Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York, USA.
Am J Pathol. 2012 Apr;180(4):1465-73. doi: 10.1016/j.ajpath.2011.12.013. Epub 2012 Feb 3.
Wound healing is a complex process that involves coordinated interactions between diverse immunological and biological systems. Long-term wounds remain a challenging clinical problem, affecting approximately 6 million patients per year, with a high economic impact. To exacerbate the problem, these wounds render the individual susceptible to life-threatening microbial infections. Because current therapeutic strategies have proved suboptimal, it is imperative to focus on new therapeutic approaches and the development of technologies for both short- and long-term wound management. In recent years, nitric oxide (NO) has emerged as a critical molecule in wound healing, with NO levels increasing rapidly after skin damage and gradually decreasing as the healing process progresses. In this study, we examined the effects of a novel NO-releasing nanoparticle technology on wound healing in mice. The results show that the NO nanoparticles (NO-np) significantly accelerated wound healing. NO-np modified leukocyte migration and increased tumor growth factor-β production in the wound area, which subsequently promoted angiogenesis to enhance the healing process. By using human dermal fibroblasts, we demonstrate that NO-np increased fibroblast migration and collagen deposition in wounded tissue. Together, these data show that NO-releasing nanoparticles have the ability to modulate and accelerate wound healing in a pleiotropic manner.
伤口愈合是一个复杂的过程,涉及多种免疫和生物学系统的协调相互作用。长期伤口仍然是一个具有挑战性的临床问题,每年影响大约 600 万患者,具有很高的经济影响。更糟糕的是,这些伤口使个体容易受到危及生命的微生物感染。由于目前的治疗策略被证明并不理想,因此必须专注于新的治疗方法和技术的开发,以实现短期和长期的伤口管理。近年来,一氧化氮(NO)已成为伤口愈合的关键分子,皮肤损伤后 NO 水平迅速增加,随着愈合过程的进行逐渐降低。在这项研究中,我们研究了一种新型的 NO 释放纳米颗粒技术对小鼠伤口愈合的影响。结果表明,NO 纳米颗粒(NO-np)显著加速了伤口愈合。NO-np 修饰了白细胞在伤口区域的迁移并增加了肿瘤生长因子-β的产生,从而促进了血管生成以增强愈合过程。通过使用人真皮成纤维细胞,我们证明了 NO-np 增加了受伤组织中成纤维细胞的迁移和胶原蛋白的沉积。这些数据表明,NO 释放纳米颗粒具有以多种方式调节和加速伤口愈合的能力。