2020
DOI: 10.3390/pharmaceutics12090870
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Lidocaine-Loaded Solid Lipid Microparticles (SLMPs) Produced from Gas-Saturated Solutions for Wound Applications

Abstract: The delivery of bioactive agents using active wound dressings for the management of pain and infections offers improved performances in the treatment of wound complications. In this work, solid lipid microparticles (SLMPs) loaded with lidocaine hydrochloride (LID) were processed and the formulation was evaluated regarding its ability to deliver the drug at the wound site and through the skin barrier. The SLMPs of glyceryl monostearate (GMS) were prepared with different LID contents (0, 1, 2, 4, and 10 wt.%) us… Show more

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Cited by 21 publications
(9 citation statements)
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“…The thermogram of GMS and lidocaine showed a sharp endothermic peak at 65 °C and 70 °C, which was indicative of the melting and crystalline nature of GMS and lidocaine. This is similar to the previously reported melting temperature (Tm) values of GMS and lidocaine [ 48 ]. The thermogram of the L2 and L3 ointment, made with 5% and 10% GMS, showed a widened and split endothermic peak from 50 °C to 60 °C.…”
Section: Resultssupporting
confidence: 91%
“…The thermogram of GMS and lidocaine showed a sharp endothermic peak at 65 °C and 70 °C, which was indicative of the melting and crystalline nature of GMS and lidocaine. This is similar to the previously reported melting temperature (Tm) values of GMS and lidocaine [ 48 ]. The thermogram of the L2 and L3 ointment, made with 5% and 10% GMS, showed a widened and split endothermic peak from 50 °C to 60 °C.…”
Section: Resultssupporting
confidence: 91%
“…NPs Inorganic NPs Metal nanoparticles: CuNPs, 87 AgNPs, 88,89 and Cerium Oxide NPs 90 Carbon-based NPs 91,92 Quantum dots: self-assembled GQDs, 93 Orange-emissive carbon quantum dots 94 Organic NPs Dendrimers: act as antibacterial agents 95,96 Hydrogels: chitosan, 97 PVA, 98 and PEG 99 Nano-emulsions can improve the solubility and reduce the enzymatic hydrolysis of drugs 100 Liposomal NPs: solid lipid NPs 101,102 and nanostructured lipid carriers 103,104 Polymer NPs PCL, 69 PEG, 68 and photothermal NPs 105 Smart stimuli-responsive nanostructures MMP9-responsive, 106 pH-responsive, 107 immune responsive, 72 and thermosensitive nanostructures 99 Nanofibers (NFs) NFs can increase the transfer of various molecules and perform diverse functions 108 Microspheres coated with nanocomposites PCL microspheres, 86 chitin microspheres, 109 bacterial cellulose microspheres, 110 and gelatin microspheres 111 3D-printed scaffolds Typical three-dimensional porous matrix 112 Engineered films Agar-glycerol-sericin films 113,114 Abbreviations: GQD, graphene quantum dots; MMP, matrix metalloproteinase.…”
Section: Category Examplesmentioning
confidence: 99%
“…To determine the selecting, the most appropriate model for predicting the mechanism of drug release, the dissolution profiles of all batches were fitted to zeroorder [1], first-order [2], Higuchi [3], Hixson-Crowell [4], and Korsmeyer-Peppas [5] kinetic models. 26…”
Section: Kinetic Modeling Of Drug Releasementioning
confidence: 99%
“…2 Solid lipid microparticles have a better physicochemical stability than other lipid-based drug carriers, such as liposomes, and are easier to sterilize and scale-up. 3 The formulation of solid lipid microparticles (SLMs) for effective oral administration of biological medicines begins with the selection of appropriate lipid excipients with the right hydrophobicity and lipolysis propensity. 4 Zidovudine is a synthetic nucleoside analogue that is increasingly being employed as the cornerstone of antiretroviral therapy for HIV infection.…”
Section: Introductionmentioning
confidence: 99%