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Lopez, A. C.

Publications and source records attributed to Lopez, A. C..

2 recordsLinked to original sources

The antimicrobial potential of traditional remedies of Indigenous Peoples from Canada against MRSA planktonic and biofilm bacteria in wound-infection mimetic conditions

Methicillin-resistant Staphylococcus aureus (MRSA) is the leading cause of wound infections, often progressing into serious invasive bloodstream infections. MRSA disproportionately affects Indigenous peoples in Canada with higher rates of skin and wound infections, an example of persistent gaps in health outcomes between Indigenous and non-Indigenous peoples precipitated by the legacy of colonialism. Conversely, Indigenous peoples have long used natural remedies for infections and other diseases; however, their knowledge was rarely considered for modern medicine. The stagnant antibiotic discovery pipeline and alarming rise of resistance to current antibiotics prompted us to turn to Indigenous medicine as an untapped source of antimicrobials. As such, we collected and prepared 85 extracts of medicinal plants of value to Indigenous Peoples spanning the Canadian Prairies. We explored the antimicrobial potential of these extracts against MRSA under wound infection-mimetic conditions compared to culture media typically used to study bacterial antibiotic responses and biofilms but not adequately representative of infection sites. We identified extracts with MRSA growth inhibitory [e.g., bergamot, dock, gaillardia, and dandelion extracts] and biofilm prevention and eradication [e.g., gumweed extracts] activities. Extracts, including those of chokecherry, hoary puccoon, and Northern bedstraw, were only active under wound infection-mimetic conditions, highlighting the relevance of antibiotic discovery under host-relevant conditions. Testing growth inhibitory extracts against an S. aureus cross-resistance platform suggested that they act through mechanisms likely distinct from known antibiotic classes. Together, through an interdisciplinary partnership leveraging Western approaches and traditional Indigenous knowledge, we identified plant extracts with promising antimicrobial potential for drug-resistant MRSA wound infections.

microbiology↗

Local Thermal Adaptation occurs via Modulation of Mitochondrial Activity in Chinook Salmon

Freshwater and anadromous fish have been identified as one of the most at-risk groups threatened by climate induced warming given their metabolic dependence on environmental temperature and limited ability to track favorable environmental conditions. The future of these fish will depend on their ability to adapt to new thermal regimes over biologically relevant timescales. However, the mechanistic understanding of temperature responses required to predict if adaption can keep pace with climate change is limited. To address this question, we investigated the mechanistic basis of thermal adaptation across multiple levels of biological organization in the iconic and endangered Chinook Salmon (Oncorhynchus tshawytscha). We uncovered a mechanistic basis of thermal adaptation centered on the thermal responsiveness of mitochondrial function which modulates the extent to which rising temperatures increase metabolic demand on the cardio-respiratory system. These insights demonstrate that the populations studied here are able to maintain high levels of physiological performance at temperatures several degrees above historic averages, indicating that the decline Chinook Salmon and failure to recover despite conservation efforts is unlikely to be due to increased temperatures as a consequence of climate change.

evolutionary biology↗