Coleman Peter J
Department of Physiology, St. George's Hospital Medical School, Cranmer Terrace, London SW17 0RE, UK.
Biochim Biophys Acta. 2002 Jul 3;1571(3):173-82. doi: 10.1016/s0304-4165(02)00213-1.
Synovial hydraulic resistance is vital for the retention of intra-articular fluid, and originates within the matrix of biopolymers in the intercellular gaps. Specific digestion of hyaluronan resulted in a increase in synovial hydraulic permeability from 0.478+/-0.24 microl min(-1) cm H(2)O(-1) in control tissue to 4.561+/-0.40 microl min(-1) cm H(2)O(-1) (mean+/-S.D., n=6 rabbits, P<0.001 t test). To investigate whether hyaluronidase also altered the interstitial ultrastructure, morphometry of hyaluronidase treated synovium was carried out. The most striking novel finding was that hyaluronidase treatment reduced extrafibrillar volume fraction within the synovial collagen bundles from 50.5+/-11.1% to 36.8+/-15.5% (mean+/-S.D., n=6 rabbits, P<0.001, two-way anova). This was accompanied by a reduction in interfibrillar centre to centre spacing from 101+/-11 (control) to 84+/-6 nm (mean+/-S.D.; n=6 rabbits, P<0.001) in enzyme-treated bundles. Individual fibrils showed a small but highly significant reduction in cross-sectional diameter from 76.9+/-6.3 to 72.5+/-6.3 nm (mean+/-S.E.; P<0.001) after hyaluronidase treatment. The findings indicate that hyaluronan chains have a major organisational role within the collagen bundle itself. The trans-synovial pathway comprises bundles and substantial areas of intervening, bundle-free matrix, and it is possible that bundle collapse contributes to a rise in overall permeability by increasing the inter-bundle space.
滑膜液压阻力对于关节内液体的潴留至关重要,其源于细胞间隙中生物聚合物基质。透明质酸的特异性消化导致滑膜液压通透性从对照组织中的0.478±0.24微升·分钟⁻¹·厘米H₂O⁻¹增加至4.561±0.40微升·分钟⁻¹·厘米H₂O⁻¹(平均值±标准差,n = 6只兔子,t检验,P < 0.001)。为了研究透明质酸酶是否也改变了间质超微结构,对经透明质酸酶处理的滑膜进行了形态计量学分析。最显著的新发现是,透明质酸酶处理使滑膜胶原束内的纤维外体积分数从50.5±11.1%降至36.8±15.5%(平均值±标准差,n = 6只兔子,P < 0.001,双向方差分析)。这伴随着酶处理束中纤维间中心到中心间距从101±11(对照)减小至84±6纳米(平均值±标准差;n = 6只兔子,P < 0.001)。经透明质酸酶处理后,单个纤维的横截面直径从76.9±6.3减小至72.5±6.3纳米(平均值±标准误;P < 0.001),虽变化小但具有高度显著性。这些发现表明透明质酸链在胶原束本身内具有主要的组织作用。跨滑膜途径包括束以及大量的中间无束基质区域,束的塌陷可能通过增加束间空间导致总体通透性升高。