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肥大细胞促成了与小鼠主动过敏反应相关的心率变化,但与低血压或死亡无关。

Mast cells contribute to the changes in heart rate, but not hypotension or death, associated with active anaphylaxis in mice.

作者信息

Martin T R, Ando A, Takeishi T, Katona I M, Drazen J M, Galli S J

机构信息

Department of Pediatrics, Ina Sue Perlmutter Laboratory, Children's Hospital, Boston, MA.

出版信息

J Immunol. 1993 Jul 1;151(1):367-76.

PMID:7686942
Abstract

The mast cell is widely thought to contribute importantly to the cardiopulmonary changes associated with anaphylaxis, but much of the evidence for this is indirect. We, therefore, performed a detailed assessment of heart rate and pulmonary function during active anaphylaxis in genetically mast cell-deficient W/Wv or S1/S1d mice, the congenic normal (+/+) mice, and W/Wv mice repaired of their mast cell deficiency by transplantation of bone marrow from the congenic +/+ mice (+/+ BM-->W/Wv mice). For all five groups of mice, Ag challenge resulted in the death of more than two-thirds of the sensitized animals, whereas none of the nonsensitized control mice died as a result of Ag infusion. Sensitized normal (WBB6F1(-)+/+ or WCB6F1(-)+/+) mice and +/+BM-->W/Wv mice developed increases in heart rate that were significantly greater than those of nonsensitized +/+ mice or those of sensitized mast cell-deficient mice, indicating that mast cells contribute to the tachycardia observed in this form of active anaphylaxis. By contrast, even though some of the pulmonary changes associated with active anaphylaxis were more severe in +/+ than in mast cell-deficient mice, it was not clear to what extent this difference was mast cell dependent. W/Wv mice undergoing active anaphylaxis developed decreases in systemic arterial blood pressure that occurred more rapidly and were more severe than those observed in the congenic +/+ mice, indicating that the hypotension associated with this model of anaphylaxis also can occur by mast cell-independent mechanisms. We conclude that in this model of anaphylaxis mast cells: 1) are required for the development of the tachycardia response; 2) may contribute to, but are not essential for, production of decreases in lung function; and 3) are not necessary for the development of hypotension or death.

摘要

人们普遍认为肥大细胞在与过敏反应相关的心肺变化中起重要作用,但支持这一观点的许多证据都是间接的。因此,我们对基因缺陷型W/Wv或S1/S1d肥大细胞小鼠、同基因正常(+/+)小鼠以及通过移植同基因+/+小鼠的骨髓修复肥大细胞缺陷的W/Wv小鼠(+/+ BM→W/Wv小鼠)在主动过敏反应期间的心率和肺功能进行了详细评估。对于所有五组小鼠,抗原激发导致超过三分之二的致敏动物死亡,而未致敏的对照小鼠没有因注入抗原而死亡。致敏的正常(WBB6F1(-)+/+或WCB6F1(-)+/+)小鼠和+/+ BM→W/Wv小鼠的心率增加明显大于未致敏的+/+小鼠或致敏的肥大细胞缺陷小鼠,表明肥大细胞在这种主动过敏反应形式中观察到的心动过速中起作用。相比之下,尽管与主动过敏反应相关的一些肺部变化在+/+小鼠中比在肥大细胞缺陷小鼠中更严重,但尚不清楚这种差异在多大程度上依赖于肥大细胞。经历主动过敏反应的W/Wv小鼠出现全身动脉血压下降,其发生速度更快且比同基因+/+小鼠中观察到的更严重,表明与这种过敏反应模型相关的低血压也可通过肥大细胞非依赖机制发生。我们得出结论,在这种过敏反应模型中,肥大细胞:1)是心动过速反应发生所必需的;2)可能有助于但不是肺功能下降产生所必需的;3)不是低血压或死亡发生所必需的。

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