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Synonyms | L-ornithine | ornithine | 70-26-8 | (S)-2,5-Diaminopentanoic acid | (S)-Ornithine | (S)-2,5-diaminovaleric acid | Ornithine [INN] | (2S)-2,5-diaminopentanoic acid | L-Norvaline, 5-amino- | (S)-alpha,delta-Diaminovaleric acid | Ornithinum [Latin] | Ornitina [Spanish] | Ornithine |
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Specifications & Purity | Moligand™, 10mM in Water |
Biochemical and Physiological Mechanisms | L-ornithine ((S)-2,5-Diaminopentanoic acid) has an antifatigue effect by increasing the efficiency of energy consumption and promoting the excretion of ammonia. It is one of the key reactants in the urea cycle. |
Storage Temp | Store at -80°C |
Shipped In | Ice chest + Ice pads |
Grade | Moligand™ |
Product Description | Information L-ornithine ((S)-2,5-Diaminopentanoic acid) has an antifatigue effect by increasing the efficiency of energy consumption and promoting the excretion of ammonia. It is one of the key reactants in the urea cycle. |
ALogP | -3.697 |
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HBD Count | 2 |
Rotatable Bond | 4 |
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IUPAC Name | (2S)-2,5-diaminopentanoic acid |
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INCHI | InChI=1S/C5H12N2O2/c6-3-1-2-4(7)5(8)9/h4H,1-3,6-7H2,(H,8,9)/t4-/m0/s1 |
InChi Key | AHLPHDHHMVZTML-BYPYZUCNSA-N |
Canonical SMILES | C(CC(C(=O)O)N)CN |
Isomeric SMILES | C(C[C@@H](C(=O)O)N)CN |
PubChem CID | 6262 |
Molecular Weight | 132.16 |
Enter Lot Number to search for COA:
DMSO(mg / mL) Max Solubility | <1 |
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Water(mg / mL) Max Solubility | 26 |
Water(mM) Max Solubility | 196.731234866828 |
1. Anqi Peng, Keke Yu, Shuwei Yu, Yingying Li, Hao Zuo, Ping Li, Juan Li, Jianan Huang, Zhonghua Liu, Jian Zhao. (2023) Aluminum and Fluoride Stresses Altered Organic Acid and Secondary Metabolism in Tea (Camellia sinensis) Plants: Influences on Plant Tolerance, Tea Quality and Safety. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 24 (5): (4640). [PMID:36902071] |
2. Jia Xu, Xinzhou Yao, Yingying Lin, Shuyan Chi, Shuang Zhang, Junming Cao, Beiping Tan, Shiwei Xie. (2022) Schizochytrium limacinum altered antioxidant capacity and transcriptome profiles in Pacific white shrimp fed a low-fishmeal diet. Aquaculture Reports, 27 (101399). [PMID:] |
3. Wang Ying, Li ZhiRong, Chen RongXiang. (2022) Simultaneous Determination of Metabolites Related to Arginine Metabolism in Rat plasma by Hydrophilic Interaction Chromatography–Tandem Mass Spectrometry. JOURNAL OF CHROMATOGRAPHIC SCIENCE, 61 (3): (203-210). [PMID:35704851] |
4. Xiaoxiao Chen, Pu Li, Gaojun Wu, Zhe Wang, Chaobiao Huang. (2022) Turn-on signal fluorescence sensor based on DNA derived bio-dots/polydopamine nanoparticles for the detection of glutathione. RSC Advances, 12 (3): (1807-1812). [PMID:35425189] |
1. Anqi Peng, Keke Yu, Shuwei Yu, Yingying Li, Hao Zuo, Ping Li, Juan Li, Jianan Huang, Zhonghua Liu, Jian Zhao. (2023) Aluminum and Fluoride Stresses Altered Organic Acid and Secondary Metabolism in Tea (Camellia sinensis) Plants: Influences on Plant Tolerance, Tea Quality and Safety. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 24 (5): (4640). [PMID:36902071] |
2. Jia Xu, Xinzhou Yao, Yingying Lin, Shuyan Chi, Shuang Zhang, Junming Cao, Beiping Tan, Shiwei Xie. (2022) Schizochytrium limacinum altered antioxidant capacity and transcriptome profiles in Pacific white shrimp fed a low-fishmeal diet. Aquaculture Reports, 27 (101399). [PMID:] |
3. Wang Ying, Li ZhiRong, Chen RongXiang. (2022) Simultaneous Determination of Metabolites Related to Arginine Metabolism in Rat plasma by Hydrophilic Interaction Chromatography–Tandem Mass Spectrometry. JOURNAL OF CHROMATOGRAPHIC SCIENCE, 61 (3): (203-210). [PMID:35704851] |
4. Xiaoxiao Chen, Pu Li, Gaojun Wu, Zhe Wang, Chaobiao Huang. (2022) Turn-on signal fluorescence sensor based on DNA derived bio-dots/polydopamine nanoparticles for the detection of glutathione. RSC Advances, 12 (3): (1807-1812). [PMID:35425189] |