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Climate adaptation impacting parasitic infection.

Subhash Chandra Parija1,2

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Climate change drives parasite adaptation, altering their distribution and leading to new disease threats. Multidisciplinary One Health approaches are crucial for detection, reporting, and countermeasures to protect public health.

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Area of Science:

  • Environmental Science
  • Parasitology
  • Epidemiology
  • Public Health

Background:

  • Global climate change is inducing significant genetic and behavioral adaptations in parasites.
  • Rising temperatures are dissolving geographical boundaries, affecting parasite distribution and abundance.
  • These changes impact the host-pathogen-transmission dynamics, creating novel epidemiological models.

Purpose of the Study:

  • To highlight the influence of climate change on parasite emergence and adaptation.
  • To underscore the resulting public health challenges and increased disease prevalence.
  • To advocate for integrated, multidisciplinary strategies under the One Health framework.

Main Methods:

  • Analysis of climate-driven shifts in parasite traits (genetic and behavioral).
  • Assessment of altered geographical distribution and abundance of parasites.
  • Evaluation of the impact on host-pathogen-transmission dynamics and epidemiological models.

Main Results:

  • Parasites are exhibiting climate-adaptive changes, expanding into new regions.
  • Emerging parasitic diseases are posing a significant burden on healthcare systems.
  • Altered parasite distribution and abundance are creating new epidemiological challenges.

Conclusions:

  • Climate change necessitates a proactive, multidisciplinary approach to manage emerging parasitic threats.
  • Innovations in detection, reporting, and medical countermeasures are vital.
  • Implementing One Health strategies is essential for mitigating public health risks associated with climate-adaptive parasites.