La Gatta Annalisa, Bedini Emiliano, Aschettino Maria, Finamore Rosario, Schiraldi Chiara
Department of Experimental Medicine, School of Medicine, University of Campania "Luigi Vanvitelli", Via L. De Crecchio 7, 80138 Naples, Italy.
Department of Chemical Sciences, University of Naples Federico II, Via Cintia 4, 80126 Naples, Italy.
Polymers (Basel). 2022 Jun 14;14(12):2402. doi: 10.3390/polym14122402.
BDDE (1,4-butanediol-diglycidylether)-crosslinked hyaluronan (HA) hydrogels are widely used for dermo-aesthetic purposes. The rheology and stability of the gels under physiological conditions greatly affect their clinical indications and outcomes. To date, no studies investigating how these features are related to the chemistry of the polymeric network have been reported. Here, four available HA-BDDE hydrogels were studied to determine how and to what extent their rheology and stability with respect to enzymatic hydrolysis relate to the type and degree of HA structural modification. H-/C-NMR analyses were associated for the quantification of the "true" HA chemical derivatization level, discriminating between HA that was effectively crosslinked by BDDE, and branched HA with BDDE that was anchored on one side. The rheology was measured conventionally and during hydration in a physiological medium. Sensitivity to bovine testicular hyaluronidase was quantified. The correlation between NMR data and gel rheology/stability was evaluated. The study indicated that (1) the gels greatly differed in the amounts of branched, crosslinked, and overall modified HA, with most of the HA being branched; (2) unexpectedly, the conventionally measured rheological properties did not correlate with the chemical data; (3) the gels' ranking in terms of rheology was greatly affected by hydration; (4) the rheology of the hydrated gels was quantitatively correlated with the amount of crosslinked HA, whereas the correlations with the total HA modification level and with the degree of branched HA were less significant; (5) increasing HA derivatization/crosslinking over 9/3 mol% did not enhance the stability with respect to hyaluronidases. These results broaden our knowledge of these gels and provide valuable information for improving their design and characterization.
1,4 - 丁二醇二缩水甘油醚(BDDE)交联的透明质酸(HA)水凝胶被广泛用于皮肤美容目的。这些凝胶在生理条件下的流变学和稳定性极大地影响其临床应用和效果。迄今为止,尚未有研究报道这些特性与聚合物网络化学性质之间的关系。在此,对四种市售的HA - BDDE水凝胶进行研究,以确定其流变学以及对酶解的稳定性如何与HA结构修饰的类型和程度相关,以及相关程度如何。结合H - /C - NMR分析来定量“真正的”HA化学衍生化水平,区分被BDDE有效交联的HA和仅一侧锚定有BDDE的支链HA。常规测量并在生理介质水合过程中测量流变学。定量评估对牛睾丸透明质酸酶的敏感性。评估NMR数据与凝胶流变学/稳定性之间的相关性。研究表明:(1)这些凝胶在支链、交联和整体修饰的HA量上有很大差异,其中大部分HA是支链的;(2)出乎意料的是,常规测量的流变学性质与化学数据不相关;(3)水合作用对凝胶流变学的排名有很大影响;(4)水合凝胶的流变学与交联HA的量在定量上相关,而与总HA修饰水平和支链HA程度的相关性较弱;(5)当HA衍生化/交联超过9/3摩尔%时,对透明质酸酶的稳定性并未增强。这些结果拓宽了我们对这些凝胶的认识,并为改进其设计和表征提供了有价值的信息。