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UMP-H Powder

UMP-H Powder

Appearance: White Powder
Specification: 99%
CAS: 58-97-9
Molecular Formula: C9H13N2O9P
Molecular Weight: 324.18
Shelf Life: 2 Years Proper Storage
Stock: Adequate Stock
Certificate: ISO,GMP, HACCP SGS
Service: OEM Service(Private Package)

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Product Introduction

Xi'an Sonwu Biotech Co., Ltd. is one of the most professional manufacturers and suppliers of ump-h powder in China. We warmly welcome yuo to wholesale bulk ump-h powder for sale here from our factory. Quality products and reasonable price are available.

 

What Is The UMP

UMP-H powder (uridine monophosphate hydrate) is a hydrate of uridine acid with the chemical formula C9H12N2O7·H2O. It is a type of pyrimidine nucleotide and exists as a component of RNA (ribonucleic acid). The structure of UMP H includes a uracil base, a ribose sugar molecule, and a phosphate group. At the chemical level, the critical feature of UMP H is the structure of its nucleotide, in which the uracil ring is linked to the ribose sugar through a β-N-glycosidic bond to form uridine. The 3' and 5' carbon atoms of uridine are respectively connected to phosphate groups, making it uridine acid. UMP H in hydrate form has an additional water molecule, which usually affects its crystallization properties and solubility. UMP-H plays a vital role in organisms and is the basic unit of RNA synthesis. In cells, it participates in the assembly of ribosomes and the translation process of proteins. Its phosphate group can form longer RNA chains by connecting with other nucleotides, essential for transmitting genetic information. In laboratory and pharmaceutical research, UMP H is often used to synthesize nucleic acid molecules and as a reagent for biochemical research. Its stability and solubility make it very useful in these applications.

As one of the most popular products, UMP H powder has received many good comments and feedback from customs. What attracts customers mostly is the high quality. Except that Xi'an Sonwu has exceedingly competitive prices. If you want to know more about it, just contact Xi'an Sonwu Biotech Co., Ltd.

UMP-H Chemical Formula

 

Certificate Of Analysis

Items

Standards

Results

Appearance

White Powder

Conform

Odor

Characteristic

Conform

Assay

≥99.0%

99.64%

Particle Size

100% pass 80mesh

Conform

Moisture

<5.0%

Conform

Ash Content

<4.0%

Conform

Solvent Residue

Eur.Pharm

Conform

Total Heavy Metals

<10 ppm

Conform

Arsenic

<1.0 ppm

Conform

Lead

<1.0 ppm

Conform

Mercury

<0.5 ppm

Conform

DDT

<0.2ppm

Conform

E. Coli

Negative

Negative

GMO Status

Complies

GMO Free

Irradiation

Complies

Irradiation Free

 

Where To Buy UMP-H

Xi'an Sonwu Biotech Co. Ltd. has rich experience in the global trade and the health industry. Insisting on faith-based and quality first is Xi'an Sonwu's principle. Xi'an Sonwu strictly controls product quality, which means selection starts from raw materials. Besides, Xi'an Sonwu handles every detail and reduces costs to the maximum extent so that the customers can get cost-effective products. Based on these, customers have given good feedback on the products. So look for Xi'an Sonwu Biotech Co. Ltd. when buying it.

 

Xi'an Sonwu ultimately ensures the product's quality so the samples can be supplied. Here is the quantity.

Form

Sample Amount

The Minimum Of Quantity

Powder

10g

10g

 

Customers' Good Comment

Good Comment

 

What Is UMP Used For

As an important biological molecule, UMP-H (uridine monophosphate hydrate) has a wide range of biological and biochemical functions. UMP H is a form of uridine acid, which is one of the basic building blocks of RNA. UMP H is linked to other nucleotides during RNA synthesis through phosphodiester bonds to form RNA chains. It provides the basis for the transmission of genetic information during transcription. RNA synthesis is essential for cell gene expression, protein synthesis, and maintenance of cell function. In cell metabolism, UMP H participates in many important biochemical reactions. For example, it is a critical intermediate in the pyrimidine nucleotide synthesis pathway and participates in synthesizing other essential pyrimidine nucleotides, such as CMP (cytidine monophosphate) and UMP (uridine monophosphate). These nucleotides are necessary for the normal function and proliferation of cells. UMP H is also involved in specific signal transduction pathways. By acting as a metabolite in cells, it is able to affect cell signaling and regulate responses. For example, UMP H may be involved in regulating the cell cycle and programmed cell death (apoptosis) in cells, thereby affecting cell growth and differentiation. In drug development and biochemical research, UMP H is widely used as part of nucleotides. It can be used as a precursor for the synthesis of various bioactive molecules and drugs. In the laboratory, the stability and controllability of UMP H make it an essential tool for studying RNA and nucleotide metabolic pathways. UMP H is of great significance in molecular biology research. Researchers use UMP H to explore the structure and function of RNA and reveal its role in gene expression and cell function. In addition, it is also used as a diagnostic reagent to help detect and analyze related biomarkers and disease states. In general, the role of UMP H is evident not only in cell biology and molecular biology but also in drug development and clinical research. Its versatility makes it an essential tool for research and application.

UMP H medicine

 

UMP-H powder is an essential nucleotide in organisms and plays a vital role in many critical biological processes and metabolic pathways of cells. UMP H is a form of uridine monophosphate (UMP) and is one of the basic building blocks of RNA. During RNA synthesis, UMP H forms phosphodiester bonds of RNA chains by combining with other nucleotides (such as ATP, GTP, and CTP). This process is catalyzed by RNA polymerase, allowing genetic information to be transcribed from DNA to RNA, thereby generating functional RNA molecules (such as messenger RNA, transfer RNA, and ribosomal RNA). The participation of UMP H is essential for the normal synthesis of RNA, which directly affects protein synthesis and the normal function of cells. UMP H plays a crucial role in cellular nucleotide metabolism. As an intermediate in the pyrimidine nucleotide synthesis pathway, it participates in the conversion process from uridine to cytidylic acid. These pyrimidine nucleotides are not only components of RNA but also play an essential role in DNA synthesis and repair, cell proliferation, and gene expression regulation. The metabolic pathway of UMP H is closely related to cell growth, differentiation, and stability. UMP-H may also participate in specific signal transduction pathways in cells. It regulates processes such as cell cycle, proliferation, and apoptosis by affecting intracellular nucleotide levels and signal molecule concentrations. Changes in the concentration of UMP H can affect the physiological state and response of cells by regulating the metabolic balance in cells. In drug development, UMP H is used as a tool to study nucleotide synthesis and RNA function. Its stability and reactivity make it an essential reagent for studying RNA structure and function. In addition, UMP H can also be used as a precursor for the synthesis of other bioactive molecules, providing a basis for drug design. In laboratory research, UMP H is often used to analyze and detect the process of RNA synthesis and nucleotide metabolism. By using UMP H, researchers can explore its mechanism of action in cells and reveal its effects on cell function and physiological state, thereby promoting the understanding of the mechanisms of related diseases and the development of treatment methods. In short, UMP-H plays a vital role in cell biology and biochemical research, and its mechanisms involve multiple aspects such as RNA synthesis, nucleotide metabolism, cell signal transduction, and drug development. These mechanisms work together to make UMP H a key molecule in the regulation of intracellular nucleotide metabolism and function.

cell UMP H

 

UMP-H has a wide range of applications in biological research and medicine. First, UMP H plays a vital role in cell biology research. As a critical component of RNA, it is essential in the process of RNA synthesis. Researchers use UMP H to study the mechanism of RNA synthesis and its regulation, which is crucial for understanding gene expression and cell function. For example, by observing the role of UMP H in RNA synthesis, scientists can gain insight into how cells generate and regulate different types of RNA, such as messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA), thereby revealing the role of RNA in cell proliferation, differentiation, and apoptosis. Secondly, UMP-H is of great significance in the study of nucleotide metabolism. As an intermediate in the pyrimidine nucleotide synthesis pathway, it has a direct impact on the cell's nucleotide balance, DNA synthesis and repair, cell proliferation, and other processes. Studying the metabolic path of UMP H can help reveal how cells maintain nucleotide homeostasis and thus fight diseases such as cell aging and cytopathic diseases. For example, by regulating the metabolism of UMP H, cell cycle and proliferation may be affected, therefore providing new ideas for the treatment of diseased cells. UMP H also has significant application value in drug development. Due to its vital role in RNA synthesis, UMP H can serve as the basis for the development of nucleotide analogs and antiviral drugs. For example, some medications interfere with the RNA synthesis of pathogens by inhibiting the production of UMP-H or using UMP H as a competitive inhibitor, thereby achieving the purpose of treating viral infections. In addition, the stability and reactivity of UMP H make it a valuable tool for the development and optimization of drugs. Finally, in biochemical experiments, UMP H is widely used as an experimental reagent. It can be used as a precursor material for RNA synthesis to help study the conditions and effects of RNA synthesis. In addition, UMP H is also used in the study of nucleotide metabolic pathways and the detection of intracellular nucleotide levels, which promotes a deeper understanding of cell function and metabolism.

Pharmaceuticals UMP H

 

Factory Environment

Xi'an Sonwu production factory is well-equipped, clean, and tidy, with sufficient stock. Under the leadership of the company, researchers insist on developing new products. The following is the testing environment of the laboratory, advanced testing equipment, and professional testers, with a strict attitude to providing valuable data for the products and providing the customers with a quality experience.

 Factory Environment

 

Certificates

certifiacte

 

Packaging

packaging

 

Logistics Record

Logistics Record

In addition to guaranteeing product quality, the other most vital thing is clients can receive the goods smoothly. So, Xi'an Sonwu supplies all kinds of couriers according to different needs.

logistics

 

FAQ

1. How do you contact Xi'an Sonwu Biotech Co., Ltd.?

You can contact me by email, telephone number, or social media.

2. How do you ensure the quality of the product?

Xi'an Sonwu tests each batch so Xi'an Sonwu can supply COA for customers. Besides, the products pass the tests for HPLC, UV, GC, TLC, etc. Xi'an Sonwu also cooperates with third parties, like SGS.

3. How to pack and store?

Pack: Vacuum sealed foil packaging & Sealed export-grade drum or pack according to customers' needs.

Storage: Keep it in a dry and cool place, and avoid intense light and heat.

 

If you need a UMP-H powder supplier, feel free to contact Xi'an Sonwu.

E-mail: sales@sonwu.com

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