GFAP Rabbit Polyclonal Antibody
CAT#: TA302094
Rabbit Polyclonal Antibody against GFAP (N-term)
Size: 50 ul
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CNY 6160.00
| Cited in 10 publications. |
CNY 3080.00
CNY 300.00
CNY 1430.00
CNY 2900.00
CNY 6650.00
CNY 9998.00
Specifications
| Product Data | |
| Applications | IHC, WB |
| Recommend Dilution | IHC: 1:50~100, WB: 1:1000 |
| Reactivity | Human |
| Host | Rabbit |
| Clonality | Polyclonal |
| Immunogen | This GFAP antibody is generated from rabbits immunized with a KLH conjugated synthetic peptide between 10-40 amino acids from the N-terminal region of human GFAP. |
| Isotype | Ig |
| Formulation | Purified polyclonal antibody supplied in PBS with 0.09% (W/V) sodium azide. |
| Purification | This antibody is prepared by Saturated Ammonium Sulfate (SAS) precipitation followed by dialysis against PBS. |
| Conjugation | Unconjugated |
| Storage Condition | Store at -20°C as received. |
| Predicted Protein Size | 49880 Da |
| Gene Name | glial fibrillary acidic protein |
| Database Link | |
| Background | GFAP is one of the major intermediate filament proteins of mature astrocytes. It is used as a marker to distinguish astrocytes from other glial cells during development. Mutations in this gene cause Alexander disease, a rare disorder of astrocytes in the central nervous system. |
| Synonyms | ALXDRD |
| Reference Data | |
| Protein Families | ES Cell Differentiation/IPS |
Citations (10)
| The use of this Antibodies has been cited in the following citations: |
|---|
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Expandable Sendai-Virus-Reprogrammed Human iPSC-Neuronal Precursors: In Vivo Post-Grafting Safety Characterization in Rats and Adult Pig
,null,
Cell Transplantation
,PubMed ID 37088987
[GFAP]
|
|
Derivation of Sendai-Virus-Reprogrammed Human iPSCs-Neuronal Precursors: In Vitro and In Vivo Post-grafting Safety Characterization
,null,
Cell Transplantation
,PubMed ID 36959733
[GFAP]
|
|
Spinal parenchymal occupation by neural stem cells after subpial delivery in adult immunodeficient rats
,Marsala, M;Kamizato, K;Tadokoro, T;Navarro, M;Juhas, S;Juhasova, J;Marsala, S;Studenovska, H;Proks, V;Hazel, T;Johe, K;Kakinohana, M;Driscoll, S;Glenn, T;Pfaff, S;Ciacci, J;,
Stem Cells Transl Med
,PubMed ID 31800978
[GFAP]
|
|
Chemotherapy accelerates age-related development of tauopathy and results in loss of synaptic integrity and cognitive impairment
,Chiang, ACA;Huo, X;Kavelaars, A;Heijnen, CJ;,
Brain Behav. Immun.
,PubMed ID 30953771
[GFAP]
|
|
The alpha-melanocyte-stimulating hormone acts as a local immune homeostasis factor in experimental allergic asthma
,Webering, S;Lunding, L;Vock, C;Schröder, A;Gaede, KI;Herzmann, C;Fehrenbach, ;Wegmann, M;,
Clin. Exp. Allergy
,PubMed ID 30980429
[GFAP]
|
|
Astrocytes migrate from human neural stem cell grafts and functionally integrate into the injured rat spinal cord
,Lien, BV;Tuszynski, MH;Lu, P;,
Exp. Neurol.
,PubMed ID 30653967
[GFAP]
|
|
A First-in-Human, Phase I Study of Neural Stem Cell Transplantation for Chronic Spinal Cord Injury
,Curtis, E;Martin, JR;Gabel, B;Sidhu, N;Rzesiewicz, TK;Mandeville, R;Van Gorp, S;Leerink, M;Tadokoro, T;Marsala, S;Jamieson, C;Marsala, M;Ciacci, JD;,
Cell Stem Cell
,PubMed ID 29859175
[GFAP]
|
|
Prolonged human neural stem cell maturation supports recovery in injured rodent CNS
,Lu, P;Ceto, S;Wang, Y;Graham, L;Wu, D;Kumamaru, H;Staufenberg, E;Tuszynski, MH;,
J. Clin. Invest.
,PubMed ID 28825600
[GFAP]
|
|
Potent spinal parenchymal AAV9-mediated gene delivery by subpial injection in adult rats and pigs
,Miyanohara, A;Kamizato, K;Juhas, S;Juhasova, J;Navarro, M;Marsala, S;Lukacova, N;Hruska-Plochan, M;Curtis, E;Gabel, B;Ciacci, J;Ahrens, ET;Kaspar, BK;Cleveland, D;Marsala, M;,
Mol Ther Methods Clin Dev
,PubMed ID 27462649
[GFAP]
|
|
Spinal cord reconstitution with homologous neural grafts enables robust corticospinal regeneration
,Kadoya, K;Lu, P;Nguyen, K;Lee-Kubli, C;Kumamaru, H;Yao, L;Knackert, J;Poplawski, G;Dulin, JN;Strobl, H;Takashima, Y;Biane, J;Conner, J;Zhang, SC;Tuszynski, MH;,
Nat. Med.
,PubMed ID 27019328
[GFAP]
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