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Supplier : Arigo Biolaboratories
|Production type||ELISA Kits|
|Tested Reactivity||Mouse, Rat|
|Target Name||Mouse/Rat IGF-I|
|Conjugation Note||TMB at 450 nm|
|Sample Volume||50 ul|
|Full Name||insulin-like growth factor 1|
|Alternate Names||Check alternative names for the Mouse/Rat IGF-I ELISA Kit Expand
IBP1 Elisa kits|IGF I Elisa kits|IGF IA Elisa kits|IGF IB Elisa kits|IGF-I Elisa kits|Igf1 Elisa kits|IGF1_HUMAN Elisa kits|IGF1A Elisa kits|IGFI Elisa kits|IGFIA Elisa kits|Insulin like growth factor 1 (somatomedin C) Elisa kits|Insulin like growth factor 1 Elisa kits|Insulin like growth factor IA Elisa kits|Insulin like growth factor IB Elisa kits|Insulin-like growth factor I Elisa kits|Mechano growth factor Elisa kits|MGF Elisa kits|OTTHUMP00000195080 Elisa kits|OTTHUMP00000195081 Elisa kits|OTTHUMP00000195082 Elisa kits|OTTHUMP00000195083 Elisa kits|OTTHUMP00000195084 Elisa kits|Somatomedia C Elisa kits|Somatomedin C Elisa kits|Somatomedin-C Elisa kits
|Storage instruction||Store the kit at 2-8°C. Keep microplate wells sealed in a dry bag with desiccants. Do not expose test reagents to heat, sun or strong light during storage and usage. Please refer to the product user manual for detail temperatures of the components or simply ask Antibodyplus for ELISA troublesooting.|
|Note||Antibodyplus and Arigo provide the most validated ELISA kits for researchers. For laboratory research only, not for drug, diagnostic or other use.|
|User’s manual of Mouse/Rat IGF-I ELISA Kit||Download|
|Cat No.|| |
|Conjugation note|| |
TMB at 450 nm
|Sample type|| |
|Sample Volume|| |
|Target name|| |
|Store at|| |
4 Celcius degree
|Storage instruction|| |
Store the kit at 2-8 Celcius degree. Keep microplate wells sealed in a dry bag with desiccants. Do not expose test reagents to heat, sun or strong light during storage and usage. Please refer to the product user manual for detail temperatures of the components.
This gene encodes a member of the insulin-like growth factor (IGF) family of proteins that promote growth and development during fetal and postnatal life. This gene is predominantly expressed in the liver and the encoded protein undergoes proteolytic processing to generate a disulfide-linked mature polypeptide. Transgenic disruption of this gene in mice results in reduced postnatal survival and severe growth retardation. Mice lacking the encoded protein exhibit generalized organ hypoplasia including underdevelopment of the central nervous system and developmental defects in bone, muscle and reproductive systems. Alternative splicing results in multiple transcript variants encoding different isoforms that may undergo similar processing to generate mature protein. [provided by RefSeq, Sep 2015]
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