Gelatin but not type I collagen promotes bacteria phagocytosis in PMA-treated U937 human lymphoma cells

Meiling, Li;Yiran, Chen;Xiaoli, Sun;Kaihui, Chen;Toshihiko, Hayashi;Kikuji, Itoh;Kazunori, Mizuno;Hattori, Shunji;Fujisaki, Hitomi;Liu, Weiwei;Ikejima, Takashi

Description

Besides comprising scaffolding, extracellular matrix components modulate many biological processes including inflammation and cell differentiation. We previously found precoating cell plates with extracellular matrix collagen I, or its denatured product gelatin, causes aggregation of macrophage-like human lymphoma U937 cells, which are induced to differentiation by phorbol myristate treatment. In the present study, we investigated the influence of gelatin or collagen I precoating on the bacteria phagocytosis in PMA-stimulated U937 cells. Colony forming units of phagocytosed bacteria, Giemsa-staining of cells with phagocytosed bacteria, confocal microscopic and flow cytometric analysis of cells with phagocytosed FITC-labeled bacteria and non-bioactive latex beats were conducted. Gelatin precoating enhances the phagocytosis of both Gram-negative and positive bacteria, as shown by the increased colony forming units of bacteria phagocytosed by cells, and increased intracellular bacteria observed after Giemsa-staining. But collagen I has no marked influence. Confocal microscopy reveals that both live and dead FITC-bacteria were phagocytosed more in the cells with gelatin-coating but not collagen-coating. Of note, both gelatin and collagen I coating had no influence on the phagocytosis of non-bioactive latex beads. Since gelatin-coating increases autophagy but collagen I has no such impact, we are curious about the role of autophagy. Inhibiting autophagy reduced the phagocytosis of bacteria, in cells with gelatin-coating, while stimulating autophagy enhanced phagocytosis. This study finds the bacteria-phagocytosis stimulatory effect of gelatin in PMA-treated U937 cells and reveals the positive regulatory role of autophagy, predicting the potential use of gelatin products in anti-bacterial therapy.

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Metrics

Dataset Index

0.4

FAIR Score

15%

Citations

1

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0

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Publication Details

DOI

Publisher

Taylor & Francis

License

Creative Commons Attribution 4.0 International

Assigned Domain

Subfield

Plant Science

Field

Agricultural and Biological Sciences

Domain

Life Sciences

Confidence Score

53%

Source

Open Alex

Keywords

Space ScienceMicrobiologyFOS: Biological sciencesCell BiologyPhysiologyImmunologyFOS: Clinical medicineDevelopmental BiologyCancerInfectious DiseasesFOS: Health sciences

Normalization Factors

FT

53.85

CTw

1.00

MTw

1.00