Purpose of Review <p>This review synthesizes interdisciplinary evidence on how environmental stressors—including climate change, urbanization, and air pollution—impact pollen dynamics and human health. We assess conventional and innovative monitoring methods to identify critical gaps in exposure evaluation and public health response.</p> Recent Findings <p>Recent research confirms that climate change and urbanization are prolonging pollen seasons and increasing pollen potency. Pollutants such as O<sub>3</sub>, NO<sub>x</sub>, PM, SO<sub>2</sub>, and elevated CO<sub>2</sub> along with urban heat island and vegetation changes further enhance pollen allergenicity. While monitoring technology is advancing, significant limitations persist, including poor spatial resolution, a lack of real-time capabilities, and severe underrepresentation of tropical regions.</p> Summary <p>An integrated approach to pollen surveillance that combines climate, air quality, and health data is critically needed. Key challenges remain, including inadequate spatial coverage, a lack of standardized protocols, and poor integration with public health systems. The complex interactions between pollen as a bioaerosol and atmospheric processes represent a significant research gap, hindering our ability to predict and manage pollen-related health risks effectively.</p> Graphical Abstract <p></p>

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A Review of Airborne Pollen and Its Interactions With Air Pollutants, Urbanization, and Climate Change: Implications for Human Health and Monitoring Gaps

  • Sachin Dhawan,
  • Anand Kumar,
  • Dalip Singh Mehta,
  • Mukesh Khare

摘要

Purpose of Review

This review synthesizes interdisciplinary evidence on how environmental stressors—including climate change, urbanization, and air pollution—impact pollen dynamics and human health. We assess conventional and innovative monitoring methods to identify critical gaps in exposure evaluation and public health response.

Recent Findings

Recent research confirms that climate change and urbanization are prolonging pollen seasons and increasing pollen potency. Pollutants such as O3, NOx, PM, SO2, and elevated CO2 along with urban heat island and vegetation changes further enhance pollen allergenicity. While monitoring technology is advancing, significant limitations persist, including poor spatial resolution, a lack of real-time capabilities, and severe underrepresentation of tropical regions.

Summary

An integrated approach to pollen surveillance that combines climate, air quality, and health data is critically needed. Key challenges remain, including inadequate spatial coverage, a lack of standardized protocols, and poor integration with public health systems. The complex interactions between pollen as a bioaerosol and atmospheric processes represent a significant research gap, hindering our ability to predict and manage pollen-related health risks effectively.

Graphical Abstract