Wheeler D L, Stokes K E, Hoellrich R G, Chamberland D L, McLoughlin S W
Orthopaedic Research Laboratory, Oregon Health Sciences University, Portland 97201, USA.
J Biomed Mater Res. 1998 Sep 15;41(4):527-33. doi: 10.1002/(sici)1097-4636(19980915)41:4<527::aid-jbm3>3.0.co;2-e.
The bioactive glass known as Bioglass or Perioglass (USB) (US Biomaterials, Alachua, FL) has proven to be an effective graft material owing to the apatite layer which forms on the surface of the glass, promoting bone formation. USB particles range in size from 90 to 710 microns in diameter, as determined by optical microscopy. A similar bioactive material, BioGran (OV) (Orthovita, Malvern, PA), was developed to limit the particle size of 4555 to the range between 300 and 360 microns, as determined by sieving. The objective of this study was to histologically and biomechanically compare the 4555 bioactive glass, produced by US Biomaterials, in a wide particle range (USB) to the narrower particle range glass produced by Orthovita (OV) The grafted defects will then be compared to normal cancellous bone (NORM) of the distal femur in rabbits. Histologically, more bone was quantified at both 4 and 12 weeks within the defects filled with USB and NORM when compared to the limbs filled with OV (p < 0.05). The OV particles had greater particle axes and larger particle areas on average than the USB particles (p < 0.05). However, the particle axis and area of the two materials decreased with time at a similar rate. Biomechanically, the USB- and OV-grafted defects had comparable peak compressive load, compressive stiffness, and compressive modulus which were equivalent to normal bone.
名为Bioglass或Perioglass(USB)(美国生物材料公司,佛罗里达州阿拉楚阿)的生物活性玻璃已被证明是一种有效的移植材料,这是由于玻璃表面形成的磷灰石层可促进骨形成。通过光学显微镜测定,USB颗粒的直径范围为90至710微米。一种类似的生物活性材料BioGran(OV)(Orthovita公司,宾夕法尼亚州马尔文)被开发出来,通过筛分测定,其颗粒大小限制在4555至300至360微米之间。本研究的目的是从组织学和生物力学方面比较美国生物材料公司生产的宽颗粒范围(USB)的4555生物活性玻璃与Orthovita公司生产的窄颗粒范围玻璃(OV)。然后将移植缺损与兔股骨远端的正常松质骨(NORM)进行比较。在组织学上,与填充OV的肢体相比,在填充USB和NORM的缺损内,4周和12周时均有更多的骨被定量(p < 0.05)。平均而言,OV颗粒的颗粒轴和颗粒面积比USB颗粒更大(p < 0.05)。然而,两种材料的颗粒轴和面积随时间以相似的速率减小。在生物力学方面,USB和OV移植的缺损具有相当的峰值压缩载荷、压缩刚度和压缩模量,与正常骨相当。