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Thicker three-dimensional tissue from a symbiotic recycling system combining mammalian cells and algae

机译:来自共生体回收系统的更厚的三维组织结合了哺乳动物细胞和藻类

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摘要

In this paper, we report an in vitro co-culture system that combines mammalian cells and algae, Chlorococcum littorale, to create a three-dimensional (3-D) tissue. While the C2C12 mouse myoblasts and rat cardiac cells consumed oxygen actively, intense oxygen production was accounted for by the algae even in the co-culture system. Although cell metabolism within thicker cardiac cell-layered tissues showed anaerobic respiration, the introduction of innovative co-cultivation partially changed the metabolism to aerobic respiration. Moreover, the amount of glucose consumption and lactate production in the cardiac tissues and the amount of ammonia in the culture media decreased significantly when co-cultivated with algae. In the cardiac tissues devoid of algae, delamination was observed histologically, and the release of creatine kinase (CK) from the tissues showed severe cardiac cell damage. On the other hand, the layered cell tissues with algae were observed to be in a good histological condition, with less than one-fifth decline in CK release. The co-cultivation with algae improved the culture condition of the thicker tissues, resulting in the formation of 160 μm-thick cardiac tissues. Thus, the present study proposes the possibility of creating an in vitro “symbiotic recycling system” composed of mammalian cells and algae.
机译:在本文中,我们报告了一种体外共培养系统,该系统将哺乳动物细胞和藻类(Chlorococcum littorale)结合在一起,创建了三维(3-D)组织。尽管C2C12小鼠成肌细胞和大鼠心脏细胞活跃地消耗氧气,但即使在共培养系统中,藻类仍会产生大量氧气。尽管较厚的心脏细胞层组织内的细胞代谢显示出厌氧呼吸,但创新的共培养的引入部分地将代谢转变为有氧呼吸。而且,当与藻类共同培养时,心脏组织中的葡萄糖消耗和乳酸产生的量以及培养基中氨的含量显着降低。在没有藻类的心脏组织中,从组织学上观察到分层,并且从组织中释放的肌酸激酶(CK)显示出严重的心脏细胞损伤。另一方面,观察到具有藻类的层状细胞组织处于良好的组织学状态,CK释放下降不到五分之一。与藻类的共培养改善了较厚组织的培养条件,导致形成了160μm厚的心脏组织。因此,本研究提出了建立由哺乳动物细胞和藻类组成的体外“共生循环系统”的可能性。

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