论文标题

电纺纳米山脉纤维蛋白膜:一个用于生物传感和伤口愈合应用的多功能平台

Electrospun nanodiamond-silk fibroin membranes: a multifunctional platform for biosensing and wound healing applications

论文作者

Khalid, Asma, Bai, Dongbi, Abraham, Amanda, Jadhav, Amit, Linklater, Denver, Matusica, Alex, Nguyen, Duy, Murdoch, Billy James, Zakhartchouk, Nadia, Dekiwadia, Chaitali, Reineck, Philipp, Simpson, David, Vidanapathirana, Achini K., Houshyar, Shadi, Bursill, Christina A., Ivanova, Elena, Gibson, Brant

论文摘要

下一代伤口护理技术能够诊断伤口参数,促进健康的细胞生长并降低致病性感染,将为患者提供改进的护理标准和加速伤口修复。温度是特定于慢性伤口的指示生物标志物之一。这项工作报告了一个混合,多功能的光学平台:纳米原子膜膜,作为能够温度传感和伤口愈合的生物启发的敷料。杂种是通过静电纺丝制造的,并形成高孔隙率的亚微米纤维膜。丝绸纤维能够补偿伤口部位缺乏细胞外基质,从而支撑伤口愈合。纳米座(NDS)中带负电荷的氮空位(NV-)颜色中心具有光学检测到的磁共振(ODMR)特性,并充当荧光纳米级温度计,能够感知与伤口中感染或炎症相关的温度变化,而无需物理脱落。我们的结果表明,混合ND-SILK膜中ND的存在改善了丝纤维的热稳定性。嵌入在丝绸纤维中的NDS中的NV颜色中心表现出保留良好的荧光和ODMR。使用NV-中心作为荧光纳米级温度计,我们在细胞培养的ND-SILK膜上在一系列温度下(包括生物学相关的温度窗口)实现了温度感测。对于杂种,观察到了NV-中心温度灵敏度的增强。在鼠伤口愈合模型中进一步测试了膜,并显示出生物相容性和等效伤口闭合率作为对照伤口。此外,混合ND-SILK膜显示出选择性的防污和杀菌性倾向,用于革兰氏阴性假单胞菌和大肠杆菌。

Next generation wound care technology capable of diagnosing wound parameters, promoting healthy cell growth and reducing pathogenic infections noninvasively will provide patients with an improved standard of care and an accelerated wound repair. Temperature is one of the indicating biomarkers specific to chronic wounds. This work reports a hybrid, multifunctional optical platform: nanodiamond-silk membranes as bioinspired dressings capable of temperature sensing and wound healing. The hybrid was fabricated through electrospinning and formed sub-micron fibrous membranes with high porosity. The silk fibres are capable of compensating for the lack of extracellular matrix at the wound site, supporting the wound healing. The negatively charged nitrogen vacancy (NV-) color centres in nanodiamonds (NDs) exhibit optically detected magnetic resonance (ODMR) properties and act as fluorescent nanoscale thermometers, capable of sensing temperature variations associated to the presence of infection or inflammation in a wound, without physically removing the dressing. Our results show that the presence of NDs in the hybrid ND-silk membranes improve the thermal stability of silk fibres. The NV- color centres in NDs embedded in silk fibres exhibit well-retained fluorescent and ODMR. Using the NV- centres as fluorescent nanoscale thermometers, we achieved temperature sensing at a range of temperatures, including the biologically relevant temperature window, on cell-cultured ND-silk membranes. Enhancement in the temperature sensitivity of the NV- centres was observed for the hybrids. The membranes were further tested in vivo in a murine wound healing model and demonstrated biocompatibility and equivalent wound closure rates as the control wounds. Additionally, the hybrid ND-silk membranes showed selective antifouling and biocidal propensity toward Gram-negative Pseudomonas aeruginosa and Escherichia coli.

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