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Published on: May 5, 2023
Infection by Plasmodium changes shape and stiffness of hepatic cells
Peter Eaton1, Vanessa Zuzarte-Luis, Maria M Mota
1REQUIMTE/Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, Portugal. peter.eaton@fc.up.pt
Abstract:
Infection of liver cells by Plasmodium, the malaria parasite, is a clinically silent, obligatory step of the parasite's life cycle. The authors studied the progression of Plasmodium infection in hepatic cells by atomic force microscopy, measuring both topographical and nanomechanical changes upon infection. In recent years, several studies have suggested that cellular nanomechanical properties can be correlated with disease progression. The authors' results show that infected cells exhibit considerable topographical changes, which can be correlated with the presence of the parasite, leading to a significant roughening of the cell membrane. The nanomechanical measurements showed that infected cells were significantly stiffer than noninfected cells. Furthermore, the stiffening of the cells appeared to be a cellular reaction to the Plasmodium infection, rather than a result of the stiffness of the invading parasites themselves. This article provides the first evidence of mechanical changes occurring in hepatic cells in response to Plasmodium infection.
From The Clinical Editor:
The authors have studied the progression of Plasmodium infection in hepatic cells by atomic force microscopy, measuring topographical and nanomechanical changes upon infection. The nanomechanical measurements demonstrated that infected cells were significantly stiffer than noninfected cells.
Insights
Malaria parasite infection stiffens liver cells, altering their physical properties. This study reveals significant nanomechanical changes in hepatic cells upon Plasmodium infection, offering new insights into disease progression.
Area of Science:
- Cell Biology
- Parasitology
- Biophysics
Background:
- Liver stage infection by Plasmodium, the malaria parasite, is a critical and clinically silent phase.
- Cellular nanomechanical properties are increasingly recognized as potential biomarkers for disease progression.
Purpose of the Study:
- To investigate topographical and nanomechanical alterations in hepatic cells during Plasmodium infection.
- To determine if changes in cell mechanics are a host response or due to the parasite itself.
Main Methods:
- Utilized atomic force microscopy (AFM) to measure topographical and nanomechanical properties of infected and non-infected liver cells.
- Correlated observed physical changes with the presence of Plasmodium parasites.
Main Results:
- Plasmodium infection caused significant topographical changes, notably roughening the cell membrane.
- Infected hepatic cells exhibited increased stiffness compared to non-infected cells.
- The observed stiffening was identified as a host cellular reaction to infection.
Conclusions:
- This study provides the first evidence of mechanical changes in hepatic cells in response to Plasmodium infection.
- Nanomechanical alterations, specifically increased cell stiffness, are a hallmark of liver-stage malaria infection.
- AFM offers a valuable tool for studying host-parasite interactions at the cellular level.
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