Effect of betamethasone phosphate loaded polymeric nanoparticles on a murine asthma model |
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Authors: | Yukiko Matsuo Tsutomu Ishihara Ken-ichi Miyamoto Naomi Yamashita |
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Affiliation: | a Graduate School of Natural Science and Technology, Kanazawa University, Japan b Department of Pharmacotherapy, Research Institute of Pharmaceutical Sciences, Musashino University, Tokyo 202-8585, Japan c Research Center for Medical Sciences, Jikei University School of Medicine, 3-25-8 Nishi-Shimbashi, Minato-ku, Tokyo 105-8461, Japan d Department of Clinical Drug Informatics, Faculty of Pharmaceutical Sciences, Kanazawa University, Kanazawa, Japan e Department of Pharmacy, Kanazawa University Hospital, 13-1 Takara-machi, Kanazawa 9208641, Japan |
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Abstract: | Although inhaled steroids are the treatment of first choice to control asthma, administration of systemic steroids is required for treatment of asthmatic exacerbation and intractable asthma. To improve efficacy and reduce side effects, we examine the effects of betamethasone disodium phosphate (BP) encapsulated in biocompatible, biodegradable blended nanoparticles (stealth nanosteroids) on a murine model of asthma. These stealth nanosteroids were found to accumulate at the site of airway inflammation and exhibit anti-inflammatory activity. Significant decreases in BALF eosinophil number were maintained for 7 days with a single injection of nanosteroids containing 40 μg BP. Airway responsiveness was also attenuated by the injection of stealth nanosteroids. A single injection of 40 μg of free BP and 8 μg of free BP once daily for 5 days did not show any significant effects. We conclude that stealth nanosteroids achieve prolonged and higher benefits at the site of airway inflammation compared to free steroids. |
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Keywords: | BP, betamethasone disodium 21-phosphate PLA, poly smallcaps" >d, smallcaps" >l-lactic acid PEG, polyethylene glycol DEA, diethanolamine EE, encapsulation efficiency Cy, Cyanidin TR-FIA, time-resolved fluoroimmunoassay HE, hematoxylin and eosin staining OD, optical density Raw, airway resistance Cdyn, dynamic compliance |
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