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Product
H-Val-Pro-Pro-OH TFA H-Val-Pro-Pro-OH (TFA), a milk-derived proline peptides derivative, is an inhibitor of Angiotensin I converting enzyme (ACE), with an IC50 of 9 μM. Uses: Scientific research. Category: Signaling pathways. CAS No. 2828433-08-3. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg. Product ID: HY-114161A. MedChemExpress MCE
H-VAL-TYR-OH H-VAL-TYR-OH. Alternative Names: L-Tyrosine, N-L-valyl-; L-Valyl-L-tyrosine; N-L-Valyl-L-tyrosine; Valyltyrosine; Val-Tyr; (S)-2-((S)-2-Amino-3-methylbutanamido)-3-(4-hydroxyphenyl)propanoic acid; VY dipeptide. Grades: 95%. CAS No. 3061-91-4. Molecular formula: C14H20N2O4. Mole weight: 280.32. BOC Sciences 9
H-Val-Val-OH H-Val-Val-OH. Alternative Names: L-Valyl-L-valine; Val-val; Val val. CAS No. 3918-94-3. Molecular formula: C10H20N2O3. Mole weight: 216.28. BOC Sciences 9
H-Val-Val-Val-OH H-Val-Val-Val-OH. Alternative Names: Val-Val-Val; l-valyl-l-valyl-l-valine. Grades: 95%. CAS No. 28130-13-4. Molecular formula: C15H29N3O4. Mole weight: 315.41. BOC Sciences 9
hVEGF-IN-1 hVEGF-IN-1 inhibits human VEGF-A translation and has antitumor activity. Tumor bearing mice treated with hVEGF-IN-1 have an average tumor volume of less than 300 mm. The tumor weight in the presence of hVEGF-IN-1 reduces around 60.1% to a final weight of 0.18 g. No significant change in body weight is observed during the treatment. Alternative Names: 1-Piperazinepropanamide, N-[2-[4-[[4-[2-(diethylamino)ethoxy]phenyl]amino]-2-quinazolinyl]phenyl]-4-methyl. CAS No. 1637443-98-1. Molecular formula: C34H43N7O2. Mole weight: 581.75. BOC Sciences 12
HWY 5069 HWY 5069. Group: Biochemicals. Alternative Names: 3, 4-Di hydro-2- [4- (2, 2-di methyl ethyl ) benzyl ] -6-fluoro-1-undacanyl isoquinolinium bromide. Grades: Highly Purified. CAS No. 914917-58-1. Pack Sizes: 2mg, 5mg, 10mg, 25mg, 50mg. Molecular Formula: C31H45BrFN. US Biological Life Sciences. USBiological 11
Worldwide
HX531 HX531 is an orally active RXR antagonist with an IC50 of 18 nM. HX531 upregulates the p53-p21Cip1 pathway. HX531 abrogates the anti-apoptotic effect of t-RA. HX531 exerts anti-obesity, anti-diabetic and anti-melanoma activities[1][2][3]. Uses: Scientific research. Category: Signaling pathways. CAS No. 188844-34-0. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-108521. MedChemExpress MCE
HX 531 HX 531 is a novel RXR antagonist used to enhance transactivation of PPARγ and ST 13 preadipocyte differentiation. Helps in the reduction of triglyceride content in white adipose tissue, skeletal muscle and liver. Group: Biochemicals. Grades: Highly Purified. CAS No. 188844-34-0. Pack Sizes: 1mg, 2.5mg. Molecular Formula: C29H29N3O4, Molecular Weight: 483.56. US Biological Life Sciences. USBiological 11
Worldwide
HX600 HX600 is a synthetic agonist for RXR (Retinoid X Receptor) heterodimer complex. HX600 prevents ischemia-induced neuronal damage. HX600 has orally bioactivity[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 172705-89-4. Pack Sizes: 1 mg; 5 mg. Product ID: HY-120875. MedChemExpress MCE
HX 630 HX 630. Group: Biochemicals. Alternative Names: 4- (7, 8, 9, 10-tetrahydro-7, 7, 10, 10-tetramethylbenzo [b]naphtho [2, 3-f] [1, 4]thiazepin-12-yl) benzoic acid. Grades: Highly Purified. CAS No. 188844-52-2. Pack Sizes: 5mg, 10mg, 25mg, 50mg, 100mg. Molecular Formula: C28H27NO2S. US Biological Life Sciences. USBiological 11
Worldwide
HX-LiX Molecular Sieve The Type X molecular sieve, achieving near-total lithium ion exchange, is crafted specifically for pressure swing adsorption (PSA) oxygen production. It boasts outstanding nitrogen/oxygen selectivity and offers remarkable energy efficiency. This sieve's use significantly cuts energy usage, enhancing cost-effectiveness in producing oxygen and promoting energy conservation within PSA oxygen generation systems. Alfa Chemistry Materials 4
HY-17542 HY-17542 is a potent inhibitor of papain-like protease (PLpro) with IC50 of 2.6 μM. Alternative Names: PLpro inhibitor 6; (R)-5-acetamido-2-methyl-N-(1-(naphthalen-1-yl)ethyl)benzamide; HY 17542; HY17542. Grades: >98%. CAS No. 1093070-14-4. Molecular formula: C22H22N2O2. Mole weight: 346.43. BOC Sciences 12
Hyacinthacine A2 Hyacinthacine A2 is a remarkable antifungal compound extracted from Hyacinthaceae plants, aiding in studying a myriad of fungal infections, encompassing candidiasand aspergillosis. Molecular formula: C8H15NO3. Mole weight: 173.21. BOC Sciences 7
Hyacinthacine B3 Hyacinthacine B3 is a potent compound used to study bacterial infections exhibiting antimicrobial activity against a variety of pathogens, including multidrug-resistant strains. Alternative Names: Hyacinthacine B3; CHEMBL524631; BDBM50278912; (1S,2R,3R,5R,7R,8R)-3-(hydroxymethyl)-5-methyl-2,3,5,6,7,8-hexahydro-1H-pyrrolizine-1,2,7-triol. Molecular formula: C9H17NO4. Mole weight: 203.24. BOC Sciences 7
Hyaluronan biotin sodium salt Hyaluronan biotin sodium salt. Alfa Chemistry Materials 3
Hyaluronan-IN-1 Hyaluronan-IN-1 (Pep-1) is a Hyaluronan inhibitor with a Kd value of 1.65 μM. Hyaluronan-IN-1 blocks CD44-dependent cell adhesion. Hyaluronan-IN-1 inhibits cell adhesion to hyaluronan substrates. Hyaluronan-IN-1 suppresses the development of contact hypersensitivity in mice by blocking the homing process of inflammatory cells to the skin. Hyaluronan-IN-1 also inhibits responses during the sensitization phase. Hyaluronan-IN-1 reduces lung metastasis of melanoma and prolongs the survival of mice. Hyaluronan-IN-1 can be used in research related to contact hypersensitivity, chronic skin inflammation, and melanoma[1][2][3]. Uses: Scientific research. Category: Peptides. CAS No. 299157-43-0. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P5352. MedChemExpress MCE
Hyaluronan mediated motility receptor (165-173) Hyaluronan mediated motility receptor (165-173) is a bioactive peptide of Hyaluronan mediated motility receptor, a receptor for hyaluronic acid (HA). Hyaluronan mediated motility receptor is also involved in cellular transformation and metastasis formation, and in regulating extracellular-regulated kinase (ERK) activity. Alternative Names: Intracellular hyaluronic acid-binding protein (165-173); HMMR (165-173); RHAMM (165-173); Receptor for hyaluronan-mediated motility (165-173). BOC Sciences 9
hyaluronan synthase The enzyme from Streptococcus Group A and Group C requires Mg2+.The enzyme adds GlcNAc to nascent hyaluronan when the non-reducing end is GlcA, but it adds GlcA when the non-reducing end is GlcNAc. The enzyme is highly specific for UDP-GlcNAc and UDP-GlcA; no copolymerization is observed if either is replaced by UDP-Glc, UDP-Gal, UDP-GalNAc or UDP-GalA. Similar enzymes have been found in a variety of organisms. Group: Enzymes. Synonyms: spHAS; seHAS. Enzyme Commission Number: EC 2.4.1.212. CAS No. 39346-43-5. Hyaluronan synthase. Storage: Store it at +4 ?C for short term. For long term storage, store it at -20 ?C?-80 ?C. Form: Liquid or lyophilized powder. EXWM-2440; hyaluronan synthase; EC 2.4.1.212; 39346-43-5; spHAS; seHAS. Cat No: EXWM-2440. Creative Enzymes
Hyaluronan synthase from Pasteurella multocida, Recombinant Hyaluronan synthases (HAS) are membrane-bound enzymes which use UDP-α-N-acetyl-D-glucosamine and UDP-α-D-glucuronate as substrates to produce the glycosaminoglycan hyaluronan at the cell surface and extrude it through the membrane into the extracellular space. Group: Enzymes. Synonyms: EC 2.4.1.212; spHAS; seHAS; Hyaluronan synthases; HAS. Enzyme Commission Number: EC 2.4.1.212. CAS No. 39346-43-5. Purity: min 95% by SDS-PAGE. Hyaluronan synthase. Source: E. coli. Species: Pasteurella multocida. EC 2.4.1.212; spHAS; seHAS; Hyaluronan synthases; HAS. Cat No: NATE-1485. Creative Enzymes
Hyaluronate biotin - Molecular Weight - 1000kDa Hyaluronate biotin - Molecular Weight - 1000kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 10kDa Hyaluronate biotin - Molecular Weight - 10kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 1500kDa Hyaluronate biotin - Molecular Weight - 1500kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 20kDa Hyaluronate biotin - Molecular Weight - 20kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 2500kDa Hyaluronate biotin - Molecular Weight - 2500kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 250kDa Hyaluronate biotin - Molecular Weight - 250kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 500kDa Hyaluronate biotin - Molecular Weight - 500kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 50kDa Hyaluronate biotin - Molecular Weight - 50kDa. BOC Sciences 7
Hyaluronate biotin - Molecular Weight - 750kDa Hyaluronate biotin - Molecular Weight - 750kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 1000kDa Hyaluronate fluorescein - Molecular Weight - 1000kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 10kDa Hyaluronate fluorescein - Molecular Weight - 10kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 1500kDa Hyaluronate fluorescein - Molecular Weight - 1500kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 20kDa Hyaluronate fluorescein - Molecular Weight - 20kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 2500kDa Hyaluronate fluorescein - Molecular Weight - 2500kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 250kDa Hyaluronate fluorescein - Molecular Weight - 250kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 500kDa Hyaluronate fluorescein - Molecular Weight - 500kDa. BOC Sciences 7
Hyaluronate fluorescein - Molecular Weight - 50kDa Hyaluronate fluorescein - Molecular Weight - 50kDa. BOC Sciences 7
Hyaluronate fluorescein - MW - 800kDa Hyaluronate fluorescein - MW - 800kDa is an intricate fusion of hyaluronate and fluorescein facilating the deep research of maladies, like cancer, arthritis and diverse cutaneous afflictions. Alternative Names: Fluorescein hyaluronic acid. BOC Sciences 7
Hyaluronate Hexasaccharide Hyaluronate Hexasaccharide is a fragment of hyaluronic acid (HA) and can be used as a biochemical assay reagent. Hyaluronate is a naturally occurring glycosaminoglycan found in various connective tissue of humans. Alternative Names: Hyaluronic acid hexasaccharide; L-GulA(a1-3)L-GulNAc(a1-4)L-GulA(a1-3)L-GulNAc(a1-4)L-GulA(a1-3)L-GulNAc; alpha-L-gulo-hexospyranosyluronic acid-(1->3)-2-acetamido-2-deoxy-alpha-L-gulo-hexopyranosyl-(1->4)-alpha-L-gulo-hexospyranosyluronic acid-(1->3)-2-acetamido-2-deoxy-alpha-L-gulo-hexopyranosyl-(1->4)-alpha-L-gulo-hexospyranosyluronic acid-(1->3)-2-acetamido-2-deoxy-L-gulo-hexopyranose. CAS No. 73603-40-4. Molecular formula: C42H65N3O34. Mole weight: 1155.97. BOC Sciences 3
hyaluronate lyase The enzyme catalyses the degradation of hyaluronan by a β-elimination reaction. Also acts on chondroitin. The product is more systematically known as 3-(4-deoxy-α-L-threo-hex-4-enopyranosyluronic acid)-2-acetamido-2-deoxy-D-glucose. Group: Enzymes. Synonyms: hyaluronidase (ambiguous); glucuronoglycosaminoglycan lyase (ambiguous); spreading factor; mucinase (ambiguous). Enzyme Commission Number: EC 4.2.2.1. CAS No. 37259-53-3. Hyaluronate Lyase. Storage: Store it at +4 ?C for short term. For long term storage, store it at -20 ?C?-80 ?C. Form: Liquid or lyophilized powder. EXWM-5084; hyaluronate lyase; EC 4.2.2.1; 37259-53-3; hyaluronidase (ambiguous); glucuronoglycosaminoglycan lyase (ambiguous); spreading factor; mucinase (ambiguous). Cat No: EXWM-5084. Creative Enzymes
Hyaluronate lyase from Streptococcus equi, Recombinant Hyaluronate lyase degrades hyaluronate using an elimination reaction to break glycosidic linkages yielding unsaturated disaccharide products. Group: Enzymes. Synonyms: hyaluronidase; glucuronoglycosaminoglycan lyase; spreading factor; mucinase; 37259-53-3; EC 4.2.2.1; hyaluronate lyase. Enzyme Commission Number: EC 4.2.2.1. CAS No. 37259-53-3. Purity: > 95 % as judged by SDS-PAGE. Hyaluronate Lyase. Mole weight: 38447.1 Da. Activity: 4.6 U/mg. Storage: Store at 4°C (shipped at room temperature). Form: Supplied in 3.2 M ammonium sulphate. Source: Streptococcus equi 4047. hyaluronidase; glucuronoglycosaminoglycan lyase; spreading factor; mucinase; 37259-53-3; EC 4.2.2.1; hyaluronate lyase. Cat No: NATE-1210. Creative Enzymes
Hyaluronate Lyase from Streptococcus pyogenes, Recombinant Hyaluronate lyase degrades hyaluronate using an elimination reaction to break glycosidic linkages yielding unsaturated disaccharide products. It is important for the diffusion of toxins and proteins produced by S. pyogenes. Group: Enzymes. Synonyms: hyaluronidase; glucuronoglycosaminoglycan lyase; spreading factor; mucinase; 37259-53-3; EC 4.2.2.1; hyaluronate lyase. Enzyme Commission Number: EC 4.2.2.1. CAS No. 37259-53-3. Hyaluronate Lyase. Activity: > 8.0 units/mg protein (5.0-15.0 mg/mL). Storage: 2-8°C. Form: ammonium sulfate suspension. Source: E. coli. Species: Streptococcus pyogenes. hyaluronidase; glucuronoglycosaminoglycan lyase; spreading factor; mucinase; 37259-53-3; EC 4.2.2.1; hyaluronate lyase. Cat No: NATE-0346. Creative Enzymes
Hyaluronate lyase from Streptomyces coelicolor, Recombinant Hyaluronate lyase degrades hyaluronate using an elimination reaction to break glycosidic linkages yielding unsaturated disaccharide products. Group: Enzymes. Synonyms: hyaluronidase; glucuronoglycosaminoglycan lyase; spreading factor; mucinase; 37259-53-3; EC 4.2.2.1; hyaluronate lyase. Enzyme Commission Number: EC 4.2.2.1. CAS No. 37259-53-3. Purity: > 95 % as judged by SDS-PAGE. Hyaluronate Lyase. Mole weight: 82914.2 Da. Activity: 8.1 U/mg. Storage: Store at 4°C (shipped at room temperature). Form: Supplied in 3.2 M ammonium sulphate. Source: Streptomyces coelicolor A3(2). hyaluronidase; glucuronoglycosaminoglycan lyase; spreading factor; mucinase; 37259-53-3; EC 4.2.2.1; hyaluronate lyase. Cat No: NATE-1211. Creative Enzymes
Hyaluronate rhodamine - Molecular Weight - 1000kDa Hyaluronate rhodamine - Molecular Weight - 1000kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 10kDa Hyaluronate rhodamine - Molecular Weight - 10kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 1500kDa Hyaluronate rhodamine - Molecular Weight - 1500kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 20kDa Hyaluronate rhodamine - Molecular Weight - 20kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 2500kDa Hyaluronate rhodamine - Molecular Weight - 2500kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 250kDa Hyaluronate rhodamine - Molecular Weight - 250kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 500kDa Hyaluronate rhodamine - Molecular Weight - 500kDa. BOC Sciences 7
Hyaluronate rhodamine - Molecular Weight - 50kDa Hyaluronate rhodamine - Molecular Weight - 50kDa. BOC Sciences 7
Hyaluronate-SS-PCL Hyaluronate-SS-PCL is a kind of hyaluronic acid polymerized polyester connected by disulfide bond.Polycaprolactone (PCL) is a kind of poly (caprolactone) which is polymerized by ring opening polymerization ofε-caprolactone with organometallic compounds (such as tetraphenyltin) as catalyst and dihydroxy or trihydroxy as initiator. It is widely used in drug carriers, nanofiber spinning, organic colorants, powder coatings and other fields. Synonyms: Hyaluronate-S-S-Poly(ε-caprolactone). Product ID: MSMN-058. Category: Raw Materials. CD Formulation
Hyaluronic acid Hyaluronic acid is a mucopolysaccharide with high-viscosity traditionally extracted from rooster combs, but now it is mainly produced via streptococcal fermentation. Nutritional supplement in health care products. Uses: Ingredient of health care products. Grades: 90%. CAS No. 9004-61-9. Molecular formula: (C16H27NO11)n. BOC Sciences 3
Hyaluronic acid Hyaluronic acid is a biopolymer composed of repeating units of disaccharides with various applications. Hyaluronic acid is a major component of the extracellular matrix (ECM). Hyaluronic acid is synthesized at the plasma membrane. Increased hyaluronic acid levels are associated with tumor cell growth, adhesion, migration, invasion and angiogenesis in digestive cancers. Hyaluronic acid participates in tissue remodeling and rapid cell proliferation in some physiological processes including embryonic morphogenesis and wound-healing. Hyaluronic acid activates the PI3K-Akt signaling. Hyaluronic acid acts as a regulator of cancer-associated lymphangiogenesis. Hyaluronic acid also enhances cell invasion and angiogenesis by promoting proteolytic MMP-9 binding to cell surface or stimulating MMP-9 binding to cell surface. Hyaluronic acid can be used as drug delivery for sodium butyrate to improve the anti-proliferative activity on breast cancer cell line. Hyaluronic acid can be studied in joint diseases, wound healing and cancer[1][2][3][4][5]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Hyaluronan; Hyaluronate. CAS No. 9004-61-9. Pack Sizes: 50 mg; 100 mg; 200 mg; 500 mg; 1 g. Product ID: HY-B0633A. MedChemExpress MCE
Hyaluronic Acid Hyaluronic acid (HA) is an unbranched glycosaminoglycan (GAG) polymer with an unusually high molecular weight (up to 108 Da) present in vertebrate tissues. The HA polymer is composed of repeating disaccharide units of N-acetyl-d-glucosamine and d-glucuronic acid joined through β-1,4-linkages. Intrachain β-1,3-linkages stabilize HA by placing bulky substituent groups equatorially with hydrogen atoms axially minimizing rotation. Alternating hydrophobic/hydrophilic surfaces result, which are held together by hydrogen bonding. In neutral solutions, HA becomes anionic as carboxyl groups dissociate. The resulting salts of hyaluronan with Na+ or Ca2+ give HA exceptional hydrophilicity. Once hydrated, the rigid HA secondary structure predominates as a left-handed helix. HA tends to form duplexes in solution by intermolecular hydrogen bonding and hydrophobic interactions, which further collapse the structure into a β-sheet tertiary structure forming an extended polymeric mesh. Applications: Hyaluronic acid (ha) is a multifunctional biopolymer utilized across diverse industries due to its exceptional biocompatibility and moisture-retention properties. in aesthetic medicine and skincare, it serves as the gold standard for dermal fillers to restore facial volume and as a premier humectant in topical formulations to enhance skin hydration and elasticity. beyond cosmetics, ha plays a c. C… Protheragen
Hyaluronic Acid Hyaluronic Acid. American Molecules LLC
Hyaluronic Acid Hyaluronic Acid. CAS No. 9004-61-9. Product ID: CI-NAT-9004619. Molecular formula: (C14H21NO11)n. Alfa Chemistry - ISO 9001:32057 Certified. Alfa Chemistry.
Hyaluronic acid, acetate (ester) Hyaluronic acid, acetate (ester), is a modified form of hyaluronic acid where some carboxyl groups are esterified with acetic acid. This derivative is used in cosmetics for its ability to retain moisture, promote skin repair, and reduce the appearance of aging. It enhances skin hydration, improves elasticity, and may facilitate better absorption through the skin. Additionally, it serves as a viscosity control agent and a film-former, providing a protective barrier and locking in moisture. Alternative Names: AcHa; Acetylated hyaluronate; Hyaluronate acetate; Hyaluronic acid, acetate. Grades: ≥95%. CAS No. 158254-23-0. BOC Sciences 7
Hyaluronic acid decasaccharide Hyaluronic acid decasaccharide is renowned as a remarkable derivative of hyaluronic acid, demonstrating unparalleled modulation of cellular mechanisms and paramount encouragement of tissue rejuvenation. Alternative Names: Hyaluronic acid decamer. Molecular formula: C70H107N5O56. Mole weight: 1914.60. BOC Sciences 7
Hyaluronic acid disaccharide sodium salt It is the only unsaturated disaccharide produced by hyaluronic acid in response to chondroitin enzymes ABC or AC-1. Alternative Names: Hyaluronic acid disaccharide ΔDiHA sodium salt; α-δua-(1→3)-glcnac; Sodium 2-acetamido-2-deoxy-3-O-(4-deoxy-α-L-threo-hex-4-enopyranuronosyl)-D-glucose; D-Glucose, 2-(acetylamino)-2-deoxy-3-O-(4-deoxy-α-L-threo-hex-4-enopyranuronosyl)-, sodium salt (1:1); D-Glucose, 2-(acetylamino)-2-deoxy-3-O-(4-deoxy-α-L-threo-hex-4-enopyranuronosyl)-, monosodium salt. Grades: ≥98%. CAS No. 149368-06-9. Molecular formula: C14H20NNaO11. Mole weight: 401.30. BOC Sciences 3
Hyaluronic Acid Food-Nutra Grade(1.0-1.5) X 106 Hyaluronic Acid Food-Nutra Grade(1.0-1.5) X 106. Pharma Resources International LLC
CA, FL & NJ
Hyaluronic acid hexasaccharide Hyaluronic acid hexasaccharide, an eminent biomedical compound with diverse industrial applications, warrants utmost caution. Renowned for its remarkable pain-alleviating and joint-mobility-enhancing properties, it serves as an effective therapeutic agent for joint disorders, notably osteoarthritis. Moreover, its potential as a drug delivery system and its proficiency in promoting wound healing are areas of burgeoning scientific interest. Alternative Names: Hyaluronic acid oligosaccharide dp6; Hyaluronate hexasaccharide; O-β-D-Glucopyranuronosyl-(1→3)-O-2-(acetylamino)-2-deoxy-β-D-glucopyranosyl-(1→4)-O-β-D-glucopyranuronosyl-(1→3)-O-2-(acetylamino)-2-deoxy-β-D-glucopyranosyl-(1→4)-β-D-glucopyranuronosyl-(1→3)-2-(acetylamino)-2-deoxy-D-glucose. CAS No. 57323-42-9. Molecular formula: C42H65N3O34. Mole weight: 1155.97. BOC Sciences 7
Hyaluronic acid methacrylate Hyaluronic acid (HA) is a linear polysaccharide of alternating D-glucuronic acid and N-acetyl-D-glucosamine found primarily in connective tissues. HA based hydrogels are widely used in tissue engineering, 3D bioprinting, and drug deliery applications. The methacrylate functionalized hyaluronic acid is photo-crosslinkable, and can be used to generate crosslinked hydrogels. Alternative Names: HA MA,HA methacrlate,Hyaluronic acid MA,Hyaluronic acid methacrlate high mol. weight. Molecular formula: (NaC20H28NO15)n. BOC Sciences 5
Hyaluronic Acid MMW Medium-MW hyaluronic acid (100-500 kDa), enzymatically derived; improves tissue hydration and stability. CAS No. 9067-32-7. Product ID: CI-SC-0041. Alfa Chemistry - ISO 9001:32057 Certified. Alfa Chemistry.
Hyaluronic acid (Mw:1000-2000Da) Hyaluronic acid (Mw: 1000-2000 Da) is a long-chain unbranched polysaccharide with a molecular weight of 1000-2000 Da. Hyaluronic acid (Mw: 2000 Da) inhibits IL-1β expression and increases LC3-II. Hyaluronic acid (Mw: 1000-2000Da) can regulate tissue homeostasis and stress resistance, promote angiogenesis and tissue remodeling. Hyaluronic acid (Mw: 1000-2000 Da) has good biocompatibility and biodegradability, and can be used in drug delivery systems and tissue engineering. Hyaluronic acid (Mw: 2000 Da) can reduce facial skin blemishes and sagging[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 9004-61-9. Pack Sizes: 500 mg; 1 g; 5 g; 10 g. Product ID: HY-B0633C. MedChemExpress MCE
Hyaluronic acid (MW 50000-100000) Hyaluronic acid (MW 50000-100000) (Hyaluronan (MW 50000-100000)) is a biopolymer composed of repeating units of disaccharides with a molecular weight of 50000-100000 Da. Hyaluronic acid (MW 50000-100000) can be used as a drug carrier for drug delivery[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Hyaluronan (MW 50000-100000); Hyaluronate (MW 50000-100000). CAS No. 9004-61-9. Pack Sizes: 25 mg; 50 mg; 100 mg; 500 mg; 1 g. Product ID: HY-B0633B. MedChemExpress MCE
Hyaluronic acid octasaccharide Hyaluronic Acid Octasaccharide is a biomedical product used in the research of osteoarthritis and dry eye syndrome. It has anti-inflammatory properties and promotes tissue hydration. This salt derivative of hyaluronic acid offers improved stability and bioavailability. Alternative Names: Hyaluronic acid oligosaccharide dp8; Hyaluronate octasaccharide. Molecular formula: C56H86N4O45. Mole weight: 1535.28. BOC Sciences 7
Hyaluronic Acid SLMW Super low-MW hyaluronic acid (8-15 kDa), highly bioavailable for hydration and lubrication. CAS No. 9067-32-7. Product ID: CI-SC-0042. Alfa Chemistry - ISO 9001:32057 Certified. Alfa Chemistry.
Hyaluronic acid sodium Hyaluronic Acid, Sodium Salt is the sodium salt form of Hyaluronic Acid. Hyaluronic acid is a mucopolysaccharide with high-viscosity traditionally extracted from rooster combs, but now it is mainly produced via streptococcal fermentation. Hyaluronic acid exerts physiological effects through skin and mucous membrane absorption, including anti-inflammatory, promoting cell growth and differentiation, promoting wound repair, preventing skin aging, and maintaining its finish. Bioactive hyaluronic acid can be used to make skin and mucous membrane sprays, masks, eye drops, mouthwash, oral and vaginal protectants, etc. It has a broad application prospect. Nutritional supplement in health care products. Uses: Ingredient of health care products. Alternative Names: Hyaluronic acid, sodium salt; Arthrease; Artz; Artz Dispo; Artzal; Chlamyhyaluronic acid sodium salt; Cosphaderm; Cristalhyal 1.0; Crystalhyal; Cystistat; Euflexxa; FCH SUS; FCH-SU; Fermatron; HA; HA-F; HA-Q; HA-Q 1; HA-QA; HE-QSE; Healon; Healon (polysaccharide); Healon GV; Healon V; Hi-Aqua; Hyalart; Hyalein; Hyalein Mini; Hyalgan; Hyalonano; Hyaloorigo; Hyaluronan sodium salt; Hyaluronate sodium; Hyaluronic acid LM; Hyaluronic acid sodium salt; Hyasol; Hyladerm; Hylartin; Hylo Comod; Jointex; Khionat; Kynex; Maruha; MucoUp; Nanuo HA; Neoviderm; Nidelon; Opegan; Orthovisc; Ostenil; Provisc; Provisk; Renovhy. CAS No. 9067-32-7. Molecular formula: (C14H22NNaO11)n. BOC Sciences
Hyaluronic acid sodium Hyaluronic acid sodium (Sodium hyaluronate) is a biopolymer composed of repeating units of disaccharides with various applications. Hyaluronic acid sodium is a major component of the extracellular matrix (ECM). Hyaluronic acid sodium is synthesized at the plasma membrane. Increased hyaluronic acid sodium levels are associated with tumor cell growth, adhesion, migration, invasion and angiogenesis in digestive cancers. Hyaluronic acid sodium participates in tissue remodeling and rapid cell proliferation in some physiological processes including embryonic morphogenesis and wound-healing. Hyaluronic acid sodium activates the PI3K-Akt signaling. Hyaluronic acid sodium acts as a regulator of cancer-associated lymphangiogenesis. Hyaluronic acid sodium also enhances cell invasion and angiogenesis by promoting proteolytic MMP-9 binding to cell surface or stimulating MMP-9 binding to cell surface. Hyaluronic acid sodium can be used as drug delivery for sodium butyrate to improve the anti-proliferative activity on breast cancer cell line. Hyaluronic acid sodium can be studied in joint diseases, wound healing and cancer[1][2][3][4][5]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Sodium hyaluronate. CAS No. 9067-32-7. Pack Sizes: 50 mg; 100 mg; 500 mg; 1 g; 5 g; 10 g; 25 g. Product ID: HY-B0633. MedChemExpress MCE
Hyaluronic Acid Sodium Hyaluronic Acid Sodium. CAS No. 9067-32-7. Purity: ≥98.0%. Product ID: CI-NAT-9067327. Molecular formula: (C14H20NNaO11)n. Alfa Chemistry - ISO 9001:32057 Certified. Alfa Chemistry.

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