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某些植物的提取物和自动氧化成分可抑制格雷夫斯病免疫球蛋白的受体结合及生物活性。

Extracts and auto-oxidized constituents of certain plants inhibit the receptor-binding and the biological activity of Graves' immunoglobulins.

作者信息

Auf'mkolk M, Ingbar J C, Kubota K, Amir S M, Ingbar S H

出版信息

Endocrinology. 1985 May;116(5):1687-93. doi: 10.1210/endo-116-5-1687.

Abstract

Freeze-dried extracts (FDE) of the plants Lycopus virginicus, Lycopus europaeus, Melissa officinalis, and Lithospermum officinale, as well as products of the oxidation of certain of their constituents, have been shown to exert antithyrotropic activity by virtue of their ability to form adducts with TSH that bind weakly, if at all, to the TSH receptor. The thyroid-stimulating immunoglobulin G (IgG) found in the blood of patients with Graves' disease (Graves'-IgG) resemble TSH in their ability to bind to the thyroid plasma membrane, probably at the TSH receptor, and to activate the gland. In view of this similarity, and since some of the aforementioned FDE have been used in the treatment of hyperthyroidism in Graves' disease, we undertook studies of the effect of these FDE and their constituents on the binding and biological action of Graves'-IgG. In all samples of Graves'-IgG tested, incubation with antithyrotropic FDE or their antithyrotropic auto-oxidized constituents decreased their TSH-binding inhibitory activity in a dose-dependent manner. FDE from L. officinale also inhibited in a dose-dependent manner the direct binding to human thyroid membranes of a 125I-labeled preparation of receptor-purified Graves'-IgG. As judged from both stimulation of adenylate cyclase activity in vitro (thyroid-stimulating Ig activity) and enhancement of thyroid iodine release in the McKenzie assay system (LATS activity), antithyrotropic FDE and their auto-oxidized constituents also inhibited the biological responses to Graves'-IgG. FDE and constituents lacking antithyrotropic activity had little or no effect on the TSH-binding inhibitory activity, thyroid-stimulating Ig activity, or LATS activities of Graves'-IgG. Evidence of some degree of specificity of the inhibitory effects of the active compounds on Graves'-IgG was obtained in the demonstration that they failed to inhibit both the direct binding of [125I]insulin to its receptors in human lymphoblastoid IM-9 cells and the ability of IgG preparations containing antiinsulin receptor antibodies to inhibit the binding of labeled insulin. These observations suggest that the active principles in those FDE and their oxidized constituents with antithyrotropic activity may interact with the pathogenically important components of Graves'-IgG to inhibit their ability to bind to the TSH receptor and activate the thyroid, as they do with TSH. Our findings provide a possible rationale for the empirical, though poorly documented, use of FDE in the treatment of Graves' disease and some support for the suggestion that Graves'-specific IgG may have structural similarities to TSH itself.

摘要

北美光果水苏、欧光果水苏、蜜蜂花和药用紫草的冻干提取物(FDE),以及它们某些成分的氧化产物,已被证明具有抗促甲状腺素活性,因为它们能够与促甲状腺素(TSH)形成加合物,这种加合物与TSH受体的结合很弱,甚至根本不结合。在格雷夫斯病患者血液中发现的促甲状腺免疫球蛋白G(Graves'-IgG),在与甲状腺质膜结合的能力上类似于TSH,可能是在TSH受体处结合,并激活甲状腺。鉴于这种相似性,并且由于上述一些FDE已被用于治疗格雷夫斯病的甲状腺功能亢进,我们对这些FDE及其成分对Graves'-IgG的结合和生物学作用的影响进行了研究。在所有测试的Graves'-IgG样本中,与抗促甲状腺素FDE或其抗促甲状腺素自氧化成分孵育后,其TSH结合抑制活性呈剂量依赖性降低。药用紫草的FDE也以剂量依赖性方式抑制了125I标记的受体纯化Graves'-IgG制剂与人甲状腺膜的直接结合。从体外腺苷酸环化酶活性的刺激(促甲状腺素刺激Ig活性)和麦肯齐测定系统中甲状腺碘释放的增强(长效甲状腺刺激素活性)判断,抗促甲状腺素FDE及其自氧化成分也抑制了对Graves'-IgG的生物学反应。缺乏抗促甲状腺素活性的FDE和成分对Graves'-IgG的TSH结合抑制活性、促甲状腺素刺激Ig活性或长效甲状腺刺激素活性几乎没有影响。在证明活性化合物未能抑制[125I]胰岛素与人淋巴母细胞IM-9细胞中其受体的直接结合以及含有抗胰岛素受体抗体的IgG制剂抑制标记胰岛素结合的能力时,获得了活性化合物对Graves'-IgG抑制作用具有一定程度特异性的证据。这些观察结果表明,那些具有抗促甲状腺素活性的FDE及其氧化成分中的活性成分可能与Graves'-IgG的致病性重要成分相互作用,以抑制它们与TSH受体结合并激活甲状腺的能力,就像它们对TSH的作用一样。我们的发现为FDE在治疗格雷夫斯病中的经验性应用(尽管记录不佳)提供了一个可能的理论基础,并为Graves'-特异性IgG可能与TSH本身具有结构相似性的观点提供了一些支持。

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