Coral reef electro-accretion techniques for 2050 carbon neutrality goals
coral reefs
electro-accretion
carbon sequestration
ocean acidification
climate mitigation
Employing NAD+ boosting for extended deep-space astronaut health preservation
space medicine
anti-aging biochemistry
radiation shielding
Through Cambrian explosion analogs to understand rapid evolutionary innovation in modern ecosystems
Cambrian explosion
evolutionary biology
adaptive radiation
fossil record
speciation rates
Mapping circadian gene oscillations across Arctic species under perpetual daylight conditions
circadian rhythms
Arctic ecology
transcriptomics
photoperiodism
wildlife adaptation
Studying ecosystem resilience during mass extinction recovery events
mass extinction
ecosystem resilience
biodiversity recovery
conservation biology
paleoecology
Employing NAD+ boosting to reverse radiation-induced cellular senescence
telomere attrition
DNA methylation
space radiobiology
sirtuin activation
redox homeostasis
Targeting plastic-eating enzymes through catastrophic forgetting mitigation in microbial communities
enzymatic degradation
plastic waste
microbial evolution
catastrophic forgetting
bioremediation
Using microbiome rejuvenation to reverse antibiotic resistance in hospital-acquired infections
microbiome rejuvenation
antibiotic resistance
hospital infections
microbial ecology
pathogen displacement
Exploring evolutionary innovation through Cambrian explosion analogs in synthetic biology
synthetic biology
evolutionary algorithms
biomimicry
Cambrian explosion
adaptive systems
Reversing age-related stem cell exhaustion with NAD+ boosting compounds
stem cell exhaustion
NAD+ boosters
cellular rejuvenation
aging reversal
sirtuin activation
Spanning microbiome ecosystems to engineer climate-resilient crops
microbiome engineering
climate-resilient crops
soil microbes
agricultural biotechnology
drought tolerance
For senolytic drug discovery using CRISPR-enabled zombie cell targeting
senolytics
CRISPR screening
aging therapeutics
zombie cells
drug discovery