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Applications of Polyaniline-Based Molybdenum Disulfide Nanoparticles against Brain-Eating Amoebae
Sumayah Abdelnasir1, Mohammad Ridwane Mungroo2, Jactty Chew1
1Department of Biological Sciences, School of Medical and Life Sciences, Sunway University, Subang Jaya 47500, Selangor, Malaysia.
Abstract:
Primary amoebic meningoencephalitis and granulomatous amoebic encephalitis are distressing infections of the central nervous system caused by brain-eating amoebae, namely, Naegleria fowleri and Acanthamoeba spp., respectively, and present mortality rates of over 90%. No single drug has been approved for use against these infections, and current therapy is met with an array of obstacles including high toxicity and limited specificity. Thus, the development of alternative effective chemotherapeutic agents for the management of infections due to brain-eating amoebae is a crucial requirement to avert future mortalities. In this paper, we synthesized a conducting polymer-based nanocomposite entailing polyaniline (PANI) and molybdenum disulfide (MoS2) and explored its anti-trophozoite and anti-cyst potentials against Acanthamoeba castellanii and Naegleria fowleri. The intracellular generation of reactive oxygen species (ROS) and ultrastructural appearances of amoeba were also evaluated with treatment. Throughout, treatment with the 1:2 and 1:5 ratios of PANI/MoS2 at 100 μg/mL demonstrated significant anti-amoebic effects toward A. castellanii as well as N. fowleri, appraised to be ROS mediated and effectuate physical alterations to amoeba morphology. Further, cytocompatibility toward human keratinocyte skin cells (HaCaT) and primary human corneal epithelial cells (pHCEC) was noted. For the first time, polymer-based nanocomposites such as PANI/MoS2 are reported in this study as appealing options in the drug discovery for brain-eating amoebae infections.
Insights
A novel polyaniline/molybdenum disulfide nanocomposite shows significant potential against brain-eating amoebae, Naegleria fowleri and Acanthamoeba spp. This discovery offers a promising new avenue for treating these deadly central nervous system infections.
Area of Science:
- Materials Science
- Nanotechnology
- Infectious Diseases
Background:
- Primary amoebic meningoencephalitis and granulomatous amoebic encephalitis are severe CNS infections with over 90% mortality.
- Current treatments for brain-eating amoebae infections are limited by toxicity and low specificity.
Purpose of the Study:
- To synthesize and evaluate a polyaniline (PANI)/molybdenum disulfide (MoS2) nanocomposite for anti-amoebic activity.
- To investigate the mechanism of action, including reactive oxygen species (ROS) generation and morphological changes.
Main Methods:
- Synthesis of PANI/MoS2 nanocomposites.
- In vitro testing against Acanthamoeba castellanii and Naegleria fowleri trophozoites and cysts.
- Assessment of ROS generation and ultrastructural changes in amoebae.
- Evaluation of cytocompatibility with human skin and corneal cells.
Main Results:
- PANI/MoS2 nanocomposites at 1:2 and 1:5 ratios (100 μg/mL) exhibited significant anti-amoebic effects against both A. castellanii and N. fowleri.
- The anti-amoebic activity was mediated by ROS generation, leading to physical alterations in amoeba morphology.
- The nanocomposite demonstrated good cytocompatibility with human keratinocyte (HaCaT) and corneal epithelial cells (pHCEC).
Conclusions:
- PANI/MoS2 nanocomposites represent a novel and promising therapeutic option for brain-eating amoebae infections.
- This study is the first to report polymer-based nanocomposites for treating these devastating infections.
- The findings open new avenues for drug discovery in combating Naegleria and Acanthamoeba infections.

