抗TGF-β3抗体(Anti-TGF-β3, Goat-Poly antibody)
掲載日情報:2018/11/26 現在Webページ番号:26852
TGF-β3に対する抗体(Anti-TGF-β3, Goat-Poly )です。
※ 本製品は研究用です。研究用以外には使用できません。
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価格
[在庫・価格 :2025年04月30日 20時55分現在]
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Anti-TGF-β3, Goat-Poly |
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Anti-TGF-beta 3 Affinity Purified Polyclonal Ab |
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[在庫・価格 :2025年04月30日 20時55分現在]
Anti-TGF-β3, Goat-Poly
文献数: 11
- 商品コード:AF-243-NA
- メーカー:RSD
- 包装:100μg
- 価格:¥106,000
- 在庫:無(未発注)
- 納期:10日程度 ※※ 表示されている納期は弊社に在庫がなく、取り寄せた場合の目安納期となります。
- 法規制等:
説明文 | 別名:ARVD Genbank No: 7043 Protein Accession No: P10600 |
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別包装品 | 別包装品あり | ||||||
法規制等 | |||||||
保存条件 | -20℃ | 法規備考 | |||||
抗原種 | Chicken | 免疫動物 | Goat | ||||
交差性 | Multi-species | 適用 | IHC,Neutralising | ||||
標識 | Unlabeled | 性状 | Antigen Affinity Purified | ||||
吸収処理 | クラス | IgG | |||||
クロナリティ | Polyclonal | フォーマット | |||||
掲載カタログ |
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製品記事 | 免疫染色システム ImmPRESS® Reagent Anti-Goat IgG M1/M2 Macrophage Activation Marker 抗幹細胞マーカー抗体/抗造血幹細胞マーカー抗体(R&D Systems社) Helper T Cells Marker Antibodies |
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関連記事 |
Anti-TGF-beta 3 Affinity Purified Polyclonal Ab
文献数: 0
- 商品コード:AF-243-SP
- メーカー:RSD
- 包装:25μg
- 価格:¥30,000
- 在庫:無(未発注)
- 納期:2~3週間 ※※ 表示されている納期は弊社に在庫がなく、取り寄せた場合の目安納期となります。
- 法規制等:
説明文 | ※受注発注品。形状:溶液または凍結乾燥 別名:ARVD Genbank No: 7043 Protein Accession No: P10600 |
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別包装品 | 別包装品あり | ||||||
法規制等 | |||||||
保存条件 | -20℃ | 法規備考 | |||||
抗原種 | 免疫動物 | Goat | |||||
交差性 | Multi-species | 適用 | IHC,Neutralising | ||||
標識 | Unlabeled | 性状 | Antigen Affinity Purified | ||||
吸収処理 | クラス | IgG | |||||
クロナリティ | Polyclonal | フォーマット | |||||
掲載カタログ |
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製品記事 | 免疫染色システム ImmPRESS® Reagent Anti-Goat IgG M1/M2 Macrophage Activation Marker 抗幹細胞マーカー抗体/抗造血幹細胞マーカー抗体(R&D Systems社) Helper T Cells Marker Antibodies 使いっきり抗体 |
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関連記事 |
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Product Details
Label | Unconjugated |
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Immunogen | S. frugiperda insect ovarian cell line Sf 21-derived recombinant chicken TGF‑ beta 3Ala301-Ser412 (Tyr340Phe)Accession # P10600 |
Source | Polyclonal Goat IgG |
Purification | Antigen Affinity-purified |
Specificity | Detects TGF-beta 3 in direct ELISAs and Western blots. In direct ELISAs and Western blots (non-reducing conditions), less than25% cross‑reactivity with recombinant amphibian TGF-beta 5 is observed, less than 10% cross‑reactivity with TGF-beta 1, TGF-beta 1.2, and TGF-beta 2 is observed, and less than 5% cross-reactivity with recombinant human LAP (TGF-beta 1) is observed. |
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Applications and Data
Recommended Concentration | Sample | |
Western Blot | 1 µg/mL | See below |
Simple Western | 10 µg/mL | See below |
Immunohistochemistry | 5-15 µg/mL | Immersion fixed paraffin-embedded sections of human brain and skin |
Neutralization | Measured by its ability to neutralize TGF‑ beta 3 inhibition of IL‑4-dependent proliferation in the HT‑2 mouse T cell line. Tsang, M. et al. (1995) Cytokine 7:389. The Neutralization Dose (ND50) is typically 0.01‑0.05 µg/mL in the presence of 0.1 ng/mL Recombinant Human TGF‑ beta 3 and 7.5 ng/mL Recombinant Mouse IL‑4. |
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Related Product & Information
Long Name | Transforming Growth Factor beta 3 |
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Entrez Gene IDs | 7043 (Human); 21809 (Mouse); 25717 (Rat) |
Background | TGF-beta 3 |
background_content | Background: TGF-beta 3 TGF-beta 3 (transforming growth factor beta 3) is one of three closely related mammalian members of the large TGF-beta superfamily that share a characteristic cystine knot structure (1‑7). TGF-beta 1, -2 and -3 are highly pleiotropic cytokines that are proposed to act as cellular switches that regulate processes such as immune function, proliferation and epithelial-mesenchymal transition (1‑4). Each TGF-beta isoform has some non-redundant functions; for TGF-beta 3, mice with targeted deletion show defects palatogenesis and pulmonary development (2). Human TGF-beta 3 cDNA encodes a 412 amino acid (aa) precursor that contains a 20 aa signal peptide and a 392 aa proprotein (8). A furin-like convertase processes the proprotein to generate an N-terminal 220 aa latency-associated peptide (LAP) and a C-terminal 112 aa mature TGF- beta 3 (8, 9). Disulfide-linked homodimers of LAP and TGF-beta 3 remain non-covalently associated after secretion, forming the small latent TGF-beta 3 complex (8‑10). Covalent linkage of LAP to one of three latent TGF-beta binding proteins (LTBPs) creates a large latent complex that may interact with the extracellular matrix (9, 10). TGF-beta is activated from latency by pathways that include actions of the protease plasmin, matrix metalloproteases, thrombospondin 1 and a subset of integrins (10). Mature human TGF-beta 3 shows 100%, 99% and 98% aa identity with mouse/dog/horse, rat and pig TGF-beta 3, respectively. It demonstrates cross-species activity (1). TGF-beta 3 signaling begins with high-affinity binding to a type II ser/thr kinase receptor termed TGF-beta RII. This receptor then phosphorylates and activates a second ser/thr kinase receptor, TGF-beta RI (also called activin receptor-like kinase (ALK) -5), or alternatively, ALK-1.This complex phosphorylates and activates Smad proteins that regulate transcription (3, 11, 12). Contributions of the accessory receptors betaglycan (also known as TGF-beta RIII) and endoglin, or use of Smad-independent signaling pathways, allow for disparate actions observed in response to TGF-beta in different contexts (11). |
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Citations
- Expression of versican V3 by arterial smooth muscle cells alters tumor growth factor beta (TGFbeta)-, epidermal growth factor (EGF)-, and nuclear factor kappaB (NFkappaB)-dependent signaling pathways, creating a microenvironment that resists monocyte adhesion.
Authors: Kang I, Yoon D, Braun K, Wight T
J Biol Chem, 2014;289(22):15393-404.
Species: Rat
Sample Type: Whole Cells
Application: Neut - Transforming growth factor Beta 3 is required for excisional wound repair in vivo.
Authors: Le M, Naridze R, Morrison J, Biggs L, Rhea L, Schutte B, Kaartinen V, Dunnwald M
PLoS ONE, 2012;7(10):e48040.
Species: Mouse
Sample Type: In Vivo
Application: In vivo - Activation of transforming growth factor-beta by the integrin alphavbeta8 delays epithelial wound closure.
Authors: Neurohr C, Nishimura SL, Sheppard D
Am. J. Respir. Cell Mol. Biol., 2006;35(2):252-9.
Species: Human
Sample Type: Whole Cells
Application: Neut - Expression of growth factors and growth factor receptor in non-healing and healing ischaemic ulceration.
Authors: Murphy MO, Ghosh J, Fulford P, Khwaja N, Halka AT, Carter A, Turner NJ, Walker MG
Eur J Vasc Endovasc Surg, 2006;31(5):516-22.
Species: Human
Sample Type: Whole Tissue
Application: IHC
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