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Fabrication and hemocompatibility assessment of novel polyurethane-based bio-nanofibrous dressing loaded with honey and Carica papaya extract for the management of burn injuries

机译:载有蜂蜜和番木瓜提取物的新型聚氨酯基生物纳米纤维敷料的制备和血液相容性评估,用于治疗烧伤

摘要

Management of burn injury is an onerous clinical task since it requires continuous monitoring and extensive usage of specialized facilities. Despite rapid improvizations and investments in burn management, >30% of victims hospitalized each year face severe morbidity and mortality. Excessive loss of body fluids, accumulation of exudate, and the development of septic shock are reported to be the main reasons for morbidity in burn victims. To assist burn wound management, a novel polyurethane (PU)-based bio-nanofibrous dressing loaded with honey (HN) and Carica papaya (PA) fruit extract was fabricated using a one-step electrospinning technique. The developed dressing material had a mean fiber diameter of 190±19.93 nm with pore sizes of 4-50 µm to support effective infiltration of nutrients and gas exchange. The successful blending of HN- and PA-based active biomolecules in PU was inferred through changes in surface chemistry. The blend subsequently increased the wettability (14%) and surface energy (24%) of the novel dressing. Ultimately, the presence of hydrophilic biomolecules and high porosity enhanced the water absorption ability of the PU-HN-PA nanofiber samples to 761.67% from 285.13% in PU. Furthermore, the ability of the bio-nanofibrous dressing to support specific protein adsorption (45%), delay thrombus formation, and reduce hemolysis demonstrated its nontoxic and compatible nature with the host tissues. In summary, the excellent physicochemical and hemocompatible properties of the developed PU-HN-PA dressing exhibit its potential in reducing the clinical complications associated with the treatment of burn injuries.
机译:烧伤的管理是一项艰巨的临床任务,因为它需要持续监控和广泛使用专门设施。尽管快速即兴创作并在烧伤管理方面进行了投资,但每年仍有30%以上的住院患者面临严重的发病率和死亡率。据报道,体液过多流失,渗出物积聚和败血性休克的发展是烧伤患者发病的主要原因。为了帮助烧伤创面处理,采用一步静电纺丝技术制备了一种新型的基于聚氨酯(PU)的生物纳米纤维敷料,其中装有蜂蜜(HN)和番木瓜(PA)果实提取物。开发的敷料材料的平均纤维直径为190±19.93 nm,孔径为4-50 µm,以支持有效的养分渗透和气体交换。通过表面化学的变化可以推断出基于HN和PA的活性生物分子在PU中的成功混合。随后,共混物增加了新型敷料的润湿性(14%)和表面能(24%)。最终,亲水性生物分子和高孔隙率的存在将PU-HN-PA纳米纤维样品的吸水能力从PU中的285.13%提高到761.67%。此外,生物纳米纤维敷料支持特定蛋白质吸附(45%),延迟血栓形成和减少溶血的能力证明了其与宿主组织的无毒和相容性。总之,已开发的PU-HN-PA敷料具有出色的理化和血液相容性,在减少烧伤治疗相关的临床并发症方面具有潜力。

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