Ozcan Burak, Bayrak Ece, Erisken Cevat
J Biomech Eng. 2016 Jun;138(6):061006. doi: 10.1115/1.4033437.
Availability of material as well as biological properties of native tissues is critical for biomaterial design and synthesis for regenerative engineering. Until recently, selection of biomaterials and biomolecule carriers for dental pulp regeneration has been done randomly or based on experience mainly due to the absence of benchmark data for dental pulp tissue. This study, for the first time, characterizes the linear viscoelastic material functions and compressive properties of human dental pulp tissue harvested from wisdom teeth, under oscillatory shear and compression. The results revealed a gel-like behavior of the pulp tissue over the frequency range of 0.1-100 rps. Uniaxial compression tests generated peak normal stress and compressive modulus values of 39.1 ± 20.4 kPa and 5.5 ± 2.8 kPa, respectively. Taken collectively, the linear viscoelastic and uniaxial compressive properties of the human dental pulp tissue reported here should enable the better tailoring of biomaterials or biomolecule carriers to be employed in dental pulp regeneration.
材料的可用性以及天然组织的生物学特性对于再生工程的生物材料设计和合成至关重要。直到最近,由于缺乏牙髓组织的基准数据,用于牙髓再生的生物材料和生物分子载体的选择主要是随机进行的或基于经验。本研究首次对从智齿采集的人牙髓组织在振荡剪切和压缩下的线性粘弹性材料功能和压缩特性进行了表征。结果显示,在0.1-100 rps的频率范围内,牙髓组织呈现出凝胶状行为。单轴压缩试验产生的峰值法向应力和压缩模量值分别为39.1±20.4 kPa和5.5±2.8 kPa。总体而言,本文报道的人牙髓组织的线性粘弹性和单轴压缩特性应有助于更好地定制用于牙髓再生的生物材料或生物分子载体。