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Nucleation and Formation of a Primary Clot in Insect Blood

机译:昆虫血液中主要血块的成核和形成

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摘要

Blood clotting at wound sites is critical for preventing blood loss and invasion by microorganisms in multicellular animals, especially small insects vulnerable to dehydration. The mechanistic reaction of the clot is the first step in providing scaffolding for the formation of new epithelial and cuticular tissue. The clot, therefore, requires special materials properties. We have developed and used nano-rheological magnetic rotational spectroscopy with nanorods to quantitatively study nucleation of cell aggregates that occurs within fractions of a second. Using larvae of Manduca sexta, we discovered that clot nucleation is a two-step process whereby cell aggregation is the time-limiting step followed by rigidification of the aggregate. Clot nucleation and transformation of viscous blood into a visco-elastic aggregate happens in a few minutes, which is hundreds of times faster than wound plugging and scab formation. This discovery sets a time scale for insect clotting phenomena, establishing a materials metric for the kinetics of biochemical reaction cascades. Combined with biochemical and biomolecular studies, these discoveries can help design fast-working thickeners for vertebrate blood, including human blood, based on clotting principles of insect blood.
机译:伤口部位的血液凝结对于防止失血和微生物在多细胞动物中的入侵至关重要,尤其是对容易脱水的小昆虫。凝块的机械反应是为新的上皮和表皮组织形成提供支架的第一步。因此,凝块需要特殊的材料特性。我们已经开发并使用了具有纳米棒的纳米流变磁旋转光谱仪,以定量研究在一秒之内发生的细胞聚集体的成核。使用曼杜卡六倍体的幼虫,我们发现血块成核是一个两步过程,其中细胞聚集是时间限制步骤,然后是聚集体的硬化。凝结成核并将粘滞性血液转化为粘弹性聚集体仅需几分钟,比伤口堵塞和结sc形成的速度快数百倍。这一发现为昆虫凝结现象设定了时间尺度,建立了生物化学反应级联动力学的材料度量。结合生化和生物分子研究,这些发现可以根据昆虫血液的凝固原理,帮助设计包括人血在内的脊椎动物血液的快速增稠剂。

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