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Assets of the non-pathogenic microorganismDictyostelium discoideum as a model for the study of eukaryotic extracellular vesicles

机译:非病原微生物的资产粘菌是真核细胞外囊泡的研究模型

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摘要

Dictyostelium discoideum microvesicles have recently been presented as a valuable model for eukaryotic extracellular vesicles. Here, the advantages of D. discoideum for unraveling important biological functions of extracellular vesicles in general are detailed. > D. discoideum, a non-pathogenic eukaryotic microorganism, belongs to a billion-year-old Amoeboza lineage, which diverged from the animal-fungal lineage after the plant animal-split. During growth and early starvation-induced development, it presents analogies with lymphocytes and macrophages with regard to motility and phagocytosis capability, respectively. Its 6-chromosome genome codes for about 12,500 genes, some showing analogies with human genes. The presence of extracellular vesicles during cell growth has been evidenced as a detoxification mechanism of various structurally unrelated drugs. Controls led to the discovery of constitutive extracellular vesicle secretion in this microorganism, which was an important point. >It means that the secretion of extracellular vesicles occurs, in the absence of any drug, during both cell growth and early development. This constitutive secretion of D. discoideum cells is very likely to play a role in intercellular communication. The detoxifying secreted vesicles, which can transport drugs outside the cells, can also act as "Trojan horses", capable of transferring these drugs not only into naïve D. discoideum cells, but into human cells as well. Therefore, these extracellular vesicles were proposed as a new biological drug delivery tool. >Moreover, > Dictyostelium, chosen by the NIH (USA) as a new model organism for biomedical research, has already been used for studying some human diseases. These cells, which are much easier to manipulate than human cells, can be easily designed in simple conditioned medium experiments. Owing to the increasing consensus that extracellular vesicles are probably important mediators of intercellular communication, D. discoideum is here suggested to constitute a convenient model for tracking as yet unknown biological functions of eukaryotic extracellular vesicles.
机译:盘基网柄菌微囊泡最近已被提出作为真核细胞外囊泡的有价值的模型。在这里,详细介绍了D. discoideum在揭示细胞外囊泡的重要生物学功能方面的优势。 > D. discoideum,一种非致病性的真核微生物,属于具有十亿年历史的变形虫家族,在动植物分裂后与动物-真菌家族分离。在生长和饥饿引起的早期发育中,它分别与淋巴细胞和巨噬细胞在运动性和吞噬能力方面的类比。它的6染色体基因组编码约12,500个基因,其中一些表现出与人类基因的相似性。细胞生长过程中细胞外囊泡的存在已被证明是各种与结构无关的药物的解毒机制。对照导致在该微生物中发现组成型细胞外囊泡分泌,这是重要的一点。 > 这意味着在细胞生长和早期发育过程中,在没有任何药物的情况下都会发生细胞外囊泡的分泌。 D. discoideum细胞的这种组成性分泌很可能在细胞间通讯中发挥作用。可以将药物运送到细胞外的排毒分泌小泡也可以充当“特洛伊木马”,不仅可以将这些药物转移到幼稚的D. Discoideum细胞中,还可以转移到人细胞中。因此,提出了这些细胞外囊泡作为一种新的生物药物递送工具。 > 此外,> 被美国国立卫生研究院(美国)选为生物医学研究的新型模式生物的盘基网眼菌已经用于研究某些人类疾病。这些细胞比人细胞更容易操作,可以在简单的条件培养基实验中轻松设计。由于越来越多的共识认为细胞外囊泡可能是细胞间通讯的重要介体,因此建议将D.Discoideum构成一个方便的模型,以追踪尚未发现的真核细胞外囊泡的生物学功能。

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