Ludwig Taryn E, Cowman Mary K, Jay Gregory D, Schmidt Tannin A
Biomedical Engineering, University of Calgary, Calgary, AB, Canada.
Polytechnic School of Engineering, New York University, New York, NY, USA.
Biorheology. 2014;51(6):409-22. doi: 10.3233/BIR-14037.
The contribution of proteoglycan 4 (PRG4) to synovial fluid and hyaluronan (HA) solution rheology are poorly understood. The effects of PRG4 disulfide-bonded structure on viscosity and viscosity of newly available full-length recombinant human PRG4 (rhPRG4) have not previously been reported.
This study determined the viscosity of PRG4 and rhPRG4, R/A (reduced and alkylated) PRG4 and rhPRG4, and PRG4 and rhPRG4+HA solutions.
Steady shear viscosities of 1.5 MDa HA, PRG4 from bovine cartilage explant culture, rhPRG4 and (rh)PRG4+HA solutions were measured with 40 mm parallel plate fixtures.
PRG4 demonstrated shear-dependent viscosity at high concentrations, but Newtonian behaviour at low concentrations and when disulfide-bonded/multimeric structure was disrupted by R/A. rhPRG4 demonstrated Newtonian behaviour over all concentrations tested and upon R/A. At high HA concentrations, rhPRG4 reduced solution viscosity, suggesting a binding interaction. At low HA concentrations, solution viscosity was increased relative to HA alone, possibly due to self-association of rhPRG4. Effects of PRG4 on HA solution viscosity were dependent on PRG4's disulfide-bonded structure.
The finding that rhPRG4 can increase the viscosity of low concentration HA solutions suggests that supplementation with rhPRG4 may help mitigate the loss in synovial fluid viscosity experienced with decreased HA concentration in osteoarthritis.
蛋白聚糖4(PRG4)对滑液和透明质酸(HA)溶液流变学的贡献尚不清楚。此前尚未报道PRG4二硫键结构对新获得的全长重组人PRG4(rhPRG4)粘度的影响。
本研究测定了PRG4和rhPRG4、R/A(还原和烷基化)PRG4和rhPRG4以及PRG4和rhPRG4+HA溶液的粘度。
使用40 mm平行板夹具测量1.5 MDa HA、来自牛软骨外植体培养的PRG4、rhPRG4和(rh)PRG4+HA溶液的稳态剪切粘度。
PRG4在高浓度下表现出剪切依赖性粘度,但在低浓度下以及当二硫键/多聚体结构被R/A破坏时表现出牛顿行为。rhPRG4在所有测试浓度下以及经R/A处理后均表现出牛顿行为。在高HA浓度下,rhPRG4降低了溶液粘度,表明存在结合相互作用。在低HA浓度下,溶液粘度相对于单独的HA有所增加,这可能是由于rhPRG4的自缔合。PRG4对HA溶液粘度的影响取决于PRG4的二硫键结构。
rhPRG4可增加低浓度HA溶液粘度这一发现表明,补充rhPRG4可能有助于减轻骨关节炎中HA浓度降低时滑液粘度的损失。