Department of Pharmaceutics, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, Piscataway, NJ 08854-8022, USA.
Biomaterials. 2011 Feb;32(4):1204-17. doi: 10.1016/j.biomaterials.2010.08.117. Epub 2010 Oct 14.
Doxycycline hydrogels containing reversible disulfide crosslinks were investigated for a dermal wound healing application. Nitrogen mustard (NM) was used as a surrogate to mimic the vesicant effects of the chemical warfare agent sulfur mustard. An 8-arm-poly(ethylene glycol) (PEG) polymer containing multiple thiol (-SH) groups was crosslinked using hydrogen peroxide (H(2)O(2) hydrogel) or 8-arm-S-thiopyridyl (S-TP hydrogel) to form a hydrogel in situ. Formulation additives (glycerin, PVP and PEG 600) were found to promote dermal hydrogel retention for up to 24 h. Hydrogels demonstrated high mechanical strength and a low degree of swelling (< 1.5%). Doxycycline release from the hydrogels was biphasic and sustained for up to 10-days in vitro. Doxycycline (8.5 mg/cm(3)) permeability through NM-exposed skin was elevated as compared to non vesicant-treated controls at 24, 72 and 168 h post-exposure with peak permeability at 72 h. The decrease in doxycycline permeability at 168 h correlates to epidermal re-epithelialization and wound healing. Histology studies of skin showed that doxycycline loaded (0.25% w/v) hydrogels provided improved wound healing response on NM-exposed skin as compared to untreated skin and skin treated with placebo hydrogels in an SKH-1 mouse model. In conclusion, PEG-based doxycycline hydrogels are promising for dermal wound healing application of mustard injuries.
含有可还原二硫键的强力霉素水凝胶被用于皮肤创伤愈合的应用研究。氮芥(NM)被用作一种模拟化学战剂芥子气的水疱性效应的替代物。一种含有多个巯基(-SH)基团的 8 臂聚乙二醇(PEG)聚合物,使用过氧化氢(H(2)O(2)水凝胶)或 8 臂-S-硫代吡啶基(S-TP 水凝胶)进行交联,以就地形成水凝胶。制剂添加剂(甘油、PVP 和 PEG 600)被发现可以促进皮肤水凝胶的保留,最长可达 24 小时。水凝胶表现出高机械强度和低溶胀度(<1.5%)。强力霉素从水凝胶中的释放呈两相且持续长达 10 天。与非水疱性处理对照相比,NM 暴露皮肤中的强力霉素透过率在暴露后 24、72 和 168 小时升高,在 72 小时达到峰值。在 168 小时时强力霉素透过率的降低与表皮再上皮化和伤口愈合有关。皮肤的组织学研究表明,与未处理皮肤和用安慰剂水凝胶处理的皮肤相比,载有强力霉素的(0.25%w/v)水凝胶在 SKH-1 小鼠模型中对 NM 暴露的皮肤提供了更好的伤口愈合反应。总之,基于 PEG 的强力霉素水凝胶在芥子气损伤的皮肤创伤愈合应用中具有很大的应用潜力。