Yeruva Taj, Morris Iii Robert J, Kumar Sahana, Zhao Luke, Kofinas Peter, Duncan Gregg A
Fischell Department of Bioengineering, University of Maryland, College Park, MD 20742, USA.
Department of Chemical & Biomolecular Engineering, University of Maryland, College Park, MD 20742, USA.
Biomater Sci. 2025 Apr 17. doi: 10.1039/d4bm01101e.
gelling polymeric biomaterials have proven useful as drug delivery vehicles to enable sustained release at the sites of disease or injury. However, if delivered to mucosal tissues, such as the eyes, nose, and gastrointestinal and cervicovaginal tracts, these gels must also possess the ability to adhere to an epithelium coated in mucus. Towards this end, we report a new rapid gelling polyethylene glycol-based hydrogel. Unlike other chemistries that enable rapid gel formation irreversible covalent bonds, we use a bio-reducible linker allowing the gels to be naturally degraded over several days once administered. We identified a set of 6 lead formulations, which rapidly transform into disulfide-linked PEG hydrogels in 30 seconds or less. These rapidly forming PEG hydrogels were also able to conform and adhere to mucosal tissues PEG-mucin entanglements and hydrogen bonding. Controlled release of protein-based cargoes from the PEG gels was achieved over several hours, whereas 40 nm nanoparticle-based cargos were retained over 24 hours. We also found that these rapid forming PEG gels were well tolerated by mammalian cells and were retained in the nasal cavity of mice for up to 1 week. These studies support further testing and development of rapid forming PEG gels for drug delivery to improve therapeutic retention and efficacy at mucosal sites.
凝胶状聚合物生物材料已被证明可用作药物递送载体,以在疾病或损伤部位实现持续释放。然而,如果递送至粘膜组织,如眼睛、鼻子、胃肠道和宫颈阴道管,这些凝胶还必须具备粘附于覆盖有粘液的上皮的能力。为此,我们报道了一种新型的基于聚乙二醇的快速凝胶化水凝胶。与其他通过不可逆共价键实现快速凝胶形成的化学方法不同,我们使用了一种可生物还原的连接子,使凝胶在给药后几天内能够自然降解。我们确定了一组6种先导配方,它们能在30秒或更短时间内迅速转化为二硫键连接的聚乙二醇水凝胶。这些快速形成的聚乙二醇水凝胶还能够通过聚乙二醇-粘蛋白缠结和氢键作用贴合并粘附于粘膜组织。基于蛋白质的货物从聚乙二醇凝胶中的控释可持续数小时,而基于40纳米纳米颗粒的货物则可保留24小时。我们还发现,这些快速形成的聚乙二醇凝胶在哺乳动物细胞中耐受性良好,并在小鼠鼻腔中保留长达1周。这些研究支持进一步测试和开发快速形成的聚乙二醇凝胶用于药物递送,以提高在粘膜部位的治疗保留率和疗效。