首页> 外文期刊>Journal of biomaterials and nanobiotechnology. >Antimicrobial Activity of Minocycline-Loaded Genipin-Crosslinked Nano-Fibrous Chitosan Mats for Guided Tissue Regeneration
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Antimicrobial Activity of Minocycline-Loaded Genipin-Crosslinked Nano-Fibrous Chitosan Mats for Guided Tissue Regeneration

机译:载有米诺环素的Genipin交联的纳米纤维壳聚糖垫对组织再生的抗菌活性。

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Antimicrobial delivery has been advocated for guided tissue regeneration (GTR) or guided bone regeneration (GBR) therapies involving patients with aggressive or unresolved periodontitis/peri-implantitis. Electrospun chitosan membranes demonstrate several advantages over traditional GTR barrier membranes because they stimulate healing, mimic the topology of the extracellular matrix, and allow for diffusion of nutrients and wastes into/out of the graft site, and were shown to stimulate bone formation in a rabbit calvarial criticalsize defect model. Previously, we have shown improvements in mechanical properties and degradation kinetics by crosslinking electrospun membranes with 5 mM or 10 mM genipin. We have also demonstrated the ability of elecrospun chitosan membranes to inhibit lippopolysaccharide (LPS)-induced monocyte activation. In this study, minocycline was incorporated into the chitosan membrane by passive absorption at 5 or 10 mg/mL. The minocycline-loaded membranes and control membranes (carrier only) were tested against Porphyromonas gingivalis (P. gingivalis) by repeated zone of inhibition (ZOI) measurements. Testing showed that uncrosslinked and genipin-crosslinked membranes have similar capacity to absorb aqueous solutions (swelling ratio 1.7 - 2.2). Minocycline loading resulted in bacterial inhibition for up to 8 days from crosslinked membranes (with 11 mm initial ZOI) whereas uncrosslinked membranes loaded with minocycline only inhibited bacteria for 4 days (with 8 mm initial ZOI). These in vitro results suggest that genipin-crosslinked electrospun chitosan membranes loaded with minocycline may be able to reduce early bacterial contamination of GTR graft sites.
机译:对于涉及侵略性或未解决的牙周炎/牙周炎的患者,已建议采用抗菌递送进行引导组织再生(GTR)或引导骨再生(GBR)治疗。静电纺丝的壳聚糖膜比传统的GTR屏障膜具有多个优势,因为它们刺激愈合,模仿细胞外基质的拓扑结构,并允许营养物质和废物扩散到移植部位,也可以刺激兔子的骨形成。颅骨临界尺寸缺陷模型。以前,我们已经显示出通过用5 mM或10 mM的Genipin交联静电纺丝膜可以改善机械性能和降解动力学。我们还证明了电纺壳聚糖膜抑制脂多糖(LPS)诱导的单核细胞活化的能力。在这项研究中,通过以5或10 mg / mL的被动吸收将米诺环素掺入壳聚糖膜中。通过重复抑制区(ZOI)测量,测试了加载了米诺环素的膜和对照膜(仅载体)对牙龈卟啉单胞菌(P. gingivalis)的影响。测试表明,未交联的膜片和与Genipin交联的膜具有类似的吸收水溶液的能力(膨胀比1.7-2.2)。 Minocycline负载可导致交联膜(初始ZOI为11毫米)对细菌的抑制作用长达8天,而负载米诺环素的未交联膜仅抑制细菌4天(初始ZOI为8毫米)。这些体外结果表明,载有米诺环素的Genipin交联的静电纺丝壳聚糖膜可能能够减少GTR移植部位的早期细菌污染。

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