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REVIEW

Role of microemuslsions in advanced drug delivery

, , &
Pages 1177-1185 | Received 25 Dec 2014, Accepted 22 Jan 2015, Published online: 25 Feb 2015

References

  • Akay S, Karasu Z, Akyildiz M, Tokat Y, Goker E. 2005. Successful treatment of liver transplant-associated Kaposi's sarcoma with long-term vincristine. Transplant Proc. 37:2188–2189.
  • Burrows HD, Miguel MDG. 2001. Applications and limitations of uranyl ion as a photophysical probe. Adv Colloid Interface Scie. 89:485–496.
  • Chakraborty S. 2007. Electroosmotically driven capillary transport of typical non-Newtonian biofluids in rectangular microchannels. Anal Chim Acta. 605:175–184.
  • Chandra A, Sharma PK, Irchhiaya R. 2009. Microemulsion-based hydrogel formulation for transdermal delivery of dexamethasone. Asian J Pharm. 3:30–36.
  • Charman WN. 2000. Lipids, lipophilic drugs, and oral drug delivery—some emerging concepts. J Pharm Sci. 89:967–978.
  • Chaudhary S, Garg T, Murthy RS, Rath G, Goyal AK. 2014. Recent approaches of lipid-based delivery system for lymphatic targeting via oral route. J Drug Target. 22:871–872.
  • Edris AE, Malone CF. 2012. Preferential solubilization behaviours and stability of some phenolic-bearing essential oils formulated in different microemulsion systems. Int J Cosmet Sci. 34:441–450.
  • Friberg SE, Brancewicz C, Morrison DS. 1994. O/W microemulsions and hydrotropes: the coupling action of a hydrotrope. Langmuir. 10:2945–2949.
  • Fricker G, Kromp T, Wendel A, Blume A, Zirkel J, Rebmann H, et al. 2010. Phospholipids and lipid-based formulations in oral drug delivery. Pharm Res. 27:1469–1486.
  • Gagandeep GARG, T., Malik B, Rath G, Goyal AK. 2014. Development and characterization of nano-fiber patch for the treatment of glaucoma. Eur J Pharm Sci. 53:10–16.
  • Garg T. 2014. Current nanotechnological approaches for an effective delivery of bio-active drug molecules in the treatment of acne. Artif Cells Nanomed Biotechnol. 1–8.
  • Garg T, Goyal AK. 2012. Iontophoresis: drug delivery system by applying an electrical potential across the skin. Drug Deliv Lett. 2: 270–280.
  • Garg T, Goyal AK. 2014a. Biomaterial-based scaffolds–current status and future directions. Expert Opin Drug Deliv. 11:767–789.
  • Garg T, Goyal AK. 2014b. Liposomes: targeted and controlled delivery system. Drug Deliv Lett. 4:62–71.
  • Garg T, Goyal AK. 2014c. Medicated chewing gum: patient compliance oral drug delivery system. Drug Deliv Lett. 4:72–78.
  • Garg T, Goyal AK, Arora S, Murthy R. 2012a. Development, optimization & evaluation of porous chitosan scaffold formulation of gliclazide for the treatment of type-2 diabetes mellitus. Drug Deliv Lett. 2:251–261.
  • Garg T, Kumar A, Rath G, Goyal AK. 2014a. Gastroretentive drug delivery systems for therapeutic management of peptic ulcer. Crit Rev Ther Drug Carrier Syst. 31:531–557.
  • Garg T, Rath G, Goyal AK. 2014b. Ancient and advanced approaches for the treatment of an inflammatory autoimmune disease-psoriasis. Crit Rev Ther Drug Carrier Syst. 31:331–364.
  • Garg T, Rath G, Goyal AK. 2014c. Biomaterials-based nanofiber scaffold: targeted and controlled carrier for cell and drug delivery. J Drug Target. 1–20.
  • Garg T, Rath G, Goyal AK. 2014d. Comprehensive review on additives of topical dosage forms for drug delivery. Drug Deliv.
  • Garg T, Singh O, Arora S, Murthy R. 2011a. Dendrimer—A novel scaffold for drug delivery. Int J Pharm Sci Rev Res. 7:211–220.
  • Garg T, Singh O, Arora S, Murthy R. 2011b. Patented microencapsulation techniques and its application. J Pharm Res. 4:2097–2102.
  • Garg T, Singh O, Arora S, Murthy R. 2012b. Scaffold: a novel carrier for cell and drug delivery. Crit Rev Ther Drug Carrier Syst. 29:1–63.
  • Garg T, Singh S, Goyal AK. 2013. Stimuli-sensitive hydrogels: an excellent carrier for drug and cell delivery. Crit Rev Ther Drug Carrier Syst. 30:369–409.
  • Gibaud S, Attivi D. 2012. Microemulsions for oral administration and their therapeutic applications. Expert Opin Drug Deliv. 9:937–951.
  • Gillberg G, Lehtinen H, Friberg S. 1970. NMR and IR investigation of the conditions determining the stability of microemulsions. J Colloid Interface Sci. 33:40–53.
  • Goyal AK, Rath G, Garg T. 2013a. Nanotechnological approaches for genetic immunization. DNA RNA Nanobiotechnol Med Diagnos Treatment Dis. 67–120.
  • Goyal G, Garg T, Malik B, Chauhan G, Rath G, Goyal AK. 2013b. Development and characterization of niosomal gel for topical delivery of benzoyl peroxide. Drug Deliv.
  • Goyal G, Garg T, Rath G, Goyal AK. 2014a. Current nanotechnological strategies for an effective delivery of drugs in treatment of periodontal disease. Crit Rev Ther Drug Carrier Syst. 31:89–119.
  • Goyal G, Garg T, Rath G, Goyal AK. 2014b. Current nanotechnological strategies for treating glaucoma. Crit Rev Ther Drug Carrier Syst. 31:365–405.
  • Hussain T, Garg T, Goyal AK, Rath G. 2014. Biomedical Applications of Nanofiber Scaffolds in Tissue Engineering. J Biomater Tissue Eng. 4:600–623.
  • Jahanzad F, Chauhan G, Mustafa S, Saha B, Sajjadi S, Brooks BW. 2007. Composite polymer nanoparticles via transitional phase inversion emulsification and polymerisation. Macromol Symp.145–150.
  • Johal HS, Garg T, Rath G, Goyal AK. 2014. Advanced topical drug delivery system for the management of vaginal candidiasis. Drug Deliv. 1–14.
  • Joshi D, Garg T, Goyal AK, Rath G. 2014a. Advanced drug delivery approaches against periodontitis. Drug Deliv. 1–15.
  • Joshi D, Garg T, Goyal AK, Rath G. 2014b. Development and Characterization of Novel Medicated Nanofibers against Periodontitis. Curr Drug Deliv.
  • Kalia V, Garg T, Rath G, Goyal AK. 2014. Development and evaluation of a sublingual film of the antiemetic granisetron hydrochloride. Artif Cells Nanomed Biotechnol. 1–5.
  • Kataria K, Sharma A, Garg T, Goyal AK, Rath G. 2014. Novel technology to improve drug loading in polymeric nanofibers. Drug Deliv Lett. 4:79–86.
  • Kaur M, Garg T, Narang RK. 2014a. A review of emerging trends in the treatment of tuberculosis. Artif Cells Nanomed Biotechnol. 1–7.
  • Kaur M, Garg T, Rath G, Goyal AK. 2014b. Current nanotechnological strategies for effective delivery of bioactive drug molecules in the treatment of tuberculosis. Crit Rev Ther Drug Carrier Syst. 31:49–88.
  • Kaur M, Malik B, Garg T, Rath G, Goyal AK. 2014c. Development and characterization of guar gum nanoparticles for oral immunization against tuberculosis. Drug Deliv.
  • Kaur N, Garg T, Goyal AK, Rath G. 2014d. Formulation, optimization and evaluation of curcumin-beta-cyclodextrin-loaded sponge for effective drug delivery in thermal burns chemotherapy. Drug Deliv. 1–10.
  • Kaur P, Garg T, Rath G, Murthy RS, Goyal AK. 2014e. Development, optimization and evaluation of surfactant-based pulmonary nanolipid carrier system of paclitaxel for the management of drug resistance lung cancer using Box-Behnken design. Drug Deliv. 1–14.
  • Kaur P, Garg T, Rath G, Murthy RS, Goyal AK. 2014f. Surfactant-based drug delivery systems for treating drug-resistant lung cancer. Drug Deliv. 1–12.
  • Kaur P, Garg T, Vaidya B, Prakash A, Rath G, Goyal AK. 2014g. Brain delivery of intranasal in situ gel of nanoparticulated polymeric carriers containing antidepressant drug: behavioral and biochemical assessment. J Drug Target. 1–12.
  • Kaur R, Garg T, Das Gupta U., Gupta P, Rath G, Goyal AK. 2014h. Preparation and characterization of spray-dried inhalable powders containing nanoaggregates for pulmonary delivery of anti-tubercular drugs. Artif Cells Nanomed Biotechnol. 1–6.
  • Kaur R, Garg T, Malik B, Gupta UD, Gupta P, Rath G, Goyal AK. 2014i. Development and characterization of spray-dried porous nanoaggregates for pulmonary delivery of anti-tubercular drugs. Drug Deliv. 1–6.
  • Kaur R, Garg T, Rath G, Goyal AK. 2014j. Advanced aerosol delivery devices for potential cure of acute and chronic diseases. Crit Rev Ther Drug Carrier Syst. 31:495–530.
  • Kaur V, Garg T, Rath G, Goyal AK. 2014k. Therapeutic potential of nanocarrier for overcoming to P-glycoprotein. J Drug Target. 1–12.
  • Malik R, Garg T, Goyal AK, Rath G. 2014. Polymeric nanofibers: targeted gastro-retentive drug delivery systems. J Drug Target. 1–16.
  • Marwah H, Garg T, Goyal AK, Rath G. 2014. Permeation enhancer strategies in transdermal drug delivery. Drug Deliv. 1–15.
  • Modgill V, Garg T, Goyal AK, Rath G. 2014a. Permeability study of ciprofloxacin from ultra-thin nanofibrous film through various mucosal membranes. Artif Cells Nanomed Biotechnol. 1–6.
  • Modgill V, Garg T, Goyal AK, Rath G. 2014b. Transmucosal Delivery of Linagliptin for the Treatment of Type- 2 Diabetes Mellitus by Ultra-Thin Nanofibers. Curr Drug Deliv.
  • Morie A, Garg T, Goyal AK, Rath G. 2014. Nanofibers as novel drug carrier - an overview. Artif Cells Nanomed Biotechnol. 1–9.
  • Narang AS, Delmarre D, Gao D. 2007. Stable drug encapsulation in micelles and microemulsions. Int J Pharm. 345:9–25.
  • Pabreja S, Garg T, Rath G, Goyal AK. 2014. Mucosal vaccination against tuberculosis using Ag85A-loaded immunostimulating complexes. Artif Cells Nanomed Biotechnol. 1–8.
  • Rohilla R, Garg T, Bariwal J, Goyal AK, Rath G. 2014a. Development, optimization and characterization of glycyrrhetinic acid-chitosan nanoparticles of atorvastatin for liver targeting. Drug Deliv. 1–8.
  • Rohilla R, Garg T, Goyal AK, Rath G. 2014b. Herbal and polymeric approaches for liver-targeting drug delivery: novel strategies and their significance. Drug Deliv. 1–17.
  • Sadtler V, Galindo-Alvarez JM, Marie–Bégué E. 2012. Low Energy Emulsification Methods for Nanoparticles Synthesis.
  • Schott H. 1985. Surfactant systems: their chemistry, pharmacy and biology. By D. Attwood and A. T. Florence. Chapman & Hall, London EC4P 4EE, United Kingdom. 1983. 794 pp. J Pharm Sci. 74:1140–1141.
  • Schulman JH, Stoeckenius W, Prince LM. 1959. Mechanism of formation and structure of micro emulsions by electron microscopy. J Phys Chem. 63:1677–1680.
  • Shalviri A, Sharma AC, Patel D, Sayani A. 2011. Low-surfactant microemulsions for enhanced topical delivery of poorly soluble drugs. J Pharm Pharm Sci. 14:315–324.
  • Sharma A, Garg T, Aman A, Panchal K, Sharma R, Kumar S, Markandeywar T. 2014a. Nanogel-an advanced drug delivery tool: Current and future. Artif Cells Nanomed Biotechnol. 1–13.
  • Sharma R, Garg T, Goyal AK, Rath G. 2014b. Development, optimization and evaluation of polymeric electrospun nanofiber: A tool for local delivery of fluconazole for management of vaginal candidiasis. Artif Cells Nanomed Biotechnol. 1–8.
  • Sharma R, Singh H, Joshi M, Sharma A, Garg T, Goyal AK, Rath G. 2014c. Recent advances in polymeric electrospun nanofibers for drug delivery. Crit Rev Ther Drug Carrier Syst. 31:187–217.
  • Shi FF, Bulkowski M, Hsieh KC. 2007. Synthesis of indium nanoclusters and formation of thin film contacts on plastic substrates for organic and flexible electronics applications. Nanotechnology. 18:265301.
  • Shinoda K, Kunieda H. 1971. Conditions to produce so-called microemulsions–factors to increase mutual solubility of oil and water by solubilizer.
  • Shinoda K, Kunieda H, Arai T, Saijo H. 1984. Principles of attaining very large solubilization (microemulsion): inclusive understanding of the solubilization of oil and water in aqueous and hydrocarbon media. J Phys Chem. 88:5126–5129.
  • Singh B, Garg T, Goyal AK, Rath G. 2014a. Recent advancements in the cardiovascular drug carriers. Artif Cells Nanomed Biotechnol. 1–10.
  • Singh H, Sharma R, Joshi M, Garg T, Goyal AK, Rath G. 2014b. Transmucosal delivery of Docetaxel by mucoadhesive polymeric nanofibers. Artif Cells Nanomed Biotechnol.
  • Singh K, Arora N, Garg T. 2012a. RFID: A Trustable Security Tool in Pharmaceutical Industry. Am J Pharm Tech Res. 2:113–127.
  • Singh K, Arora N, Garg T. 2012b. Superbug: Antimicrobial resistance due to NDM-1. Int J Institut Pharm Life sci. 2:58–66.
  • Singh O, Garg T, Rath G, Goyal AK. 2014c. Microbicides for the treatment of sexually transmitted HIVinfections. J Pharm. 1–18.
  • Xu SX, Li YC, Liu X, Mao LJ, Zhang H, Zheng XD. 2012. In vitro and in vivo antifungal activity of a water-dilutable cassia oil microemulsion against Geotrichum citri-aurantii. J Sci Food Agric. 92: 2668–2671.

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