The Use of Calcium Phosphate-Based Starter Pellets for the Preparation of Sprinkle IR MUPS Formulation of Rosuvastatin Calcium
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P. Ciosek-Skibińska | G. Garbacz | J. Paszkowska | D. Zakowiecki | T. Hess | K. Cal | Barbara Mikolaszek | J. Lenik | Markos Papaioannou | Helene Wall | S. Romanova
[1] A. Nokhodchi,et al. Different trends for preparation of budesonide pellets with enhanced dissolution rate , 2022, Advanced Powder Technology.
[2] I. Antal,et al. Review on Starter Pellets: Inert and Functional Cores , 2022, Pharmaceutics.
[3] G. Garbacz,et al. Directly compressible formulation of immediate release rosuvastatin calcium tablets stabilized with tribasic calcium phosphate , 2022, Pharmaceutical development and technology.
[4] G. Garbacz,et al. Development of a Biphasic-Release Multiple-Unit Pellet System with Diclofenac Sodium Using Novel Calcium Phosphate-Based Starter Pellets , 2021, Pharmaceutics.
[5] D. Benaiges,et al. Hydrophilic or Lipophilic Statins? , 2021, Frontiers in Cardiovascular Medicine.
[6] Hui Zhang,et al. Taste Masking Study Based on an Electronic Tongue: the Formulation Design of 3D Printed Levetiracetam Instant-Dissolving Tablets , 2021, Pharmaceutical Research.
[7] Shailesh Thirumaleshwar,et al. A Comprehensive Review on Pellets as a Dosage Form in Pharmaceuticals. , 2021, Current drug targets.
[8] H. Smyth,et al. A Difficult Pill to Swallow: An Investigation of the Factors Associated with Medication Swallowing Difficulties , 2021, Patient preference and adherence.
[9] G. Garbacz,et al. Preparation of delayed-release multiparticulate formulations of diclofenac sodium and evaluation of their dissolution characteristics using biorelevant dissolution methods , 2020 .
[10] M. Sznitowska,et al. Comparison of Different Liquid and Semisolid Vehicles Selected for Oral Administration of Pellets and Minitablets with Diazepam: In Vitro Investigation , 2020, AAPS PharmSciTech.
[11] A. Sahebkar,et al. The effects of statins on dental and oral health: a review of preclinical and clinical studies , 2020, Journal of Translational Medicine.
[12] Dae-Duk Kim,et al. Sprinkle formulations—A review of commercially available products , 2019, Asian journal of pharmaceutical sciences.
[13] Wojciech Wróblewski,et al. Critical Evaluation of Laboratory Potentiometric Electronic Tongues for Pharmaceutical Analysis—An Overview , 2019, Sensors.
[14] S. Neau,et al. Directly compressed rosuvastatin calcium tablets that offer hydrotropic and micellar solubilization for improved dissolution rate and extent of drug release , 2019, Saudi pharmaceutical journal : SPJ : the official publication of the Saudi Pharmaceutical Society.
[15] P. Ciosek-Skibińska,et al. Ethylcellulose in Organic Solution or Aqueous Dispersion Form in Designing Taste-Masked Microparticles by the Spray Drying Technique with a Model Bitter Drug: Rupatadine Fumarate , 2019, Polymers.
[16] D. Smithard,et al. Oropharyngeal dysphagia and its related health problems in Iranian elderly people: A scope of work for the future , 2018, European Journal of Integrative Medicine.
[17] Marta Podrażka,et al. Electronic Tongue—A Tool for All Tastes? , 2017, Biosensors.
[18] Nrupa G Patel,et al. MULTIPLE UNIT PELLET SYSTEM (MUPS TECHNOLOGY) FOR DEVELOPMENT OF MODIFIED RELEASE FAST DISINTEGRATING TABLETS: A REVIEW , 2017 .
[19] Patrycja Ciosek,et al. Influence of dissolution-modifying excipients in various pharmaceutical formulations on electronic tongue results. , 2017, Talanta.
[20] F. Shakeel,et al. Solubility of rosuvastatin calcium in different neat solvents at different temperatures , 2016 .
[21] Performance of MCC Spheres and Sugar Spheres in a Multi-particalute Omeprazole Formultaion , 2016 .
[22] Mohammed Maniruzzaman,et al. An in‐vitro–in‐vivo taste assessment of bitter drug: comparative electronic tongues study , 2015, The Journal of pharmacy and pharmacology.
[23] N. Bhattacharyya,et al. The Prevalence of Dysphagia among Adults in the United States , 2014, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.
[24] P. Chaudhari,et al. Application of liquisolid technology for enhancing solubility and dissolution of rosuvastatin. , 2014, Advanced pharmaceutical bulletin.
[25] W. Haefeli,et al. Difficulties swallowing solid oral dosage forms in a general practice population: prevalence, causes, and relationship to dosage forms , 2013, European Journal of Clinical Pharmacology.
[26] D. Patel,et al. INTERNATIONAL JOURNAL OF DRUG FORMULATION AND RESEARCH CONCERNS OF THE AGENCY (US FDA) AND INDUSTRIES ON SIZE OF BEADS IN DRUG PRODUCTS LABELED FOR SPRINKLE , 2011 .
[27] Patrycja Ciosek,et al. Electronic tongue for the detection of taste-masking microencapsulation of active pharmaceutical substances. , 2010, Bioelectrochemistry.
[28] Sunil B Jaiswal,et al. A flexible technology for modified-release drugs: multiple-unit pellet system (MUPS). , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[29] D. Kočar,et al. Stability studies of cholesterol lowering statin drugs in aqueous samples using HPLC and LC–MS , 2010 .
[30] K. Yuen,et al. Influence of crug solubility, binders and pellet size in formulating sustained release pellets , 2010 .
[31] Montserrat Pascual Cruz,et al. Adverse side effects of statins in the oral cavity. , 2008, Medicina oral, patologia oral y cirugia bucal.
[32] ايلديكو مونوستوري,et al. Pharmaceutical Compositions Containing Rosuvastatin Calcium , 2007 .
[33] M. Crary,et al. Pill swallowing by adults with dysphagia. , 2005, Archives of otolaryngology--head & neck surgery.
[34] L. Chan,et al. Coating of multiparticulates for sustained release , 2005 .
[35] R. Remmel,et al. Comparison of sprinkle versus syrup formulations of valproate for bioavailability, tolerance, and preference. , 1992, The Journal of pediatrics.