Employing NAD+ boosting to counteract age-related mitochondrial dysfunction in muscle tissue
NAD+
mitochondrial dysfunction
aging muscle
sarcopenia
metabolic rejuvenation
Enhancing crop drought resistance through piezoelectric rain enhancement in arid regions
piezoelectric materials
drought resistance
rainfall stimulation
arid agriculture
water scarcity
Developing scalable atmospheric water harvesting systems using MOF-based adsorbents for arid regions
atmospheric water harvesting
MOFs
adsorbent materials
arid regions
sustainable water
For immediate pandemic response via portable CRISPR-based diagnostic devices
pandemic response
CRISPR diagnostics
portable biosensors
pathogen detection
field-ready tools
Through proteostasis network modulation to reverse age-related cellular dysfunction
proteostasis
aging
cellular repair
protein aggregation
longevity
Using computational retrosynthesis to accelerate discovery of biodegradable polymers
computational retrosynthesis
biodegradable polymers
green chemistry
material design
sustainability
CRISPR-Cas12a gene editing for targeted silencing of antibiotic resistance genes in pathogens
CRISPR-Cas12a
antibiotic resistance
gene silencing
pathogen control
microbial engineering
Self-healing concrete with embedded fungal spores for infrastructure resilience
self-healing materials
fungal biotechnology
civil engineering
biocementation
infrastructure durability
With albedo-modifying urban materials to mitigate heat island effects
urban heat island
albedo modification
reflective materials
climate adaptation
sustainable cities
Predicting enzyme turnover numbers using machine learning and structural data
enzyme kinetics
turnover prediction
machine learning
bioinformatics
computational biology
With ocean iron fertilization monitoring to assess unintended ecological consequences
iron fertilization
algal blooms
carbon capture
marine ecology
geoengineering
Optimizing chemical reaction yields through autonomous lab assistants and solvent selection engines
autonomous labs
solvent optimization
chemical yields
AI-driven chemistry
reaction efficiency