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透明质酸与补体的相互作用——I. 可逆的热诱导抗补体活性

Hyaluronic acid-complement interactions--I. Reversible heat-induced anticomplementary activity.

作者信息

Chang N S, Boackle R J, Armand G

出版信息

Mol Immunol. 1985 Apr;22(4):391-7. doi: 10.1016/0161-5890(85)90123-3.

Abstract

The in vitro interaction of hyaluronic acid (HA) with complement (C) classical-pathway activity has been investigated. It was found that native HA, even at a high concn (greater than 3 mg/ml), has a relatively weak anticomplementary activity. However, we report here that native HA can be reversibly altered by heat treatment such that C-inhibitory properties are manifested. We have determined in this study that a potent C-inhibitory activity can be obtained if HA solutions are thermally treated (100 degrees C), and stabilized by prompt freezing with prompt thawing just prior to the interaction with human serum complement. Several investigators have proposed that the intermolecular-associated strands of HA undergo a reversible decoupling upon thermal treatment and this decoupled state of HA can be semi-stabilized by quickly cooling the sample. This heat-treated HA strongly inhibits C1 as well as classical-pathway-mediated C3 conversion. However, if heat-treated HA samples are not stabilized but, rather, slowly cooled after heating or if heated HA samples are snapfrozen and then slowly thawed, the anticomplementary activity is gradually lost. Interestingly, the activity for this same sample can be regenerated by retreatment of the same sample with heat followed by low-temp stabilization, indicating the reversibility of the physical state of HA responsible for the anticomplementary effect. Since no detectable molecular degradation of thermally-treated HA was found, it was assumed that a heat-induced physical transition of HA (decoupled state) was responsible for the C-inhibitory effect.

摘要

已对透明质酸(HA)与补体(C)经典途径活性的体外相互作用进行了研究。结果发现,天然HA即使在高浓度(大于3mg/ml)时,其抗补体活性也相对较弱。然而,我们在此报告,天然HA可通过热处理发生可逆改变,从而表现出C抑制特性。我们在本研究中确定,如果HA溶液经热处理(100℃),并在与人血清补体相互作用前通过快速冷冻和快速解冻进行稳定化处理,就能获得强大的C抑制活性。几位研究人员提出,HA的分子间相关链在热处理时会发生可逆解耦,并且通过快速冷却样品,HA的这种解耦状态可以得到半稳定。这种热处理后的HA强烈抑制C1以及经典途径介导的C3转化。然而,如果热处理后的HA样品没有得到稳定化处理,而是在加热后缓慢冷却,或者如果加热后的HA样品快速冷冻然后缓慢解冻,其抗补体活性会逐渐丧失。有趣的是,同一样品的活性可以通过对该样品再次进行加热处理然后低温稳定化来恢复,这表明负责抗补体作用的HA物理状态具有可逆性。由于未发现热处理后的HA有可检测到的分子降解,因此推测HA的热诱导物理转变(解耦状态)是造成C抑制作用的原因。

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