Journal article Open Access

Microfluidics based manufacture of liposomes simultaneously entrapping hydrophilic and lipophilic drugs

Sameer Joshi; Maryam T. Hussain; Carla B. Roces; Giulia Anderluzzi; Elisabeth Kastner; Stefano Salmaso; Daniel J. Kirby; Yvonne Perrie


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    "description": "<p>Despite the substantial body of research investigating the use of liposomes, niosomes and other bilayer vesicles for drug delivery, the translation of these systems into licensed products remains limited. Indeed, recent shortages in the supply of liposomal products demonstrate the need for new scalable production methods for liposomes. Therefore, the aim of our research has been to consider the application of microfluidics in the manufacture of liposomes containing either or both a water soluble and a lipid soluble drug to promote co-delivery of drugs. \u00a0For the first time, we demonstrate the entrapment of a hydrophilic and a lipophilic drug (metformin and glipizide respectively) both individually and in combination using a scalable microfluidics manufacturing system. In terms of the operating parameters, the choice of solvents, lipid concentration and aqueous:solvent ratio all impact on liposome size with vesicle diameter ranging from ~90 to 300 nm. In terms of drug loading, microfluidics production promoted high loading within \u00a0~100 nm vesicles for both the water soluble drug (20 - 25% of initial amount added) and the bilayer embedded drug (40 \u2013 42% of initial amount added) with co-loading of the drugs making no impact on entrapment efficacy. However, co-loading of glipizide and metformin within the same liposome formulation did impact on the drug release profiles; in both instances the presence of both drugs in the one formulation promoted faster (up to 2 fold) release compared to liposomes containing a single drug alone. \u00a0Overall, these results demonstrate the application of microfluidics to prepare liposomal systems incorporating either or both an aqueous soluble drug and a bilayer loaded drug.</p>", 
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    "title": "Microfluidics based manufacture of liposomes simultaneously entrapping hydrophilic and lipophilic drugs", 
    "journal": {
      "volume": "514", 
      "issue": "1", 
      "pages": "160\u2013168", 
      "title": "International Journal of Pharmaceutics"
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    "keywords": [
      "liposomes", 
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    "publication_date": "2016-11-15", 
    "creators": [
      {
        "affiliation": "Aston Pharmacy School, Life and Health Sciences, Aston University, Birmingham, UK. B4 7ET", 
        "name": "Sameer Joshi"
      }, 
      {
        "affiliation": "Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, 161 7 Cathedral Street, Glasgow, UK. G4 0RE", 
        "name": "Maryam T. Hussain"
      }, 
      {
        "affiliation": "Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, 161 7 Cathedral Street, Glasgow, UK. G4 0RE", 
        "name": "Carla B. Roces"
      }, 
      {
        "affiliation": "Department of Pharmaceutical and Pharmacological Sciences, University of Padova, Via 9 Marzolo 5, 35131 Padova - Italy", 
        "name": "Giulia Anderluzzi"
      }, 
      {
        "affiliation": "Aston Pharmacy School, Life and Health Sciences, Aston University, Birmingham, UK. B4 7ET", 
        "name": "Elisabeth Kastner"
      }, 
      {
        "affiliation": "Department of Pharmaceutical and Pharmacological Sciences, University of Padova, Via 9 Marzolo 5, 35131 Padova - Italy", 
        "name": "Stefano Salmaso"
      }, 
      {
        "affiliation": "Aston Pharmacy School, Life and Health Sciences, Aston University, Birmingham, UK. B4 7ET", 
        "name": "Daniel J. Kirby"
      }, 
      {
        "affiliation": "Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, 161 7 Cathedral Street, Glasgow, UK. G4 0RE", 
        "name": "Yvonne Perrie"
      }
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