Thiolated Chitosan Nanoparticles as an Oral Delivery System for Amikacin: In Vitro and Ex Vivo Evaluations
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作者:
Atyabi, F.
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Med Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, Iran
Med Sci Univ Tehran, Med Nanotechnol Res Ctr, Tehran 141556451, IranMed Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, Iran
Atyabi, F.
[1
,2
]
Talaie, F.
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Med Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, IranMed Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, Iran
Talaie, F.
[1
]
Dinarvand, R.
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Med Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, Iran
Med Sci Univ Tehran, Med Nanotechnol Res Ctr, Tehran 141556451, IranMed Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, Iran
Dinarvand, R.
[1
,2
]
机构:
[1] Med Sci Univ Tehran, Fac Pharm, Novel Drug Delivery Syst Lab, Tehran 141556451, Iran
[2] Med Sci Univ Tehran, Med Nanotechnol Res Ctr, Tehran 141556451, Iran
The purpose of this study was the synthesis of two thiol conjugated Chitosan polymers, and evaluation of the potential of Thiomer nanoparticle formulation as a carrier for oral delivery system. Mediated by EDAC (Ethylene-3-(3-di-methylaminopropyl)-carbodiimide), either N-acetyl Cysteine (NAC) or N-acetyl D-penicillamine (NAP) were covalently attached to Chitosan. The success of the synthesis was demonstrated by comparing FTIR spectra. lodometric titration demonstrated that depending on the pH value of the synthesis medium, the Thiomers display 250 +/- 30 mu Mol and 300 +/- 20 mu Mol thiol groups per gram of polymer respectively. The interaction between mucin and Thiomers, compared to mucin and Chitosan was studied for assessment of mucoadhesion properties of synthesized polymers. This interaction was determined by the measurement of the amount of mucin adsorbed on Chitosan and the conjugated polymers. Rotating cylinder method demonstrated an average of 20 times improvement in mucoadhesion of Thiomers compared to the unmodified polymer. Chitosan and Thiomer nanoparticles were formulated by two methods; TPP and Sodium Sulfate gelation. SEM micrographs and data achieved by a Malvern nano/zetasizer show nanoparticles formed by TPP gelation have a mean size of 150 +/- 15 nm compared to 300 +/- 25 nm sized nanoparticles obtained by Sodium sulfate gelation. TPP gelation yields smaller, more spherical shaped nanoparticles with a smaller range of size distribution. Amikacin loaded nanoparticles with an average size of 280 nm were prepared by TPP gelation in which disulfide bond formation was achieved by a time dependent oxidation process. In vitro studies were carried out; a recovery rate of 33% and a drug entrapment of 25% were achieved. The amount of release was determined during 18 hr in a carefully prepared media. The permeation time across a biological membrane was observed to be about 150 minutes. Microbiological tests were carried out on two microorganisms; Pseudomona aeruginosa and Staphylococcus aureus to further confirm the amount of Amikacin inside drug loaded nanoparticles.