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Bertram, A. K.

Publications and source records attributed to Bertram, A. K..

2 recordsLinked to original sources

ICE BINDING PROTEIN ACTIVITY IS COMMON AMONG TEMPERATE PACIFIC INTERTIDAL INVERTEBRATES

Intertidal invertebrates often adopt freeze tolerance as a strategy to survive winter low tides, but the physiological mechanisms by which intertidal species survive freezing are not well understood. Ice binding proteins (IBPs) may play an important role, but their occurrence throughout the intertidal zone worldwide is not well-catalogued. Here we survey species in the intertidal zone of Vancouver, BC to assess IBP activities and the possible role they play in freeze tolerance. We conducted targeted assays in multiple intertidal species to measure three distinct activities of IBPs: ice nucleation, ice recrystallization inhibition, and thermal hysteresis. We also exposed intertidal species to a cold exposure mimicking a freezing event in the intertidal and measured survival post-exposure. We found that IBP activity was widespread across intertidal species, and that species with the highest degree of freeze tolerance also display ice nucleating activity attributable to proteins. We also found that species that live in the high intertidal appear to show more IBP activity than species that live lower in the intertidal. This work significantly increases the number of known species containing IBPs and provides a framework for sampling new species for IBP activity in the intertidal and elsewhere.

zoology↗

Characterization of Woodsmoke Generated in the Air Pollution Exposure Lab and Comparison to Diesel Exhaust

To address the increasing concern of woodsmoke (WS) and better understand its effects on human health, a woodsmoke generation system was built in the Air Pollution Exposure Laboratory to facilitate future controlled human exposure studies. Two different woodsmoke conditions, flaming (WSFL) and smoldering (WSSM), were generated, and PM2.5 concentrations of approximately 500 g/m3 were achieved. The woodsmoke produced using the system was characterized in this study and compared with diesel exhaust (DE) generated and collected at the same facility. Within the gas phase generated by the pollutants, WS showed slight increases in CO and CO2 compared to filtered air (FA), while DE contained significantly higher levels of NOx, CO2, and total volatile organic compounds compared to FA. The WS aerosols were comprised of approximately 98% organics, 0.6% NH4, 0.9% NO3, and 0.2% SO4. Among the organic species, the CHO1 and CHOgt1 families encompassed around 60%, which was higher than the fraction of oxygenated families in DE aerosols. Moreover, the WS aerosols had higher concentrations of Cd compared to the DE aerosols. Greater oxidative potentials were also observed for WSFL and WSSM compared to DE, with DTT consumption rates normalized to the PM mass being 0.0099 and 0.0090 nmol/min/g, respectively. The difference in the compositions and properties of WS and DE suggests that it is critical to conduct further studies on how these pollutants can affect health differently.

pharmacology and toxicology↗