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Published on: January 20, 2017
A novel antiviral strategy targeting human metapneumovirus through pH modulation in human airway epithelial cells
Abstract:
Human metapneumovirus (hMPV) is a major cause of respiratory infections, particularly among infants, older adults, and immunocompromised individuals, yet no approved vaccines or targeted antiviral therapies are currently available. pH-regulated processes, including airway epithelial physiology, endosomal acidification, and viral fusion mediated by the fusion (F) protein, are critical for hMPV infection. This study evaluates PHOH-001, an inhaled alkaline buffer, as a potential therapeutic strategy to modulate airway epithelial pH and inhibit hMPV infection. Using a recombinant hMPV expressing green fluorescent protein (rhMPV-GFP), viral replication was assessed in primary human airway epithelial cells (HAECs). PHOH-001 significantly reduced GFP expression at 72 hours post-infection in both submerged and air-liquid interface (ALI) cultures, with effects comparable to those of the endosomal acidification inhibitor bafilomycin A1. In Vero E6 cells, used as a mechanistic in vitro model, PHOH-001 increased extracellular and intracellular pH in a concentration-dependent manner and correspondingly reduced hMPV infection. In HAECs, PHOH-001 reduced viral replication, as measured by TCID 50 assays of infectious virus, and inhibited syncytium formation, a key step in viral spread. Furthermore, PHOH-001 altered F protein localization and was associated with changes in actin organization, consistent with impaired viral spread. Collectively, these findings demonstrate that PHOH-001 alters multiple pH-dependent steps in hMPV infection in vitro and support airway pH modulation as a potential antiviral strategy against hMPV.
Insights
An inhaled alkaline buffer, PHOH-001, effectively inhibits human metapneumovirus (hMPV) by altering pH-dependent viral processes. This novel strategy shows promise for treating hMPV respiratory infections.
Area of Science:
- Virology
- Respiratory Medicine
- Pharmacology
Background:
- Human metapneumovirus (hMPV) causes significant respiratory illness, with no current vaccines or antiviral treatments.
- pH-regulated mechanisms are vital for hMPV infection, including viral entry and spread.
Purpose of the Study:
- To investigate PHOH-001, an inhaled alkaline buffer, as a therapeutic agent against hMPV.
- To assess the impact of pH modulation on hMPV infection in airway epithelial cells.
Main Methods:
- Recombinant hMPV expressing GFP (rhMPV-GFP) was used in primary human airway epithelial cells (HAECs).
- Viral replication was measured by GFP expression and TCID50 assays.
- Mechanistic studies were performed in Vero E6 cells to assess pH changes and viral protein localization.
Main Results:
- PHOH-001 significantly reduced hMPV replication and GFP expression in HAECs.
- The compound increased extracellular and intracellular pH in Vero E6 cells, inhibiting infection.
- PHOH-001 inhibited syncytium formation and altered fusion (F) protein localization, impairing viral spread.
Conclusions:
- Airway pH modulation using PHOH-001 is a viable strategy against hMPV.
- PHOH-001 targets multiple pH-dependent steps in the hMPV lifecycle.
- Further research into inhaled alkaline buffers for hMPV treatment is warranted.
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