitive to light. For maximum recovery of product, centrifuge the original vial prior to removing the cap.
Note: Applications are based on unconjugated antibody.
Immunogen
Residues aa171-183 [NHGFLSADQQLIK] at the NC2-1 region of human CLAC-P.
Form
Supplied as a liquid in PBS, pH 7.2. No preservative added. Labeled with MaxLight™650.
Purity
Purified by immunoaffinity chromatography.
Specificity
Recognizes human CLAC-P, at the NC2-1 region. Species Crossreactivity: mouse

Intended for research use only. Not for use in human, therapeutic, or diagnostic applications.

References
1. Hashimoto,T. et. al. EMBO J. 21 (7), 1524-1534 (2002).
USBio References
No references available
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