| Literature DB >> 25881067 |
Racheal Aye1, Martin Kiogora Mwirigi2, Joachim Frey3, Paola Pilo4, Joerg Jores5,6, Jan Naessens7.
Abstract
BACKGROUND: Mycoplasma mycoides subsp. mycoides (Mmm) is the causative agent of contagious bovine pleuropneumonia (CBPP), a respiratory disease of cattle, whereas the closely related Mycoplasma mycoides subsp. capri (Mmc) is a goat pathogen. Cyto-adherence is a crucial step in host colonization by mycoplasmas and subsequent pathogenesis. The aim of this study was to investigate the interactions between Mmm and mammalian host cells by establishing a cyto-adherence flow cytometric assay and comparing tissue and species specificity of Mmm and Mmc strains.Entities:
Mesh:
Year: 2015 PMID: 25881067 PMCID: PMC4336739 DOI: 10.1186/s12917-015-0347-3
Source DB: PubMed Journal: BMC Vet Res ISSN: 1746-6148 Impact factor: 2.741
strains used in this study*
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| Afade | DL 06/06 | 1968 | Cameroon | Cattle/lung | FLI | |
| B237 | DL 04/09 | 1997 | Kenya | KARI | |||
| B66 | 2000 | Cattle | |||||
| T144 | DL 12/06 | 1951 | Tanzania | Cattle/vaccine strain | CIRAD | ||
| V5 | DL 641/08 | 1936 | Australia | FLI | |||
| Gladysdale | 008/06 | 1953 | Cattle | ||||
| Madrid | 636/08 | 1993 | Spain | ||||
| L2 | 008/07 | 1993 | Italy | Cattle/lung | |||
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| PG3 | R 88 | 1950 | Turkey | Goat/type strain | |
| Capri-L | 402/97 | 1975 | France | Goat | |||
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| 83/93 | 387/94 | 1993 | Spain | |||
| 136/93 | 383/94 | 1993 | |||||
| 171/93 | 388/94 | 1993 | |||||
| 152/93 | 385/94 | 1993 | |||||
| My325 | 64/97 | 1986 | Croatia | ||||
| G1313.94 | 211/94 | 1994 | Germany | Sheep | |||
| G1255.94 | 209/94 | 1994 | |||||
*Strain selection was done to include a wide geographical location, varied years of isolation and different virulence.
+FLI-Friedrich Loeffler Institute; KARI- Kenya Agricultural Research Institute; CIRAD- Centre de coopération internationale en recherche agronomique pour le développement.
**All other names are FLI names.
Figure 1Indirect immunofluorescent staining of subsp. ( ) bound to bovine lung epithelial cells (BoLEC). A shows BoLEC without Mmm stained with anti-Mmm (Afade) + anti-rabbit FITC and counter stained with DAPI. B shows BoLEC with adherent Mmm stained with anti-Mmm (Afade) + anti-rabbit FITC and counter stained without DAPI. The arrow indicates bright fluorescent patches of Mycoplasma clusters on the surface of an epithelial cell.
Figure 2Flow cytometric analysis of subsp. ( strain Afade) attachment to bovine lung epithelial cells (BoLEC). Adherent Mmm was detected by specific rabbit anti-Mmm serum followed by FITC-conjugated goat anti-rabbit-Ig (A) unstained BoLEC without Mmm; (B) stained BoLEC without Mmm; (C) BoLEC + Mmm without anti-Mmm rabbit serum; (D) BoLEC + Mmm + anti-Mmm rabbit serum without goat anti- rabbit FITC; (E) BoLEC + Mmm + pre-immunization rabbit serum + goat anti-rabbit FITC; (F) BoLEC + Mmm + anti-Mmm rabbit serum + goat anti-rabbit FITC. Vertical axis: relative fluorescence intensity. Horizontal axis: forward light scatter.
Figure 3Cyto-adhesion kinetics of strains used in this study. (A) Adherence of Mycoplasma mycoides subsp. mycoides (Mmm) strain Afade to cattle lung epithelial cells (BoLEC) as a function of incubation time. (B) Serial dilution (1:10) of Mmm strains and adherence to BoLEC. (C) Serial dilution (1:10) of Mycoplasma mycoides subsp. capri (Mmc) strains and adherence to caprine lung epithelial cells (CaLEC).
Figure 4Cyto- adherence capacity of different subsp. ( ) strains to different cattle cell lines, expressed as mean fluorescence intensity (MFI) of cells with bound .
Figure 5Cyto- adherence capacity of different subsp. ( ) strains to lung epithelial cells from cattle (BoLEC) and goats (CaLEC), expressed as mean fluorescence intensity (MFI) of cells with bound .
Figure 6Cyto- adherence of different subsp. ( ) strains to lung epithelial cells from cattle (BoLEC) and goats (CaLEC), expressed as mean fluorescence intensity (MFI) of cells with bound .