抗Proinsulin抗体(Anti-Human/Mouse Proinsulin antibody)
掲載日情報:2021/01/28 現在Webページ番号:33919
Proinsulinに対する抗体(Anti-Human/Mouse Proinsulin )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
- Product Details
- Applications and Data
- References
- Related Research Areas
- Related Product & Information
価格
[在庫・価格 :2026年08月06日 14時35分現在]
| 詳細 | 商品名 |
|
文献数 | ||
|---|---|---|---|---|---|
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Anti-Human Proinsulin MAb (Clone 253629) |
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本製品は取扱中止になりました | 0 | ||
[在庫・価格 :2026年08月06日 14時35分現在]
Anti-Human Proinsulin MAb (Clone 253629)
文献数: 0
- 商品コード:MAB13363
- メーカー:RSD
- 包装:500μg
- 本製品は取扱中止になりました
| 説明文 | クローン:253629 |
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|---|---|---|---|
| 法規制等 | |||
| 保存条件 | 法規備考 | ||
| 抗原種 | Human | 免疫動物 | Mouse |
| 交差性 | Human | 適用 | ELISA |
| 標識 | Unlabeled | 性状 | Protein A/G Affinity Purified |
| 吸収処理 | クラス | IgG | |
| クロナリティ | フォーマット | ||
| 掲載カタログ |
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| 製品記事 | |||
| 関連記事 | |||
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Product Details
| Species Reactivity | Human |
|---|---|
| Label | Unconjugated |
| Immunogen | E. coli-derived recombinant human Proinsulin Phe25-Asn110Accession # P01308 |
| Source | Monoclonal Mouse IgG1 Clone # 253629 |
| Purification | Protein A or G purified from hybridoma culture supernatant |
| Specificity | Detects human Proinsulin in sandwich immunoassays. |
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Applications and Data
| Recommended Concentration | Sample | |
| Human Proinsulin Sandwich Immunoassay | Reagent | |
| ELISA Capture (Matched Antibody Pair) | 2-8 µg/mL | Human Proinsulin Antibody (Catalog #MAB13363 ) |
| ELISA Detection (Matched Antibody Pair) | 0.5-2.0 µg/mL | Human Proinsulin Biotinylated Antibody (Catalog #BAM13362 ) |
| ELISA Standard | Recombinant Human Proinsulin Protein, CF (Catalog #1336-PN ) | |
| Please Note: Optimal dilutions should be determined by each laboratory for each application.General Protocolsare available in the Technical Information section on our website. | Preparation and Storage | |
| Reconstitution | Reconstitute at 0.5 mg/mL in sterile PBS. | |
| Shipping | The product is shipped at ambient temperature. Upon receipt, store it immediately at the temperature recommended below. *Small pack size (SP) is shipped with polar packs. Upon receipt, store it immediately at -20 to -70 °C | |
| Stability & Storage | Use a manual defrost freezer and avoid repeated freeze-thaw cycles. 12 months from date of receipt, -20 to -70 °C as supplied. | |
| 1 month, 2 to 8 °C under sterile conditions after reconstitution. | ||
| 6 months, -20 to -70 °C under sterile conditions after reconstitution. | ||
| Background: Proinsulin | Proinsulin is synthesized as a single chain, 110 amino acid (aa) preproprecursor that contains a 24 aa signal sequence and an 86 aa proinsulin propeptide. Following removal of the signal peptide, the proinsulin peptide undergoes further proteolysis to generate mature insulin, a 51 aa disulfide-linked dimer that consists of a 30 aa B chain (aa 25‑54) bound to a 21 aa A chain (aa 90‑110). The 34 aa intervening peptide (aa 55‑89) that connects the B and A chains is termed the C-peptide. Human proinsulin shares 84% and 80% aa sequence identity with rat and bovine proinsulin, respectively. Most of the sequence variation between species occurs in the region of the C-peptide (1). This peptide generates a structural conformation that allows for the correct formation of the intrachain disulphide bonds (1). Insulin is a molecule that facilitates the cellular uptake of glucose. This is accomplished by regulating the appearance of membrane glucose transporters. Low insulin levels or lack of insulin are associated with type 2 and type 1 diabetes mellitus, respectively. These conditions are associated with an increased risk for microvascular complications such as retinopathy, nephropathy, and peripheral neuropathy (3). Proinsulin also circulates, but its physiologic role is less well understood. It does possess about 25% of the activity of mature insulin, but it would seem unlikely to be a natural substitute for insulin (4). In type 2 diabetes, an elevated proinsulin to insulin ratio in the circulation is a well-known abnormality (5‑9). Perhaps this abnormality represents either compromised proteolytic processing or a general inability to process increased levels of insulin precursor (5). In any event, proinsulin will stimulate amylin secretion by beta -cells, and amyloid formation in pancreatic islets that promotes decreased beta cell function (10). Studies also suggest that fasting serum proinsulin may be a better predictor of future type 2 diabetes than fasting insulin levels in obese children (11). |
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References
| Bell, G.I. et al. (1980) Nature 284:26. | |
| Barbetti, F. et al. (1990) J. Clin. Endocrinol. Metab. 71:164. | |
| Forst, T. et al. (2008) Exp. Diabetes Res. 2008:176245. | |
| Steffes, M.W. et al. (2003) Diabetes Care 26:832. | |
| Roder, M.E. et al. (1999) Diabetes Care 22:609. | |
| Porte, D. Jr. (1991) Diabetes 40:166. | |
| Gordon, P. et al. (1974) Diabetologia 34:483. | |
| Saad, M.F. et al. (1990) J. Clin. Endocrinol. Metab. 70:1247. | |
| Roder, M.E. et al. (1995) J. Clin. Endocrinol. Metab. 80:2359. | |
| Dworacka, M. et al. (2006) Int. J. Clin. Pharmacol. Ther. 44:14. | |
| Kamoda, T. et al. (2006) Diabetes Obes. Metab. 8:192. | |
| Entrez Gene IDs: | 3630 (Human); 16333 (Mouse) |
| Alternate Names: | IDDM2; ILPR; insulin; IRDN; MODY10; Proinsulin |
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Related Research Areas
| Diabetes |
| Glucose Homeostasis |
| Growth Hormone/IGF-I Axis |
| Metabolic Peptide Hormones and Regulators |
| Nutrition and Appetite |
| Pancreatic Endoderm |
| Pancreatic Endoderm Cell Markers |
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Related Product & Information
| Background | Proinsulin |
|---|---|
| background_content | Background: Proinsulin Proinsulin is synthesized as a single chain, 110 amino acid (aa) preproprecursor that contains a 24 aa signal sequence and an 86 aa proinsulin propeptide. Following removal of the signal peptide, the proinsulin peptide undergoes further proteolysis to generate mature insulin, a 51 aa disulfide-linked dimer that consists of a 30 aa B chain (aa 25‑54) bound to a 21 aa A chain (aa 90‑110). The 34 aa intervening peptide (aa 55‑89) that connects the B and A chains is termed the C-peptide. Human proinsulin shares 84% and 80% aa sequence identity with rat and bovine proinsulin, respectively. Most of the sequence variation between species occurs in the region of the C-peptide (1). This peptide generates a structural conformation that allows for the correct formation of the intrachain disulphide bonds (1). Insulin is a molecule that facilitates the cellular uptake of glucose. This is accomplished by regulating the appearance of membrane glucose transporters. Low insulin levels or lack of insulin are associated with type 2 and type 1 diabetes mellitus, respectively. These conditions are associated with an increased risk for microvascular complications such as retinopathy, nephropathy, and peripheral neuropathy (3). Proinsulin also circulates, but its physiologic role is less well understood. It does possess about 25% of the activity of mature insulin, but it would seem unlikely to be a natural substitute for insulin (4). In type 2 diabetes, an elevated proinsulin to insulin ratio in the circulation is a well-known abnormality (5‑9). Perhaps this abnormality represents either compromised proteolytic processing or a general inability to process increased levels of insulin precursor (5). In any event, proinsulin will stimulate amylin secretion by beta -cells, and amyloid formation in pancreatic islets that promotes decreased beta cell function (10). Studies also suggest that fasting serum proinsulin may be a better predictor of future type 2 diabetes than fasting insulin levels in obese children (11). |
追加しました。
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