School of Pharmacy, Faculty of Medical and Health Sciences, University of Auckland, Grafton, Auckland 1023, New Zealand.
School of Chemical Sciences, University of Auckland, Auckland 1010, New Zealand.
Biomater Adv. 2024 May;159:213837. doi: 10.1016/j.bioadv.2024.213837. Epub 2024 Mar 20.
Poloxamer-based hydrogels show promise to stabilise and sustain the delivery of growth factors in tissue engineering applications, such as following spinal cord injury. Typically, growth factors such as neurotrophin-3 (NT-3) degrade rapidly in solution. Similarly, poloxamer hydrogels also degrade readily and are, therefore, only capable of sustaining the release of a payload over a small number of days. In this study, we focused on optimising a hydrogel formulation, incorporating both poloxamer 188 and 407, for the sustained delivery of bioactive NT-3. Hyaluronic acid blended into the hydrogels significantly reduced the degradation of the gel. We identified an optimal hydrogel composition consisting of 20 % w/w poloxamer 407, 5 % w/w poloxamer 188, 0.6 % w/w NaCl, and 1.5 % w/w hyaluronic acid. Heparin was chemically bound to the poloxamer chains to enhance interactions between the hydrogel and the growth factor. The unmodified and heparin-modified hydrogels exhibited sustained release of NT-3 for 28 days while preserving the bioactivity of NT-3. Moreover, these hydrogels demonstrated excellent cytocompatibility and had properties suitable for injection into the intrathecal space, underscoring their suitability as a growth factor delivery system. The findings presented here contribute valuable insights to the development of effective delivery strategies for therapeutic growth factors for tissue engineering approaches, including the treatment of spinal cord injury.
基于泊洛沙姆的水凝胶有望稳定和持续输送组织工程应用中的生长因子,例如在脊髓损伤后。通常情况下,生长因子如神经营养因子-3(NT-3)在溶液中会迅速降解。同样,泊洛沙姆水凝胶也容易降解,因此只能在少数几天内维持有效载荷的释放。在这项研究中,我们专注于优化一种水凝胶配方,该配方同时包含泊洛沙姆 188 和 407,以持续输送生物活性 NT-3。透明质酸混合到水凝胶中显著降低了凝胶的降解速度。我们确定了一种最佳的水凝胶组成,包含 20%w/w 的泊洛沙姆 407、5%w/w 的泊洛沙姆 188、0.6%w/w 的 NaCl 和 1.5%w/w 的透明质酸。肝素通过化学结合到泊洛沙姆链上,以增强水凝胶和生长因子之间的相互作用。未经修饰和肝素修饰的水凝胶均能持续释放 NT-3 长达 28 天,同时保持 NT-3 的生物活性。此外,这些水凝胶表现出优异的细胞相容性,并且具有适合鞘内注射的特性,突出了它们作为生长因子输送系统的适用性。本研究结果为治疗性生长因子的有效输送策略的开发提供了有价值的见解,包括脊髓损伤的治疗。