Goder Orbach Daniella, Zilberman Meital
Department of Biomedical Engineering, Faculty of Engineering, Tel-Aviv University, Tel-Aviv 69978, Israel.
J Funct Biomater. 2024 Jun 28;15(7):176. doi: 10.3390/jfb15070176.
The need for a long-term solution for filling the defects created during partial mastectomies due to breast cancer diagnosis has not been met to date. All available defect-filling methods are non-permanent and necessitate repeat procedures. Here, we report on novel injectable porous hydrogel structures based on the natural polymers gelatin and alginate, which are designed to serve for breast reconstruction and regeneration following partial mastectomy. The effects of the formulation parameters on the mechanical and physical properties were thoroughly studied. The modulus in compression and tension were in the range of native breast tissue. Both increased with the increase in the crosslinker concentration and the polymer-air ratio. Resilience was very high, above 93% for most studied formulations, allowing the scaffold to be continuously deformed without changing its shape. The combination of high resilience and low elastic modulus is favored for adipose tissue regeneration. The physical properties of gelation time and water uptake are controllable and are affected mainly by the alginate and N-(3-dimethylaminopropyl)-N'-ethylcarbodiimide hydrochloride (EDC) concentrations and less by the polymer-air ratio. In vitro cell viability tests were performed on mouse preadipocytes and indicated high biocompatibility. The minimally invasive nature of this approach, along with the excellent properties of the scaffold, will enable the filling of complex voids while simultaneously decreasing surgical costs and greatly improving patient well-being.
迄今为止,针对因乳腺癌诊断而进行部分乳房切除术后所产生缺损的长期填充解决方案的需求尚未得到满足。所有现有的缺损填充方法都不是永久性的,需要重复操作。在此,我们报告了一种基于天然聚合物明胶和藻酸盐的新型可注射多孔水凝胶结构,其设计用于部分乳房切除术后的乳房重建和再生。我们深入研究了配方参数对力学和物理性能的影响。压缩和拉伸模量在天然乳房组织的范围内。两者均随交联剂浓度和聚合物 - 空气比的增加而增加。弹性非常高,大多数研究配方的弹性均高于93%,这使得支架能够持续变形而不改变其形状。高弹性和低弹性模量的组合有利于脂肪组织再生。凝胶化时间和吸水率等物理性能是可控的,并且主要受藻酸盐和N -(3 - 二甲基氨基丙基)-N'-乙基碳二亚胺盐酸盐(EDC)浓度的影响,而受聚合物 - 空气比的影响较小。我们对小鼠前脂肪细胞进行了体外细胞活力测试,结果表明其具有高生物相容性。这种方法的微创性质,以及支架的优异性能,将能够填充复杂的空隙,同时降低手术成本并极大地改善患者的健康状况。