Noonan K J, Hunziker E B, Nessler J, Buckwalter J A
Indiana University of Orthopaedic Surgery, Riley Hospital for Children, Indianapolis, USA.
J Orthop Res. 1998 Jul;16(4):500-8. doi: 10.1002/jor.1100160416.
To define the contributions of changes in cell, matrix compartment, and fibrillar collagen volumes to longitudinal bone growth, we measured the differences in cell, pericellular/territorial matrix and interterritorial matrix volumes, and fibrillar collagen concentrations between the upper proliferative and lower hypertrophic zones of the proximal tibial physes of six miniature pigs. The mean numerical density of cells decreased from 110,000 cells/mm3 in the upper proliferative zone to 59,900 cells/mm3 in the lower hypertrophic zone. The mean cell volume increased nearly 5-fold (from 1,174 to 5,530 microm3), and the total matrix volume per cell increased 46% (from 8,040 to 11,760 microm3/cell) between the upper proliferative and lower hypertrophic zones. Both the pericellular/territorial matrix volume per cell and the interterritorial matrix volume per cell increased between the upper proliferative and lower hypertrophic zones; the pericellular/territorial matrix volume per cell increased 61% (from 4,580 to 7,390 microm3/cell), whereas the interterritorial matrix volume per cell increased 26% (from 3,460 to 4,370 microm3/cell). The total increase in mean cell volume of 4,356 microm3 exceeded the total increase in mean matrix volume per cell of 3,720 microm3; the total mean pericellular/territorial matrix volume per cell increased more than the total mean interterritorial matrix volume per cell (2,810 compared with 910 microm3/cell). Fibrillar collagen concentration was greater in the interterritorial matrix than in the pericellular/territorial matrix in both zones and increased in both matrix compartments between the upper proliferative and lower hypertrophic zones. The amount of fibrillar collagen per cell also increased in both matrix compartments between the upper proliferative and lower hypertrophic zones (from 1,720 to 3,100 microm3/cell in the pericellular/territorial matrix and from 1,490 to 2,230 microm3/cell in the interterritorial matrix; thus, the total amount of fibrillar collagen per cell increased from 3,210 to 5,530 microm3/cell). Growth rate was inversely related to the cell numerical density in the upper proliferative and lower hypertrophic zones and was directly related to interterritorial matrix volume per cell in the upper proliferative zone and to pericellular/territorial matrix volume per cell in the lower hypertrophic zone. These results show that cell enlargement contributes more to longitudinal bone growth than does increased matrix volume, that increased pericellular/territorial matrix volume makes a greater contribution to growth than does increased interterritorial matrix volume, and that the total amount of fibrillar collagen per cell increases between the upper proliferative and lower hypertrophic zones. The differences between the two matrix compartments in increase in volume, fibrillar collagen concentration, and amount of fibrillar collagen per cell strongly suggest that they differ not only in matrix organization but in rate of matrix accumulation and assembly and that these differences give the two compartments different roles in skeletal growth.
为确定细胞、基质区室和纤维状胶原体积变化对纵向骨生长的作用,我们测量了6只小型猪胫骨近端骨骺增殖区上部和肥大区下部之间细胞、细胞周/局部基质和局部间基质体积以及纤维状胶原浓度的差异。细胞的平均数值密度从增殖区上部的110,000个细胞/mm³降至肥大区下部的59,900个细胞/mm³。在增殖区上部和肥大区下部之间,平均细胞体积增加了近5倍(从1,174增至5,530立方微米),每个细胞的总基质体积增加了46%(从8,040增至11,760立方微米/细胞)。增殖区上部和肥大区下部之间,每个细胞的细胞周/局部基质体积和局部间基质体积均增加;每个细胞的细胞周/局部基质体积增加了61%(从4,580增至7,390立方微米/细胞),而每个细胞的局部间基质体积增加了26%(从3,460增至4,370立方微米/细胞)。平均细胞体积的总增加量4,356立方微米超过了每个细胞平均基质体积的总增加量3,720立方微米;每个细胞的细胞周/局部基质总体积增加量超过了每个细胞的局部间基质总体积增加量(分别为2,810和910立方微米/细胞)。在两个区室中,纤维状胶原浓度在局部间基质中均高于细胞周/局部基质,且在增殖区上部和肥大区下部之间两个基质区室中均增加。增殖区上部和肥大区下部之间,两个基质区室中每个细胞的纤维状胶原量也增加(细胞周/局部基质中从1,720增至3,100立方微米/细胞,局部间基质中从1,490增至2,230立方微米/细胞;因此,每个细胞的纤维状胶原总量从3,2