Insulin aspart
Based on 1 Customer Validation
Insulin aspart (B28Asp) is a rapid-acting h-Insulin (HY-P0035) analog. Insulin aspart induces a faster hypoglycemic effect. Insulin aspart can be used in diabetes-related research.
For research use only. We do not sell to patients.
- Purity : 95%
- CAS No.: 116094-23-6
- Formula: C256H381N65O79S6
-
Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biological Activity
Description
In Vivo
Insulin aspart (5 IU/kg; subcutaneous injection; single dose) produces sustained and stable systemic hyperinsulinemia in both male and female non-diabetic mice[2].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
-
Animal Model:C57BL/6 (male, 6−8 weeks old, streptozotocin-induced diabetic)[2]
-
Dosage:5 IU/kg
-
Administration:s.c.; once daily; 5 consecutive days
-
Result:Boosted plasma insulin levels in fed diabetic mice to 127.6 μIU/mL, with elevation persisting for only 2 h.
Caused a sharp decrease in blood glucose levels in fasted diabetic mice to 109.5 mg/dL at 1 h postinjection, indicating hypoglycemia risk.
Did not induce noticeable hepatic Akt phosphorylation.
Exhibited consistent glycemic control efficacy on Days 1, 2, and 5, with blood glucose-lowering effects comparable to oral casNP/insulin/C10 at 50 IU/kg but with a shorter duration of action.
-
Animal Model:(male, female, nondiabetic)[2]
-
Dosage:5 IU/kg
-
Administration:s.c.; single dose
-
Result:In male nondiabetic mice, reached an initial insulin level of 2,053 μIU/mL at baseline, increased modestly to 2,429 μIU/mL at 15 min, then declined to 1,500−1,650 μIU/mL over 1 to 4 h before rising slightly to 1,801 μIU/mL at 8 h.
In female nondiabetic mice, peaked at 2,506 μIU/mL at 1 h, followed by a gradual decline, yet maintained elevated levels of 1,942 μIU/mL at 8 h.
Clinical Trial
| NCT Number | Sponsor | Condition | Start Date |
Phase
|
|---|---|---|---|---|
| NCT01329991 | Plexxikon| | 2011-05 | PHASE1 |
Chemical Information
-
CAS No. 116094-23-6
-
Appearance Liquid
-
Formula C256H381N65O79S6
-
Color Colorless to off-white
-
Synonyms
B28Asp; B28-Asp-insulin; INA-X 14; Insulin X 14
-
Shipping
Room temperature in continental US; may vary elsewhere.
-
Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocols
-
Research Protocol for Endocrine Diseases
Endocrine diseases often arise from disrupted hormone production, hormone signaling, or target-tissue responsiveness; for diabetes-focused endocrine disease models, insulin signaling regulates glucose uptake, hepatic glucose output, lipid metabolism, and β-cell compensation. Type 2 diabetes develops through interacting defects in insulin resistance, β-cell dysfunction, adipose inflammation, hepatic glucose overproduction, altered incretin signaling, and ectopic lipid metabolism. A major unresolved question is whether endocrine dysfunction is driven primarily by target-tissue insulin resistance, intrinsic β-cell failure, immune/inflammatory stress, or combined multi-organ failure that differs by disease stage.
-
Research Protocol for Metabolic Diseases
AMP-activated protein kinase, AMPK, is a conserved cellular energy sensor that responds to reduced cellular energy status and coordinates metabolism by increasing ATP-generating catabolic pathways while suppressing ATP-consuming anabolic processes. In metabolic disease research, the AMPK pathway is experimentally relevant because it regulates hepatic lipid synthesis, fatty acid oxidation, glucose production, skeletal-muscle glucose disposal, mTORC1-linked biosynthesis, autophagy, mitochondrial homeostasis, and whole-body energy balance. The central pathway logic is that energy stress, metformin, exercise-like stimulation, or direct AMPK activators increase AMPKα Thr172 phosphorylation and downstream substrate phosphorylation, including ACC and RAPTOR. Phosphorylation of ACC suppresses lipogenesis and supports fatty acid oxidation, whereas phosphorylation of RAPTOR suppresses mTORC1 signaling and links cellular energy status to growth and protein synthesis control. The pathway is linked
Purity & Documentation
-
Data Sheet (269 KB)
-
SDS (251 KB)
- English - EN (251 KB)
- Français - FR (251 KB)
- Deutsch - DE (251 KB)
- Norwegian - NO (251 KB)
- Español - ES (251 KB)
- Swedish - SV (251 KB)
- Italian - IT (251 KB)
- Korean - KR (251 KB)
- Portuguese - PT (251 KB)
-
Handling Instructions (2659 KB)
References
[1]. Mudaliar SR, et al. Insulin aspart (B28 asp-insulin): a fast-acting analog of human insulin: absorption kinetics and action profile compared with regular human insulin in healthy nondiabetic subjects. Diabetes Care. 1999 Sep;22(9):1501-6. [Content Brief]
[2]. Thamizhchelvan AM, et al. Small Intestine-Targeted Long-Acting Oral Insulin Formulation Based on Engineered Milk Protein Nanoparticles. ACS Appl Bio Mater. 2026;9(2):1083-1097. [Content Brief]
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
Keywords
- Insulin aspart
- 116094-23-6
- B28Asp
- B28-Asp-insulin
- INA-X 14
- Insulin X 14
- Insulin X14
- Insulin X 14
- Insulin X-14
- Insulin Receptor
- Drug Derivative
- insulin/IGF-1 receptor
- streptozotocin-induced diabetic mice
- nondiabetic mice
- diabetes mellitus
- postprandial hyperglycemia
- hypoglycemic agent
- glucose-lowering agent
- hexamerization inhibitor
- insulinotropic agent
- diabetic mice
- Inhibitor
- inhibitor
- inhibit