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具有基因型枯草芽孢杆菌的纳米纤维,表现出抗菌和免疫调节活性。

Nanofibers with genotyped Bacillus strains exhibiting antibacterial and immunomodulatory activity.

机构信息

Faculty of Pharmacy, University of Ljubljana, Aškerčeva cesta 7, 1000 Ljubljana, Slovenia.

Department of Environmental Sciences, Institut "Jožef Stefan", Jamova cesta 39, 1000 Ljubljana, Slovenia.

出版信息

J Control Release. 2023 Mar;355:371-384. doi: 10.1016/j.jconrel.2023.01.082. Epub 2023 Feb 10.

Abstract

Biofilm-associated diseases such as periodontitis are widespread and challenging to treat which calls for new strategies for their effective management. Probiotics represent a promising approach for targeted treatment of dysbiosis in biofilm and modulation of host immune response. In this interdisciplinary study, nanofibers with two autochthonous Bacillus strains 27.3.Z and 25.2.M were developed. The strains were isolated from the oral microbiota of healthy individuals, and their genomes were sequenced and screened for genes associated with antimicrobial and immunomodulatory activities, virulence factors, and transferability of resistance to antibiotics. Spores of two Bacillus strains were incorporated individually or in combination into hydrophilic poly(ethylene oxide) (PEO) and composite PEO/alginate nanofibers. The nanofiber mats were characterised by a high loading of viable spores (> 7 log CFU/mg) and they maintained viability during electrospinning and 6 months of storage at room temperature. Spores were rapidly released from PEO nanofibers, while presence of alginate in the nanofibers prolonged their release. All formulations exhibited swelling, followed by transformation of the nanofiber mat into a hydrogel and polymer erosion mediating spore release kinetics. The investigated Bacillus strains released metabolites, which were not cytotoxic to peripheral blood mononuclear cells (PBMCs) in vitro. Moreover, their metabolites exhibited antibacterial activity against two periodontopathogens, an antiproliferative effect on PBMCs, and inhibition of PBMC expression of proinflammatory cytokines. In summary, the developed nanofiber-based delivery system represents a promising therapeutic approach to combat biofilm-associated disease on two fronts, namely via modulation of the local microbiota with probiotic bacteria and host immune response with their metabolites.

摘要

生物膜相关疾病(如牙周炎)广泛存在且难以治疗,因此需要新的策略来有效管理。益生菌代表了一种针对生物膜中失调和宿主免疫反应调节的有前途的靶向治疗方法。在这项跨学科研究中,开发了两种本土芽孢杆菌 27.3.Z 和 25.2.M 的纳米纤维。这些菌株是从健康个体的口腔微生物群中分离出来的,它们的基因组被测序,并筛选出与抗菌和免疫调节活性、毒力因子以及抗生素耐药性转移相关的基因。两种芽孢杆菌的孢子分别或组合掺入亲水性聚环氧乙烷 (PEO) 和复合 PEO/海藻酸钠纳米纤维中。纳米纤维垫的特点是活孢子的高负载量(>7 log CFU/mg),并且在静电纺丝和室温下储存 6 个月期间保持活力。PEO 纳米纤维中迅速释放孢子,而海藻酸钠的存在则延长了它们的释放时间。所有配方均表现出溶胀,随后纳米纤维垫转变为水凝胶和聚合物侵蚀介导的孢子释放动力学。研究的芽孢杆菌释放代谢产物,对体外外周血单核细胞 (PBMC) 无细胞毒性。此外,它们的代谢产物对两种牙周病原体具有抗菌活性,对 PBMC 具有抗增殖作用,并抑制 PBMC 促炎细胞因子的表达。总之,开发的基于纳米纤维的递送系统代表了一种有前途的治疗方法,可以从两个方面对抗生物膜相关疾病,即通过益生菌调节局部微生物群和代谢产物调节宿主免疫反应。

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