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W355690 Aldrich

Isopropyl myristate

≥98%

Synonym: IPM 100, IPM-EX, IPM-R, IPM, Isopropyl tetradecanoate, Myristic acid isopropyl ester

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Properties

Related Categories Alphabetical Listings, Flavors and Fragrances, Halal Certified Products, I - N, I-L,
biological source   synthetic
grade   Halal
  Kosher
assay   ≥98%
refractive index   n20/D 1.434(lit.)
bp   193 °C/20 mmHg(lit.)
mp   ~3 °C(lit.)
density   0.85 g/mL at 25 °C(lit.)
Organoleptic   cheese; cherry; cinnamon; waxy; wine-like
allergen   no known allergens

Description

Biochem/physiol Actions

Odor at 1.0%

Taste at 10 ppm

Packaging

1 kg in poly bottle

8, 20 kg in poly drum

Other Notes

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Safety & Documentation

Protocols & Articles

Articles

Understanding the Complexities of Kosher Ingredients

Dr. Luke Grocholl, Quality Assurance Supervisor, Sigma-Aldrich Flavors & Fragrances and Rabbi Gershon Segal
Keywords: Fermentation, Food & Beverage, Safety industry

Peer-Reviewed Papers

References

Set your institution to view full text papers.

Effect of vehicles on the maximum transepidermal flux of similar size phenolic compounds. Zhang Q, Li P, Liu D, et al. Pharm. Res. 30(1), 32-40, (2013)

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Investigation of microemulsion microstructures and their relationship to transdermal permeation of model drugs: ketoprofen, lidocaine, and caffeine. Zhang J and Michniak-Kohn B Int. J. Pharm. 421(1), 34-44, (2011)

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Organoleptic Characteristics of Flavor Materials Mosciano, G. Perfum. Flavor. 5th ed., 30, 50, (2005)

Nanoemulsion containing dapsone for topical administration: a study of in vitro release and epidermal permeation. Borges VR, Simon A, Sena AR, et al. Int. J. Nanomedicine 8, 535-44, (2013)

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Effectiveness of isopropyl myristate/cyclomethicone D5 solution of removing cuticular hydrocarbons from human head lice (Pediculus humanus capitis). Barnett E, Palma KG, Clayton B, et al. BMC Dermatol. 12, 15, (2012)

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The influence of the structure and the composition of water/AOT-Tween 85/IPM microemulsion system on transdermal delivery of 5-fluorouracil. Yanyu X, Fang L, Qineng P, et al. Drug Dev. Ind. Pharm. 38(12), 1521-9, (2012)

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In vitro and in vivo evaluation of drug release from semisolid dosage forms. Petró E, Balogh A, Blazsó G, et al. Pharmazie 66(12), 936-41, (2011)

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[Study on Chinese herbs' volatile oil micro-emulsions by means of pseudo-ternary phase diagram]. Yang MM, Zhang Y, Liu XY, et al. Zhong Yao Cai 34(8), 1288-92, (2011)

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[Water in oil microemulsions containing NaCl for transdermal delivery of fluorouracil]. Xiao YY, Liu F, Chen ZP, et al. Yao Xue Xue Bao 46(6), 720-6, (2011)

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Microstructure, morphology, and ultrafast dynamics of a novel edible microemulsion. Saha R, Rakshit S, Mitra RK, et al. Langmuir 28(22), 8309-17, (2012)

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Influence of penetration enhancer on drug permeation from volatile formulations. Santos P, Watkinson AC, Hadgraft J, et al. Int. J. Pharm. 439(1-2), 260-8, (2012)

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Transdermal delivery of the anti-rheumatic agent methotrexate using a solid-in-oil nanocarrier. Yang F, Kamiya N, and Goto M Eur. J. Pharm. Biopharm. 82(1), 158-63, (2012)

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A novel ionic liquid-in-oil microemulsion composed of biologically acceptable components: an excitation wavelength dependent fluorescence resonance energy transfer study. Mandal S, Ghosh S, Banerjee C, et al. J. Phys. Chem. B 117(11), 3221-31, (2013)

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Decylglucoside-based microemulsions for cutaneous localization of lycopene and ascorbic acid. Pepe D, Phelps J, Lewis K, et al. Int. J. Pharm. 434(1-2), 420-8, (2012)

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Preparation of high solubilizable microemulsion of naproxen and its solubilization mechanism. Tian Q, Ren F, Xu Z, Xie Y, Zhang S. Int. J. Pharm. 426, 202-210, (2012)

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The preparation of 3,5-dihydroxy-4-isopropylstilbene nanoemulsion and in vitro release. Zhang Y, Gao J, Zheng H, et al. Int. J. Nanomedicine 6, 649-57, (2011)

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Design, synthesis, antibacterial, and QSAR studies of myristic acid derivatives. Balasubramanian Narasimhan et al Bioorg. Med. Chem. Lett. 16, 3023-9, (2006)

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Studies on the kinetics of killing and the proposed mechanism of action of microemulsions against fungi. Al-Adham IS, Ashour H, Al-Kaissi E, et al. Int. J. Pharm. 454(1), 226-32, (2013)

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Gel formulation containing mixed surfactant and lipids associating with carboplatin. Woll KA, Schuchardt EJ, et al. Chem. Biodivers. 8, 2195-2210, (2011)

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Membrane permeation of testosterone from either solutions, particle dispersions, or particle-stabilized emulsions. Binks BP, Fletcher PD, Johnson AJ, et al. Langmuir 28(5), 2510-22, (2012)

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Formulation, characterization, and clinical evaluation of microemulsion containing clotrimazole for topical delivery. Hashem FM, Shaker DS, Ghorab MK, et al. AAPS PharmSciTech 12(3), 879-86, (2011)

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Study of the influence of the penetration enhancer isopropyl myristate on the nanostructure of stratum corneum lipid model membranes using neutron diffraction and deuterium labelling. Engelbrecht TN, Demé B, Dobner B, et al. Skin Pharmacol. Physiol. 25(4), 200-7, (2012)

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The use of acoustic spectroscopy in the characterisation of ternary phase diagrams. Bonacucina G, Cespi M, Mencarelli G, et al. Int. J. Pharm. 441(1-2), 603-10, (2013)

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Preparation and evaluation of andrographolide-loaded microemulsion. Du H, Yang X, Li H, et al. J. Microencapsul. 29(7), 657-65, (2012)

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A PAMPA assay as fast predictive model of passive human skin permeability of new synthesized corticosteroid C-21 esters. Markovic BD, Vladimirov SM, Cudina OA, et al. Molecules 17(1), 480-91, (2012)

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Percutaneous absorption and distribution of organophosphates (chlorpyrifos and dichlorvos) following dermal exposure and decontamination scenarios using in vitro human skin model. Moore CA, Wilkinson SC, Blain PG, et al. Toxicol. Lett. 229(1), 66-72, (2014)

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In vitro percutaneous absorption enhancement of granisetron by chemical penetration enhancers. Zhao N, Cun D, Li W, et al. Drug Dev. Ind. Pharm. 39(4), 561-8, (2013)

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Silicone adhesive, a better matrix for tolterodine patches-a research based on in vitro/in vivo studies. Liu J, Wang Z, Liu C, et al. Drug Dev. Ind. Pharm. 38(8), 1008-14, (2012)

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Design and development of insulin emulgel formulation for transdermal drug delivery and its evaluation. Akram M, Naqvi SB, and Khan A Pak. J. Pharm. Sci. 26(2), 323-32, (2013)

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Formulation of Microemulsion Systems for Dermal Delivery of Silymarin. Panapisal V, Charoensri S, Tantituvanont A. AAPS PharmSciTech 13(2), 389-99, (2012)

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Merck 14,5215

Beil. 2,IV,1132

Arctander, 2726 / FT-IR 2 (1), 971:C / FT-NMR 1 (1), 926:B / Fenaroli / RegBook 1 (1), 691:I / RegBook 26 (1), 691:I / Sax 6, 1664 / Structure Index 1, 104:A:9 / Vapor Phase 3, 629:B

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