Uridine - UltraBio™, ≥99% , CAS No.58-96-8

CAS: 58-96-8 Cat. No.: U755611 Molecular Weight: 244.20 Beilstein Registry Number: 754902 EC Number: 200-407-5
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GRADE & PURITY UltraBio™ ? UltraBio™ — Aladdin's line for molecular-biology applications. Use for nuclease-free, high-consistency reagents across molecular workflows. ≥99%
Storage
Room temperature
Shipped In
Normal
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5g
U755611-5g
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$29.90
25g
U755611-25g
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$79.90
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Why this grade

UltraBio™, ≥99% UltraBio™ for sensitive chromatographic and analytical workflows requiring minimal baseline interference.

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Storage & shipping

Room temperature Ships Normal Check lot-specific COA for exact specifications.

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Quality documents

SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.

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Literature proof

Cited in 80 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.

Overview

Uridine is a pyrimidine nucleoside which is crucial for the synthesis of RNA and membranes. It helps in normal cell function and growth by forming pyrimidine nucleotide -lipid conjugates.
Application:
Uridine has been used to study the functional complementation of nucleoside hydrolase from a protozoan parasite and mammalian uridine phosphorylase on URH1 (uridine hydrolase) of Saccharomyces cerevisiae.
It has been used to check the effect of chronic uridine application on liver metabolism in mice.

Specifications

Specifications & Purity
UltraBio™, ≥99%
Storage
Room temperature
Shipped In
Normal
Grade
UltraBio™
Purity
≥99%
Names and Identifiers
Canonical SmilesC1=CN(C(=O)NC1=O)C2C(C(C(O2)CO)O)O
IUPAC Name1-[(2R,3R,4S,5R)-3,4-dihydroxy-5-(hydroxymethyl)oxolan-2-yl]pyrimidine-2,4-dione
InChIKeyDRTQHJPVMGBUCF-XVFCMESISA-N
INCHI1S/C9H12N2O6/c12-3-4-6(14)7(15)8(17-4)11-2-1-5(13)10-9(11)16/h1-2,4,6-8,12,14-15H,3H2,(H,10,13,16)/t4-,6-,7-,8-/m1/s1
Isomeric SMILES C1=CN(C(=O)NC1=O)[C@H]2[C@@H]([C@@H]([C@H](O2)CO)O)O
WGK Germany 3
Molecular Weight 244.20
Beilstein 754902
Reaxy-Rn 4699706
Reaxys-RN_link_address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=4699706&ln=

Documentation

📋 Safety Data Sheet (SDS)

Comprehensive hazard, handling, storage, and regulatory compliance document.

Download SDS →

✅ Certificate of Analysis (COA)

Lot-specific quality data. Enter your lot number to retrieve the exact COA.

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📊 Datasheet

Quick-reference summary of product specifications and applications.

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🔬 Specification Sheet

Full quality attributes and acceptance criteria for this grade.

View spec sheet →

Advanced Data

Taxonomic Classification

Taxonomy Tree

KingdomOrganic compounds
SuperclassNucleosides, nucleotides, and analogues
ClassPyrimidine nucleosides
SubclassNot available
Intermediate Tree Nodes Not available
Direct ParentPyrimidine nucleosides
Alternative Parents Glycosylamines  Pentoses  Pyrimidones  Hydropyrimidines  Tetrahydrofurans  Heteroaromatic compounds  Vinylogous amides  Ureas  Lactams  Secondary alcohols  Oxacyclic compounds  Azacyclic compounds  Primary alcohols  Organopnictogen compounds  Organonitrogen compounds  Organic oxides  Hydrocarbon derivatives  
Molecular FrameworkAromatic heteromonocyclic compounds
Substituents Pyrimidine nucleoside - Glycosyl compound - N-glycosyl compound - Pentose monosaccharide - Pyrimidone - Hydropyrimidine - Monosaccharide - Pyrimidine - Vinylogous amide - Tetrahydrofuran - Heteroaromatic compound - Urea - Secondary alcohol - Lactam - Organoheterocyclic compound - Oxacycle - Azacycle - Hydrocarbon derivative - Organopnictogen compound - Organooxygen compound - Organonitrogen compound - Primary alcohol - Alcohol - Organic oxygen compound - Organic oxide - Organic nitrogen compound - Aromatic heteromonocyclic compound
DescriptionThis compound belongs to the class of organic compounds known as pyrimidine nucleosides. These are compounds comprising a pyrimidine base attached to a ribosyl or deoxyribosyl moiety.
External Descriptors Ribonucleosides
3D Structure
Interactive Chemical Structure Model





Certificates(CoA,COO,BSE/TSE and Analysis Chart)
C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:
Chemical and Physical Properties
SolubilityH 2 O: 0.1 M, clear, colorless
Specific Rotation[α]9 ° (C=2, H2O)
Melt Point(°C)163-167°C
Molecular Weight244.200 g/mol
XLogP3-2.000
Hydrogen Bond Donor Count4
Hydrogen Bond Acceptor Count6
Rotatable Bond Count2
Exact Mass244.07 Da
Monoisotopic Mass244.07 Da
Topological Polar Surface Area119.000 Ų
Heavy Atom Count17
Formal Charge0
Complexity370.000
Isotope Atom Count0
Defined Atom Stereocenter Count4
Undefined Atom Stereocenter Count0
Defined Bond Stereocenter Count0
Undefined Bond Stereocenter Count0
The total count of all stereochemical bonds0
Covalently-Bonded Unit Count1
Documents & Articles
Citations of This Product
References
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45. Wanying Zhu, Xin Shen, Chunhong Zhu, Bingzhi Li, Junli Hong, Xuemin Zhou.  (2017)  Turn-on fluorescent assay based on purification system via magnetic separation for highly sensitive probing of adenosine.  SENSORS AND ACTUATORS B-CHEMICAL,      [PMID:] [10.1016/j.snb.2017.12.147]
46. Haiyan Liu, Yunfeng Bai, Jun Qin, Haiyan Wang, Yuzhen Wang, Zezhong Chen, Feng Feng.  (2017)  Exonuclease I assisted fluorometric aptasensor for adenosine detection using 2-AP modified DNA.  SENSORS AND ACTUATORS B-CHEMICAL,      [PMID:] [10.1016/j.snb.2017.10.117]
47. Pingxiu Tang, Zilin Chen.  (2017)  Capillary electrochromatography using knitted aromatic polymer as the stationary phase for the separation of small biomolecules and drugs.  TALANTA,      [PMID:29136876] [10.1016/j.talanta.2017.10.004]
48. Xin Shen, Lei Xu, Wanying Zhu, Bingzhi Li, Junli Hong, Xuemin Zhou.  (2017)  A turn-on fluorescence aptasensor based on carbon dots for sensitive detection of adenosine.  NEW JOURNAL OF CHEMISTRY,  41  (17): (9230-9235).  [PMID:] [10.1039/C7NJ02384G]
49. Chusheng Liu, Haibin Li, Qiqin Wang, Jacques Crommen, Haibo Zhou, Zhengjin Jiang.  (2017)  Preparation and evaluation of 400 μm I.D. polymer-based hydrophilic interaction chromatography monolithic columns with high column efficiency.  JOURNAL OF CHROMATOGRAPHY A,      [PMID:28629939] [10.1016/j.chroma.2017.06.034]
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51. Cai Tianpei, Zhang Haijuan, Rahman A. F. M. Mustafizur, Shi Yan-Ping, Qiu Hongdeng.  (2017)  Silica grafted with silanized carbon dots as a nano-on-micro packing material with enhanced hydrophilic selectivity.  MICROCHIMICA ACTA,  184  (8): (2629-2636).  [PMID:] [10.1007/s00604-017-2277-1]
52. Yang Huang, Tingting Zhang, Yumei Zhao, Haibo Zhou, Guangyun Tang, Marianne Fillet, Jacques Crommen, Zhengjin Jiang.  (2017)  Simultaneous analysis of nucleobases, nucleosides and ginsenosides in ginseng extracts using supercritical fluid chromatography coupled with single quadrupole mass spectrometry.  JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS,      [PMID:28410850] [10.1016/j.jpba.2017.03.059]
53. Shuxia Wang, Huihui Li, Xiujuan Guan, Ting Cheng, Haixia Zhang.  (2017)  Silica – Boronate affinity material for quick enrichment of intracellular nucleosides.  TALANTA,      [PMID:28213215] [10.1016/j.talanta.2017.01.048]
54. Yan Du, Yin-jie Li, Xun-xiu Hu, Xu Deng, Zeng-ting Qian, Zheng Li, Meng-zhe Guo, Dao-quan Tang.  (2016)  Development and evaluation of a hydrophilic interaction liquid chromatography-MS/MS method to quantify 19 nucleobases and nucleosides in rat plasma.  BIOMEDICAL CHROMATOGRAPHY,  31  (4): (e3860).  [PMID:27696453] [10.1002/bmc.3860]
55. Haibin Li, Chusheng Liu, Qiqin Wang, Haibo Zhou, Zhengjin Jiang.  (2016)  The effect of charged groups on hydrophilic monolithic stationary phases on their chromatographic properties.  JOURNAL OF CHROMATOGRAPHY A,      [PMID:27692647] [10.1016/j.chroma.2016.09.059]
56. Jialiang Guo, Yuan Xiao, Yuanjing Lin, Jacques Crommen, Zhengjin Jiang.  (2016)  Effect of the crosslinker type on the enantioseparation performance of β-cyclodextrin functionalized monoliths prepared by the one-pot approach.  JOURNAL OF CHROMATOGRAPHY A,      [PMID:27268520] [10.1016/j.chroma.2016.05.078]
57. Huihui Li, Ting Cheng, Shuxia Wang, Xinyue Zhu, Haixia Zhang.  (2016)  High-efficiency extraction of nucleosides based on the combination of self-assembly ionic liquid layer and boronic acid-functionalized attapulgite.  TALANTA,      [PMID:27130092] [10.1016/j.talanta.2016.02.004]
58. Ting Cheng, Shuqiang Zhu, Bin Zhu, Xiaoyan Liu, Haixia Zhang.  (2016)  Highly selective capture of nucleosides with boronic acid functionalized polymer brushes prepared by atom transfer radical polymerization.  JOURNAL OF SEPARATION SCIENCE,  39  (7): (1347-1356).  [PMID:26864342] [10.1002/jssc.201500968]
59. Ying Zhu, Xiao-chun Hu, Shuo Shi, Ru-ru Gao, Hai-liang Huang, Yan-yan Zhu, Xiao-yan Lv, Tian-ming Yao.  (2015)  Ultrasensitive and universal fluorescent aptasensor for the detection of biomolecules (ATP, adenosine and thrombin) based on DNA/Ag nanoclusters fluorescence light-up system.  BIOSENSORS & BIOELECTRONICS,      [PMID:26706942] [10.1016/j.bios.2015.12.015]
60. Xiao-Jing Xing, Wan-Lu Xiao, Xue-Guo Liu, Ying Zhou, Dai-Wen Pang, Hong-Wu Tang.  (2015)  A fluorescent aptasensor using double-stranded DNA/graphene oxide as the indicator probe.  BIOSENSORS & BIOELECTRONICS,      [PMID:26655184] [10.1016/j.bios.2015.11.076]
61. Chaozhan Wang, Huanhuan Xu, Yinmao Wei.  (2015)  The preparation of high-capacity boronate affinity adsorbents by surface initiated reversible addition fragmentation chain transfer polymerization for the enrichment of ribonucleosides in serum.  ANALYTICA CHIMICA ACTA,      [PMID:26703260] [10.1016/j.aca.2015.11.013]
62. Qing Wang, Yao Long, Lin Yao, Li Xu, Zhi-Guo Shi, Lanying Xu.  (2015)  Preparation, characterization and application of a reversed phase liquid chromatography/hydrophilic interaction chromatography mixed-mode C18-DTT stationary phase.  TALANTA,      [PMID:26695288] [10.1016/j.talanta.2015.09.009]
63. Cheng Ting, Li Huihui, Ma Ying, Liu Xiaoyan, Zhang Haixia.  (2015)  Synthesis of boronic-acid-functionalized magnetic attapulgite for selective enrichment of nucleosides.  ANALYTICAL AND BIOANALYTICAL CHEMISTRY,  407  (12): (3525-3529).  [PMID:25736243] [10.1007/s00216-015-8550-4]
64. Wang Xue-Jie, You Jin-Zong.  (2015)  Study on the molecular structure and thermal stability of pyrimidine nucleoside analogs.  JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY,  120  (1): (1009-1025).  [PMID:] [10.1007/s10973-014-4362-6]
65. Chusheng Liu, Weijia Chen, Guangxin Yuan, Yao Xiao, Jacques Crommen, Shihai Xu, Zhengjin Jiang.  (2014)  Influence of the crosslinker type on the chromatographic properties of hydrophilic sulfoalkylbetaine-type monolithic columns.  JOURNAL OF CHROMATOGRAPHY A,      [PMID:25464999] [10.1016/j.chroma.2014.11.007]
66. Wei Yin, Huihui Chai, Renhua Liu, Changhu Chu, John A. Palasota, Xiaohui Cai.  (2014)  Click N-benzyl iminodiacetic acid: Novel silica-based tridentate zwitterionic stationary phase for hydrophilic interaction liquid chromatography.  TALANTA,      [PMID:25476290] [10.1016/j.talanta.2014.08.077]
67. Wang Huiqi, Feng Wei, Jia Qiong.  (2014)  A graphene oxide functionalized with 3-aminophenylboronic acid for the selective enrichment of nucleosides, and their separation by capillary electrophoresis.  MICROCHIMICA ACTA,  182  (1): (185-192).  [PMID:] [10.1007/s00604-014-1316-4]
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77. Zixi Li, Meng Dong, Libo Qi, Shan Shang, Yan Guo, Lei Qin, Baoshang Fu.  (2025)  Mass spectrometry-based lipidomics combined with flavoromics reveal the mechanism of characteristic flavor formation in Chelidonichthys kumu bone soup treated with different edible oils by frying.  Food Bioscience,      [PMID:] [10.1016/j.fbio.2025.106724]
78. Minyi Yuan, Zheng Zhao, Ji Wu, Sumin Bian, Yuling Liao, Ying Zhou, Huikai Shao, Zhengjin Jiang, Qiqin Wang.  (2025)  Zwitterionic Imidazolium Sulfonate Functionalized Polymeric Monolith for Mixed-Mode HILIC/RPLC Applications.  JOURNAL OF CHROMATOGRAPHY A,      [PMID:41106254] [10.1016/j.chroma.2025.466462]
79. Chuan Hu, Dingqi Xie, Jianyi Li, Yang Jin, Jiechao Xia, Gu Jin, Lin Ye, Zhijun Hu.  (2025)  Nanozyme-Integrated 3D-Printed Gradient Scaffold Rescues Redox Homeostasis for Enhanced Osteochondral Repair.  Small Structures,      [PMID:] [10.1002/sstr.202500413]
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