In the realm of drug delivery, Controlled Release stands as a groundbreaking technology that has redefined the way therapeutic agents are administered and absorbed in the body. This innovative approach offers a nuanced strategy to optimize drug efficacy while minimizing potential side effects, marking a significant departure from traditional delivery methods. At the core of Controlled Release is the meticulous design of drug delivery systems that exert precise control over the rate and duration of drug release. This level of precision allows for targeted delivery, ensuring that therapeutic concentrations are maintained over an extended period. Various formulations, including nanoparticles, liposomes, and microparticles, have been employed to achieve these controlled release profiles.
The applications of Controlled Release span a wide spectrum of therapeutic areas, from managing chronic conditions to addressing acute illnesses. By providing sustained drug release, this technology enhances patient compliance, a critical factor in the success of long-term treatment plans. The ability to customize release kinetics adds an extra layer of sophistication, allowing for tailored solutions to diverse medical challenges. As the field of drug delivery continues to evolve, Controlled Release remains a focal point of research and development. Ongoing innovations promise to further refine this technology, opening new avenues for personalized medicine and advancing the frontier of therapeutic precision.
Title : Circumventing challenges in developing CVD graphene on steels for extraordinary and durable corrosion resistance
Raman Singh, Monash University, Australia
Title : Evaluating cytotoxicity of metal-doped tin oxide nanoparticles
Paulo Cesar De Morais, Catholic University of Brasilia, Brazil
Title : Nanotechnology and polymers for sea and ocean sterilization using artificial intelligence with artificial intelligence-engineered nano-polymer membranes
Fadi Ibrahim Ahmed, Al-shujaa bin Al-aslam School, Kuwait
Title : Dual memory characteristics and crystallographic transformations in shape memory alloys
Osman Adiguzel, Firat University, Turkey
Title : Flexible fabric-based nanostructured color-generating film systems
Xinhua Ni, Guangzhou City University of Technology, China
Title : A broadband, angle-insensitive aluminium-based near infra-red absorber for protecting warfighters and sensitive optics technologies
Chayanika Baishya, Indian Institute of Technology Guwahati, India