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1.
Pharm Dev Technol ; 21(8): 921-932, 2016 Dec.
Article in English | MEDLINE | ID: mdl-26334480

ABSTRACT

The objective of this study was to develop and evaluate a novel microemulsion based gel formulation containing tazarotene for targeted topical therapy of acne. Psudoternary phase diagrams were constructed to obtain the concentration range of oil, surfactant, and co-surfactant for microemulsion formation. The optimized microemulsion formulation containing 0.05% tazarotene was formulated by spontaneous microemulsification method consisting of 10% Labrafac CC, mixed emulsifiers 15% Labrasol-Cremophor-RH 40 (1:1), 15% Capmul MCM, and 60% distilled water (w/w) as an external phase. All plain and tazarotene-loaded microemulsions were clear and showed physicochemical parameters for desired topical delivery and stability. The permeation profiles of tazarotene through rat skin from optimized microemulsion formulation followed the Higuchi model for controlled permeation. Microemulsion-based gel was prepared by incorporating Carbopol®971P NF in optimized microemulsion formulation having suitable skin permeation rate and skin uptake. Microemulsion-based gel showed desired physicochemical parameters and demonstrated advantage over marketed formulation in improving the skin tolerability of tazarotene indicating its potential in improving its topical delivery. The developed microemulsion-based gel may be a potential drug delivery vehicle for targeted topical delivery of tazarotene in the treatment of acne.


Subject(s)
Acne Vulgaris/drug therapy , Emulsions/administration & dosage , Emulsions/chemistry , Gels/administration & dosage , Gels/chemistry , Nicotinic Acids/administration & dosage , Nicotinic Acids/chemistry , Animals , Chemistry, Pharmaceutical/methods , Drug Delivery Systems/methods , Drug Stability , Excipients/chemistry , Male , Rats , Rats, Wistar , Skin/drug effects , Skin Absorption/drug effects , Surface-Active Agents/chemistry
2.
Drug Deliv ; 23(1): 207-13, 2016.
Article in English | MEDLINE | ID: mdl-24825492

ABSTRACT

This study reports the development and evaluation of Carbamazepine (CMP)-loaded microemulsions (CMPME) for intranasal delivery in the treatment of epilepsy. The CMPME was prepared by the spontaneous emulsification method and characterized for physicochemical parameters. All formulations were radiolabeled with (99m)Tc (technetium) and biodistribution of CMP in the brain was investigated using Swiss albino rats. Brain scintigraphy imaging in rats was also performed to determine the uptake of the CMP into the brain. CMPME were found crystal clear and stable with average globule size of 34.11 ± 1.41 nm. (99m)Tc-labeled CMP solution (CMPS)/CMPME/CMP mucoadhesive microemulsion (CMPMME) were found to be stable and suitable for in vivo studies. Brain/blood ratio at all sampling points up to 8 h following intranasal administration of CMPMME compared to intravenous CMPME was found to be 2- to 3-fold higher signifying larger extent of distribution of the CMP in brain. Drug targeting efficiency and direct drug transport were found to be highest for CMPMME post-intranasal administration compared to intravenous CMP. Rat brain scintigraphy also demonstrated higher intranasal uptake of the CMP into the brain. This investigation demonstrates a prompt and larger extent of transport of CMP into the brain through intranasal CMPMME, which may prove beneficial for treatment of epilepsy.


Subject(s)
Anticonvulsants/administration & dosage , Anticonvulsants/pharmacokinetics , Brain/metabolism , Carbamazepine/administration & dosage , Carbamazepine/pharmacokinetics , Administration, Intranasal , Administration, Intravenous , Animals , Brain/diagnostic imaging , Chemistry, Pharmaceutical , Drug Delivery Systems , Drug Stability , Emulsions , Male , Particle Size , Radionuclide Imaging , Rats , Rats, Wistar , Technetium , Tissue Adhesives , Tissue Distribution
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