Leibniz-Institut für Oberflächenmodifizierung e. V. (IOM), Permoserstrasse 15, D-04318 Leipzig, Germany.
Beilstein J Org Chem. 2010 Dec 17;6:1199-205. doi: 10.3762/bjoc.6.137.
Porous monolithic inorganic/polymeric hybrid materials have been prepared via ring-opening metathesis copolymerization starting from a highly polar monomer, i.e., cis-5-cyclooctene-trans-1,2-diol and a 7-oxanorborn-2-ene-derived cross-linker in the presence of porogenic solvents and two types of inorganic nanoparticles (i.e., CaCO₃ and calcium hydroxyapatite, respectively) using the third-generation Grubbs initiator RuCl₂(Py)₂(IMesH₂)(CHPh). The physico-chemical properties of the monolithic materials, such as pore size distribution and microhardness were studied with regard to the nanoparticle type and content. Moreover, the reinforced monoliths were tested for the possible use as scaffold materials in tissue engineering, by carrying out cell cultivation experiments with human adipose tissue-derived stromal cells.
通过开环易位聚合反应,从高极性单体(即顺-5-环辛烯-反-1,2-二醇)和 7-氧杂双环[2.2.1]庚-2-烯衍生的交联剂出发,在致孔溶剂和两种类型的无机纳米粒子(即碳酸钙和羟基磷灰石钙)的存在下,使用第三代 Grubbs 引发剂 RuCl₂(Py)₂(IMesH₂)(CHPh)制备了多孔整体式无机/聚合物杂化材料。研究了纳米粒子类型和含量对整体材料的物理化学性质(如孔径分布和显微硬度)的影响。此外,通过进行人脂肪组织来源基质细胞的细胞培养实验,对增强型整体材料作为组织工程支架材料的可能性进行了测试。