Khaydar Yunusov | Drug Discovery and Development | Best Researcher Award

Khaydar Yunusov | Drug Discovery and Development | Best Researcher Award

Prof. Khaydar Yunusov at Institute of Polymer Chemistry and Physics Uzbekistan Academy of Sciences, Uzbekistan.

Prof. Khaydar Yunusov is a distinguished polymer chemist from Uzbekistan with extensive expertise in nanotechnology, cellulose chemistry, and biomaterials. Since 2007, he has held key research and leadership roles at the Institute of Polymer Chemistry and Physics, contributing significantly to polymer-based biomedical innovations. 💊 He holds a Doctor of Science and leads groundbreaking projects on nanostructured antibacterial films, antiviral eye medications, and burn treatments. 📘 With several patents, international collaborations 🌍, and editorial roles in leading journals, Prof. Yunusov is a pioneering force in sustainable polymer research and nanomedical applications.

Publication Profile 

Orcid

Education

Prof. Khaydar Yunusov began his academic journey at the Tashkent Chemical Technological Institute, earning a Bachelor’s degree in Chemistry (2006) and a Master’s in Cellulose, Paper Chemistry, and Technology (2008). 📘 Driven by scientific excellence, he pursued a Doctor of Science in Technical Sciences (2009–2016), focusing on advanced polymer research. Since 2018, he has served as a Senior Scientific Researcher in Nanochemistry, Nanophysics, and Nanotechnology. 🧪 His research delves into nanostructured bactericidal preparations based on cellulose and its derivatives, emphasizing synthesis, properties, and production technologies. 🧬 His academic background provides a solid foundation for pioneering innovations in polymer science.

Experience

Prof. Khaydar Yunusov has cultivated a rich professional career in polymer science, beginning in 2007 as a researcher at the Institute of Polymer Chemistry and Physics, Uzbek Academy of Sciences, Tashkent. 📍 Over the years, he advanced through roles including junior researcher, senior researcher, and project manager, earning his Doctor of Science along the way. 🔬 His expertise spans polymer and cellulose chemistry, nanotechnology, and biomaterials. From 2019 to 2023, he served as a lab and project manager, driving innovation in nanostructured materials. 💼 Prof. Yunusov’s professional path reflects unwavering dedication to scientific discovery and technological advancement.

Research Focus 

Prof. Khaydar Yunusov is a pioneering scientist whose research spans polymer chemistry, cellulose technology, and nanochemistry. His core focus lies in designing biocompatible nanomaterials 🧫 such as nanostructured drug delivery systems, microneedles, hydrogels, and functional films for medical applications 🎯. He actively explores biodegradable polymers, nanoparticle synthesis (silver, selenium, zinc oxide), and antimicrobial and anticancer therapies 💊. His work intersects biotechnology, materials science, and pharmaceutical engineering, advancing targeted treatments and regenerative medicine 🧠🦠. With numerous high-impact publications, Prof. Yunusov is shaping the future of smart biomaterials and sustainable polymeric solutions.

Publication Top Notes

  • A red cell membrane-camouflaged nanoreactor for enhanced starvation/chemodynamic/ion interference therapy for breast cancer
  • A three-dimensional printable conductive composite dressing for accelerating wound healing under electrical stimulation
  • Core-shell structured microneedles with programmed drug release functions for prolonged hyperuricemia management ( vol 12, pg 1064, 2024)
  • Fabrication of hollow microneedles with double-layer shell structure for rapid and prolonged local anesthesia
  • Homemade isothermal amplification-initiated Cas14a assay for rapid quantitative detection of aquatic RNA virus gene with no PAM
  • Iontophoresis-driven transdermal drug delivery system based on porous microneedles for hyperuricemia treatment
  • Real-time microbial growth curve (RMGC) system: an improved microplate reader with a graphical interface for automatic and high-throughput monitoring of microbial growth curves
  • Two-directions mechanical strength and high-barrier mechanisms of cellulose nanocrystal- based hybrids reinforced packaging with nacre-mimetic structure
  • Physico-chemical characteristics of dialdehyde carboxymethylcellulose/sericin graft copolymer
  • Synthesis, Characterization, and Cytotoxic Activity of Stable Selenium Nanoparticles‐Incorporated Carboxymethylcellulose Solution
  • Impact of cellulose supramolecular structure on its carboxymethylation reaction activity
  • Advances in the formation and properties of nanofiber biomaterials from polyvinyl alcohol/carboxymethylcellulose/nanosilver systems for medical applications
  • Obtaining Dialdehyde Carboxymethylcellulose Through Microwave Treatment
  • Core-shell structured microneedles with programmed drug release functions for prolonged hyperuricemia management