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首页> 外文期刊>Lung. >Lung macrophage differentiation antigens in developing fetal and newborn rat lungs: A quantitative flow cytometric analysis with immunohistochemistry.
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Lung macrophage differentiation antigens in developing fetal and newborn rat lungs: A quantitative flow cytometric analysis with immunohistochemistry.

机译:发育中的胎儿和新生大鼠肺中的肺巨噬细胞分化抗原:免疫组织化学定量流式细胞仪分析。

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Relative deficiencies in the number and function of alveolar macrophages (AMs) are present immediately after birth and contribute to increased susceptibility to infection. We used immunohistochemical localization with a panel of monoclonal antibodies to macrophage differentiation markers to characterize lung macrophage antigens relevant to development, and we present here the first study to quantitate these markers using flow cytometric analysis. Rat lung macrophages undergo immunophenotypic maturation seen by a changing number (OX-1, ED-1, ED-2, and ED-9) and distribution (ED-2) of certain lung macrophage differentiation antigens. Quantification of these antibodies revealed that labeling for ED-1 and ED-9 was less on lavageable AMs from early postnatal days than on mature adult AMs. In vitro treatment of adult rat AMs with murine granulocyte-macrophage colony-stimulating factor produces a proliferating population of AMs with a high proliferation index and an immature phenotype, similar to that of newborn AMs. This in vitro model was useful in validating our quantitation of neonatal lung macrophage differentiation antigens. Our quantitative studies of potential markers of AM differentiation in the developing lung may help to focus the study of macrophages in the developing lung on specific cellular and molecular pathways that may control immunologic events during this critical period.
机译:出生后立即存在肺泡巨噬细胞(AM)的数量和功能方面的相对缺陷,并导致感染的易感性增加。我们使用了针对巨噬细胞分化标记的单克隆抗体的免疫组织化学定位来表征与发育相关的肺巨噬细胞抗原,并且我们在此提出了第一项使用流式细胞仪分析定量这些标记的研究。通过某些肺巨噬细胞分化抗原的数目(OX-1,ED-1,ED-2和ED-9)和分布(ED-2)变化,大鼠肺巨噬细胞经历了免疫表型成熟。这些抗体的定量显示,从出生后早期开始,在灌洗型AM上对ED-1和ED-9的标记要比成熟的成人AM少。用鼠粒细胞-巨噬细胞集落刺激因子对成年大鼠AM进行体外治疗会产生增殖AM,其增殖指数高且表型不成熟,与新生AM相似。该体外模型可用于验证我们对新生儿肺巨噬细胞分化抗原的定量。我们对发育中的肺部AM分化潜在标志物的定量研究可能有助于将研究中的发展中肺部巨噬细胞的研究重点放在可以控制此关键时期免疫事件的特定细胞和分子途径上。

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