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  • Post time: 27-04-23

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  • The digital address of HPMC is equally important. With the rise of e-commerce, HPMC is available on numerous online platforms, making it accessible to customers worldwide. From chemical distributors to specialized suppliers, the digital marketplace is another crucial 'address' for HPMC.
  • When purchasing HPMC, there are several factors to consider to ensure you get the right product for your needs. These include
  • For hydroxypropyl cellulose (E 463), the identified NOAEL corresponded to the highest dose 6,000 mg hydroxypropyl cellulose/kg bw per day (by gavage). The most relevant feeding studies with HPMC (E 464) were performed in rats which tolerated up to 10%, corresponding to 9,000 mg test item/kg bw per day. Rabbits tolerated up to 7,500 mg HPMC/kg bw per day administered via the diet (30 day exposure) and dogs up to 1,500 mg HPMC/kg bw per day, in either case being the highest tested dosages. More studies were conducted using sodium carboxy methylcellulose (E 466). The most relevant ones were conducted in rats, with NOAEL values ranging from 4,500 to 9,000 mg test item/kg bw per day (in all cases the highest dose tested). In these studies, some effects (caecum and colonic enlargement, urothelial hyperplasia, nephrocalcinosis, diffuse epithelial hyperplasia in the urinary bladder) were observed, however, not considered of toxicological concern: the findings in the gastrointestinal tract were considered to be a consequence of the accumulation of poorly absorbed water-soluble material and the findings in kidneys and urinary bladder were attributed to the up to fourfold higher concentration of sodium in the test diet compared with the basal diet. In one further study, rats were daily exposed (gavage) to doses equivalent to 0, 500, 2,500 or 5,000 mg/kg bw per day. Animals treated with ≥ 2,500 mg/kg bw per day had soft and pale faeces, which was attributed to the presence of test material and not considered of toxicological relevance. In the absence of any other adverse effects, also for this study, the identified NOAEL was the top dose (5,000 mg/kg bw per day).

  • Hydroxypropyl Methylcellulose (HPMC), a non-ionic cellulose ether, is an essential ingredient across various industries due to its unique properties and versatility. It is derived from natural cellulose through a chemical modification process, primarily involving the substitution of hydroxyl groups with methyl and hydroxypropyl groups. This transformation imparts distinct characteristics that make HPMC a valuable additive in sectors ranging from pharmaceuticals to construction.
  • In the construction industry, HPMC powder is a staple ingredient in dry mix mortars, plasters, and tile adhesives. It acts as a thickening agent, improving the workability and cohesion of the mix, and reducing water demand. Additionally, it contributes to the setting time and durability of these materials, enhancing their overall performance.
  • HEC, derived from cellulose through ethoxylation, is a non-ionic cellulose ether. It is widely used as a thickening agent, stabilizer, and suspending agent due to its excellent water retention capabilities. HEC's ability to form a gel under certain conditions makes it ideal for applications in construction materials, where it enhances the workability of concrete and mortar. In the pharmaceutical industry, HEC is used in tablet coatings and as a viscosity enhancer in oral and topical formulations.
  • When HEC is added to a liquid, the hydroxyethyl groups on the polymer chain interact with water molecules through hydrogen bonding. This interaction causes the polymer chains to swell and expand, forming a three-dimensional network that traps and immobilizes water molecules. As more HEC is added to the liquid, this network becomes denser, resulting in an increase in viscosity.
  • Hydroxypropyl Methylcellulose (HPMC), a derivative of cellulose, is a highly versatile and widely used polymer in various industries. It is obtained through the chemical modification of natural cellulose, primarily from cotton or wood pulp, by introducing hydroxypropyl and methyl groups. The resulting HPMC powder is an odourless, tasteless, and non-toxic substance that exhibits exceptional solubility in cold and hot water.
  • In the pharmaceutical industry, HEC serves as a crucial excipient in the formulation of tablets and capsules. Its ability to form a viscous gel when hydrated makes it an ideal binder, ensuring the uniform distribution of active ingredients within the dosage form. Moreover, HEC's excellent water retention capabilities contribute to the stability of suspensions, allowing for consistent delivery of medication with each dose.
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  • Wash hands before and after use.
  • In conclusion, the solubility of HPMC in water is central to its diverse range of uses across various sectors. Understanding the chemical basis of this property enables scientists and formulators to harness its unique attributes effectively, leading to innovative solutions in medicine, food, and beyond.