L(+)-Arabinose丨CAS 87-72-9

L(+)-Arabinose丨CAS 87-72-9
Product Introduction:
Catalog No.: SS132715
CAS No.: 87-72-9
Assay: 98.0% min
Product Name: L(+)-Arabinose
Molecular Formula: C5H10O5
Molecular Weight: 150.13
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Technical Parameters
Description

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Specifications

 

Appearance White or almost white powder
Identification Positive
Specific optical rotation +101° – +105°
Melting point 154 – 160℃
Loss on Drying 1% Max
Total Ash 0.2% Max
Heavy metals 20 ppm Max
Assay 98.0% Min

 

 

 

Applications

 

L(+)-Arabinose is a naturally occurring pentose sugar widely used in biochemical research, food, and pharmaceutical industries. In molecular biology, it is commonly employed as an inducer in gene expression systems, such as the arabinose operon in bacteria, to regulate protein production in recombinant DNA technology. It is also utilized in carbohydrate metabolism studies and enzymatic assays to investigate sugar utilization pathways. In the food industry, L(+)-Arabinose serves as a low-calorie sweetener and as a functional ingredient that can modulate glycemic response, making it valuable in dietary and nutraceutical products. Additionally, it is used in the synthesis of glycosides, oligosaccharides, and other carbohydrate-derived fine chemicals for research and industrial applications.

 

Benefits

 

The primary benefits of L(+)-Arabinose stem from its biological activity, mild sweetness, and metabolic properties. It can selectively induce gene expression in microbial systems, enabling precise control over recombinant protein production. In dietary applications, it helps reduce postprandial blood glucose levels by inhibiting intestinal sucrase activity, providing health benefits in sugar management. Its high water solubility, chemical stability, and biocompatibility make it easy to handle and incorporate into various formulations. Moreover, as a renewable carbohydrate, L(+)-Arabinose contributes to sustainable production processes for fine chemicals and nutraceuticals.

 

Conclusion

 

L(+)-Arabinose is a versatile sugar with broad applications in biotechnology, food, and pharmaceutical industries. Its ability to induce gene expression, modulate metabolic pathways, and serve as a functional low-calorie sweetener makes it a valuable tool for research, dietary, and industrial applications. By combining biological activity, solubility, and stability, L(+)-Arabinose supports innovation in molecular biology, nutraceutical development, and carbohydrate-derived chemical synthesis.

 

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