Bacteria in nature are usually found in complex multicellularstructures, called biofilms.
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Multicellularstructures appeared, and specialized themselves in diverse manners to suit diverse environments.
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Overall, dictyostelids show considerable plasticity in the size and shape of multicellularstructures, both within and between species.
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Virtually all cells living in multicellularstructures such as tissues and organs are encased in an extracellular matrix.
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Morphological and ultrastructural analysis in 3D culture revealed a change in mesangial cell phenotype, forming a branching network of multicellularstructures.
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Monitoring spatial distribution of metabolites in multicellularstructures can enhance understanding of the biochemical processes and regulation involved in cellular community development.