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A Delayed Inoculation Model of Chronic Pseudomonas aeruginosa Wound Infection
Published on: February 20, 2020
Pseudomonas aeruginosa virulence proteins pseudolysin and protease IV impede cutaneous wound healing
Alevoor Srinivas Bharath Prasad1, Padival Shruptha2, Vijendra Prabhu3
1Department of Ageing Research, Manipal School of Life Sciences (MSLS), Manipal Academy of Higher Education (MAHE), Manipal, India.
Abstract:
The intricate biological process of cutaneous wound healing is achieved through precise and highly programmed events. Dermal fibroblasts and keratinocytes play a significant role in the process of reepithelialization during wound healing. Pathogenic bacteria such as Pseudomonas aeruginosa (P. aeruginosa) may delay the proliferative phase of wound repair by secreting their proteins leading to delayed or impaired wound healing. We have analyzed three virulent strains of P. aeruginosa isolated from the wound environment which also differed in their ability to produce biofilms. Mass spectrometric analysis of differentially expressed secreted proteins by three virulent strains of P. aeruginosa revealed peptides from pseudolysin and protease IV expressed from lasB and prpL genes. Pseudolysin and protease IV recombinant proteins were tested for their ability to modulate wound healing in several cell types of wound microenvironment in in vitro and in vivo models. Both pseudolysin and protease IV inhibited migration and survival of fibroblasts, keratinocytes, and endothelial cells. In three dimensional spheroid endothelial models and matrigel assays these proteins impeded sprouting and tube formation. In a mouse model of excision wound, pseudolysin and protease IV treatment showed reduced collagen content, inhibited neovascularization and epithelialization, and delayed wound contraction. Furthermore, pseudolysin and protease IV treatment resulted in a significant increase in plasma IL-6 levels when compared to vehicle control and control, suggesting the induction of a state of prolonged inflammation. Taken together, our data indicate pseudolysin and protease IV secreted from biofilm producing and antibiotic resistant P. aeruginosa in wound microenvironment produce both local and systemic effects that is detrimental to the maintenance of tissue homeostasis. Hence, these proteins may serve as potential therapeutic targets toward better clinical management of wounds.
Insights
Pseudomonas aeruginosa secreted proteins, pseudolysin and protease IV, impair wound healing by inhibiting cell migration and tissue repair. These bacterial factors cause local and systemic inflammation, suggesting they are therapeutic targets for wound management.
Area of Science:
- Wound Healing Research
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Cutaneous wound healing is a complex biological process involving precise cellular events.
- Dermal fibroblasts and keratinocytes are crucial for reepithelialization.
- Pathogenic bacteria like Pseudomonas aeruginosa can impede wound repair by secreting proteins.
Purpose of the Study:
- To investigate the role of secreted proteins from virulent P. aeruginosa strains in modulating wound healing.
- To identify specific bacterial proteins that inhibit key cellular processes in wound repair.
- To evaluate the therapeutic potential of targeting these bacterial proteins.
Main Methods:
- Analysis of secreted proteins from three virulent P. aeruginosa strains using mass spectrometry.
- In vitro and in vivo testing of recombinant pseudolysin and protease IV on wound-relevant cells and models.
- Assessment of wound healing parameters in a mouse excision wound model, including collagen content, neovascularization, epithelialization, and contraction.
- Measurement of plasma IL-6 levels to assess systemic inflammation.
Main Results:
- Pseudolysin and protease IV were identified as differentially expressed secreted proteins.
- Both proteins inhibited the migration and survival of fibroblasts, keratinocytes, and endothelial cells in vitro.
- These proteins impeded endothelial cell sprouting and tube formation in 3D models.
- In vivo, treatment with pseudolysin and protease IV reduced collagen, inhibited neovascularization and epithelialization, and delayed wound contraction.
- Elevated plasma IL-6 levels indicated prolonged inflammation.
Conclusions:
- Pseudolysin and protease IV secreted by P. aeruginosa contribute to delayed wound healing through local and systemic effects.
- These bacterial proteins disrupt tissue homeostasis and promote inflammation.
- Pseudolysin and protease IV represent potential therapeutic targets for improving the clinical management of wounds.
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