The review presents nanotechnology as an auxiliary technology being explored for sustainable parasite control in aquaculture.
First-pass extracted concept
nanotechnology
Extracted Explainers
What the tool is doing
What problem it solves
What it does not solve
Evidence Snippets
Finally, we highlight how chemical modification, nanotechnology, and artificial intelligence-assisted design are enhancing the specificity, stability, and safety of RNA therapeutics.
This article discusses the current advances in three small technologies, RNAs, peptides and nanotechnology, in targeting plant diseases and improving productivity as well as in future research directions for agrochemical innovation.
Emerging methods such as natural products, gene editing, immunotherapy, and auxiliary technologies like nanotechnology and biosensors are becoming alternative strategies for sustainable parasite control.
Furthermore, burgeoning research areas such as sonogenetics and nanotechnology show promising potential.
Supporting Sources
Linked Claims
Chemical modification, nanotechnology, and artificial intelligence-assisted design are enhancing the specificity, stability, and safety of RNA therapeutics.
These emerging parasite-control approaches have significant potential to prevent drug resistance and reduce environmental impact.
These methods show significant potential, particularly in preventing drug resistance and reducing environmental impact.
Natural products, gene editing, immunotherapy, nanotechnology, and biosensors are emerging as alternative strategies for sustainable parasite control in aquaculture.
Emerging methods such as natural products, gene editing, immunotherapy, and auxiliary technologies like nanotechnology and biosensors are becoming alternative strategies for sustainable parasite control.
Emerging approaches for sustainable parasite control in aquaculture remain at an early research stage and are hindered by unstable efficacy, limited field validation, and uncertain long-term safety.
However, these approaches remain at an early research stage, with issues such as unstable efficacy, limited validation in field conditions and uncertain long-term safety hindering their translation into practice.
Traditional chemical treatments for parasite control in aquaculture face drug resistance as well as environmental pollution and toxicity challenges.
Parasite control in aquaculture faces challenges primarily due to the drug resistance of traditional chemical treatments, as well as environmental pollution and toxicity.
The article proposes incorporating protein disorder into RNA-, peptide-, and nanotechnology-based agrochemical approaches with tailored functionalities.
The article discusses current advances in RNAs, peptides, and nanotechnology as agrochemical technologies for targeting plant diseases and improving productivity.
Sonogenetics and nanotechnology are described as promising emerging research areas related to low-intensity focused ultrasound neuromodulation.
Furthermore, burgeoning research areas such as sonogenetics and nanotechnology show promising potential.