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Home > Biochemical Engineering > Saccharides (Find 2378 items)

Arbutin

(497-76-7)
1. Tyrosinase inhibitor, depigmentor, antitussive
2. Antibacterial;Tyrosinase inhibitor
3. Arbutin is a glycosylated hydroquinone extracted from bearberry plant. Arbutin is a known inhibitor of tyrosinase, which in turn prevents the formation of melanin. Arbutin is often used as a skin-lightening agent in cosmetic products.
4. Veterinary drug

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Agar

(9002-18-0)
Substitute for gelatin, isinglass, etc. in making emulsions including photographic, gels in cosmetics, and as thickening agent in foods especially. confectionaries and dairy products; in meat canning; in production of medicinal encapsulations and ointments; as dental impression mold base; as corrosion inhibitor; sizing for silks and paper; in the dyeing and printing of fabrics and textiles; in adhesives. In nutrient media for bacterial cultures. Agar is a gum obtained from red seaweeds of the g

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Guanosine monophosphate

(85-32-5)
Biochemical research, flavor potentiator (disodium salt).

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Uridine

(58-96-8)
A nucleoside and one of main component in RNA.

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Maltodextrin

(9050-36-6)
Maltodextrin is an oligosaccharide that is derived from starch. Maltodextrin is commonly used as a food additive and in the production of candies and sodas.

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Erythritol

(149-32-6)
Non-nutritive sweetener in beverages.

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Fructose

(57-48-7)
D-Fructose occurs in a large number of fruits, honey, and as the sole sugar in bull and human semen

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(+)-Lactose

(63-42-3)
A disaccharide sugar present in milk.

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DL-Mannitol

(87-78-5)
Dehydration drugs, diuretics. Treat cerebral edema and glaucoma, acute oliguria, prevent acute renal failure, and treat edema of nephrotic syndrome. Note: For patients with active intracranial hemorrhage, injection is prohibited (except for craniotomy). Used as analytical reagents, also used in the synthesis of resins and pharmaceuticals.

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Saccharides, also called sodium saccharin, is the oldest sweetener. Saccharides was discovered by American scientists in 1878 and was quickly accepted by the food industry and consumers. The sweetness of saccharin is 300 to 500 times that of sucrose. It is not metabolized and absorbed by the human body and is stable in the production of various foods.

Frequently Asked Questions

What are saccharides and how are they classified?

Saccharides, also known as carbohydrates, are organic compounds composed of carbon, hydrogen, and oxygen. They are classified based on the number of sugar units: monosaccharides (e.g., glucose, fructose), disaccharides (e.g., sucrose, lactose), oligosaccharides (3–10 units), and polysaccharides (e.g., starch, cellulose). Understanding saccharide classification is essential for applications in food, pharmaceuticals, and biotechnology.

What are the common industrial uses of saccharides?

Saccharides are widely used across multiple industries:1. In food and beverage production as sweeteners, thickeners, and stabilizers.2. In pharmaceuticals as excipients, drug delivery agents, or active ingredients.3. In cosmetics for moisturizing and skin-conditioning properties.4. In biotechnology as fermentation substrates for producing biofuels and enzymes.Their versatility makes them critical raw materials in many manufacturing processes.

How do I choose a reliable saccharide supplier for industrial use?

Selecting a reliable saccharide supplier involves evaluating several key factors:1. Compliance with international quality standards such as ISO, GMP, or FCC.2. Purity and consistency of the saccharide products offered.3. Certifications for food-grade, pharmaceutical-grade, or technical-grade materials as needed.4. Supply chain reliability, including packaging, logistics, and scalability.5. Technical support and documentation (e.g., COA, MSDS).Partnering with a certified and experienced supplier ensures product safety and process efficiency.

What is the difference between reducing and non-reducing saccharides?

Reducing saccharides have a free aldehyde or ketone group that can act as a reducing agent in chemical reactions—common examples include glucose and maltose. Non-reducing saccharides, like sucrose, lack a free reactive group because their anomeric carbons are involved in glycosidic bonds. This distinction affects their reactivity in analytical tests (e.g., Benedict’s test) and their behavior in food processing or pharmaceutical formulations.

Are natural and synthetic saccharides interchangeable in formulations?

Natural and synthetic saccharides may not always be interchangeable due to differences in purity, stereochemistry, regulatory status, and functional performance. For example, naturally derived lactose is commonly used in tablets as a filler, while synthetic alternatives might not meet pharmacopeial standards. Always verify compatibility with your application requirements, regulatory guidelines (e.g., USP, EP), and end-user safety before substitution.

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