Cellulolytic characterization of the rumen-isolated Acinetobacter pittii ROBY and design of a potential controlled-release drug delivery system

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Abstract

A novel cellulolytic bacterial strain, ROBY, was isolated from a bovine rumen sample using the enrichment culture method. This isolate was found to be Acinetobacter pittii, with >99 % similarity according to 16S rRNA gene sequence analysis. The potential use of this strain in combination with doxorubicin (Dox)-integrated cellulose nanoparticles (Dox-CNPs) was evaluated as a proof-of-concept study for the further development of this approach as a novel controlled-release drug delivery strategy. The isolate can utilize CNPs as the sole carbon source for growth and degrade both Dox-CNPs and empty CNPs with high efficiency. Extracellular cellulases isolated from bacteria may also be used to trigger Dox release. The results also demonstrated that the release of Dox into the environment due to nanoparticle degradation in the samples incubated with Dox-CNPs significantly affected bacterial cell viability (∼75 % decrease), proving the release of Dox due to bacterial cellulase activity and suggesting the great potential of this approach for further development.

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瘤胃分离出的皮氏不动杆菌 ROBY 的纤维素分解特性及潜在控释给药系统的设计
利用富集培养法,从牛瘤胃样本中分离出了一种新型纤维素分解菌株 ROBY。根据 16S rRNA 基因序列分析,该分离菌株为皮氏不动杆菌(Acinetobacter pittii),相似度达 99%。作为一项概念验证研究,对该菌株与多柔比星(Dox)整合纤维素纳米颗粒(Dox-CNPs)结合使用的潜力进行了评估,以便进一步开发这种新型控释给药策略。该分离物能利用 CNPs 作为生长的唯一碳源,并能高效降解 Dox-CNPs 和空 CNPs。从细菌中分离出的胞外纤维素酶也可用于触发 Dox 的释放。结果还表明,在与 Dox-CNPs 培养的样品中,由于纳米颗粒降解而释放到环境中的 Dox 会显著影响细菌细胞的活力(降低 75%),这证明了 Dox 的释放是由于细菌纤维素酶的活性,并表明这种方法具有进一步开发的巨大潜力。
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