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GRACE
Liquisolid applications, DDS SYLOID® XDP silica carrier is an optimized mesoporous carrier engineered for transforming liquids…
0.00
Merck EMPROVE®
Merck KGaA
Parteck® SI 400 excipient is part of the Parteck® range of functional excipients developed specifically…
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Kerry_Logo
Kerry
Milled Product Monohydrate Lactose is a disaccharide obtained from the whey fraction of milk, and…
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Kerry_Logo
Kerry
Lactose Monohydrate 310 is recommended as an excipient, filler, diluent, and bulking agent in a…
0.00
Gattefossé_Logo
Gattefosse
A nonionic water-in-oil emulsifier for topical emulsions. A PEG-free liquid emulsifier ideal for cold formulation…
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Gattefossé_Logo
Gattefosse
An oily vehicle used as solubilizer for lipophilic APIs in oral and topical formulations. Main…
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Gattefossé_Logo
Gattefosse
Hard fat pessary base with emulsifier to improve dispersibility and wettability of hydrophobic APIs. Main…
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Gattefossé_Logo
Gattefosse
Hard fat pessary base delivering enhanced spreadability within the vaginal cavity and good mechanical resistance…
0.00
Gattefossé_Logo
Gattefosse
A lipidic vehicle used as consistency agent in topical formulations. Enhances stability by preventing phase…
0.00
Gattefossé_Logo
Gattefosse
A winterized oil composed of long-chain mono-, di-, and triglycerides for lipid-based formulations to solubilize…
0.00
Gattefossé_Logo
Gattefosse
A nonionic water-insoluble surfactant used as cosurfactant in oral lipid-based formulation SEDDS and SMEDDS. Cosurfactant…
0.00
Gattefossé_Logo
Gattefosse
A non-ionic pure surfactant for lipid-based formulation to solubilize and increase oral bioavailability of poorly…
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Gattefossé_Logo
Gattefosse
A nonionic water-dispersible surfactant for lipid-based formulations to solubilize and increase oral bioavailability of poorly…
0.00
Logo-Ashland
Ashland
The substitution of hydroxyl groups on native cyclodextrins to make HPBCD or HBGCD significantly enhances…
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Logo-Ashland
Ashland
CAVASOL* are 2-hydroxypropyl-beta-cyclodextrin (HPBCD) and 2-hydroxypropyl-gama-cyclodextrin (HPGCD) products. These cyclodextrin derivates, like the native cyclodextrins…
0.00
Logo-Ashland
Ashland
CAVASOL* are 2-hydroxypropyl-beta-cyclodextrin (HPBCD) and 2-hydroxypropyl-gama-cyclodextrin (HPGCD) products. These cyclodextrin derivates, like the native cyclodextrins…
0.00
Logo-Ashland
Ashland
CAVAMAX* native cyclodextrins have the ability to act as molecular containers by entrapping molecules in…
0.00
Logo-Ashland
Ashland
CAVAMAX* native cyclodextrins have the ability to act as molecular containers by entrapping molecules in…
0.00
Logo-Ashland
Ashland
CAVAMAX* native cyclodextrins have the ability to act as molecular containers by entrapping molecules in…
0.00
Logo-Ashland
Ashland
Natrosol 250 hydroxyethylcellulose (HEC) is a nonionic water-soluble cellulose ether. Natrosol 250 HEC is easily…
0.00
Logo-Ashland
Ashland
Natrosol 250 hydroxyethylcellulose (HEC) is a nonionic water-soluble cellulose ether. Natrosol 250 HEC is easily…
0.00
Logo-Ashland
Ashland
Natrosol 250 hydroxyethylcellulose (HEC) is a nonionic water-soluble cellulose ether. Natrosol 250 HEC is easily…
0.00
Logo-Ashland
Ashland
Natrosol 250 hydroxyethylcellulose (HEC) is a nonionic water-soluble cellulose ether. Natrosol 250 HEC is easily…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Blanose sodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Blanose sodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly…
0.00
Logo-Ashland
Ashland
Aqualonsodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly controlled…
0.00
Logo-Ashland
Ashland
Blanose sodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly…
0.00
Logo-Ashland
Ashland
Blanose sodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly…
0.00
Logo-Ashland
Ashland
Blanose sodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly…
0.00
Logo-Ashland
Ashland
Blanose sodium carboxymethylcellulose (CMC) is made by reacting sodium monochloroacetate with alkali cellulose under rigidly…
0.00
Logo-Ashland
Ashland
Aqualon ethylcellulose is soluble in a wide range of organic solvents. Typically, ethylcellulose is used…
0.00
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