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四环素在缓释系统中应用的稳定性研究。

Stability study of tetracyclines with respect to their use in slow release systems.

作者信息

Honnorat-Benabbou V C, Lebugle A A, Sallek B, Duffaut-Lagarrigue D

机构信息

Laboratoire de Parondotologie, Faculté d'Odontologie, 3 chemin des Maraîchers, 31062 Toulouse cedex, France.

出版信息

J Mater Sci Mater Med. 2001 Feb;12(2):107-10. doi: 10.1023/a:1008909708650.

Abstract

In the aim of optimizing implantable slow-release systems for the local delivery of antibiotics, the stability of tetracyclines was studied in water at 37 degrees C or under gamma irradiation. Four tetracyclines in their chlorhydrate form were chosen depending on their hydrophilic/hydrophobic balance. Their chemical stability was established by HPLC, and biological stability by bacteriological tests. It was shown that methacycline and doxycycline are stable in water for three days. Tetracycline and minocycline exhibit limited decomposition (less than 10%) under the same conditions. So, in vitro drug release for at most three days, appears to be possible. Besides, all four tetracyclines either in powdered form or included in a calcium phosphate matrix, kept their bacteriological activity after gamma irradiation at 32.4 kGr. Consequently, the in vivo study of these implantable slow drug release systems, can be carried out.

摘要

为了优化用于局部递送抗生素的可植入缓释系统,研究了四环素在37℃水中或γ射线照射下的稳定性。根据亲水性/疏水性平衡选择了四种盐酸盐形式的四环素。通过高效液相色谱法确定其化学稳定性,通过细菌学试验确定其生物学稳定性。结果表明,甲烯土霉素和强力霉素在水中稳定三天。四环素和米诺环素在相同条件下表现出有限的分解(小于10%)。因此,体外药物释放最多三天似乎是可能的。此外,所有四种四环素无论是粉末形式还是包含在磷酸钙基质中,在32.4kGr的γ射线照射后都保持其细菌学活性。因此,可以对这些可植入缓释药物系统进行体内研究。

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