Asosiy kontentga oʻtish
Maqola

MXene quantum dots for immunomodulation: redox activity and nano-strategies in inflammatory control and regenerative medicine

Tareq Nayef AlRamadnehFaculty of Allied Medical Sciences, Hourani Center for Applied Scientific Research, Al-Ahliyya Amman University, Amman, JordanJasur RizaevDoctor of Medical Sciences, Department of Public Health and Healthcare Management, Rector, Samarkand State Medical University, Samarkand, UzbekistanBakhtiyor MadiyorovDepartment of Oncology, Tashkent State Medical University, Tashkent, UzbekistanThaer Abdul AllhDepartment of Tqnyat Altkhdyr, College Altqnyat Altbyh, The Islamic University, Najaf, IraqFaris Anad MuhammadCollege of Pharmacy, Alnoor University, Nineveh, IraqJakhongir NorqulovDepartment of Medicine, Termez University of Economics and Service, Termez, UzbekistanNeeraj BainsalUniversity Institute of Pharma Sciences, Chandigarh University, Mohali, Punjab, IndiaSharmin SmaeilpourYoung Researchers and Elite Club, Tehran Branch, Islamic Azad University, Tehran, Iran
2026en
ABI

Annotatsiya

MXene quantum dots (MQDs) have recently emerged as a distinct zero-dimensional derivative of MXenes, exhibiting unique physicochemical and electronic properties that extend their relevance beyond conventional nanomaterial applications. Owing to their ultrasmall size, rich surface termination chemistry, and transition metal-centered electronic structure, MQDs interact dynamically with biological systems and influence immune behavior in a context-dependent manner. This review provides the first comprehensive and focused overview of MQDs as immunomodulatory nanoplatforms for inflammatory control and regenerative medicine. We systematically analyze the structural evolution of MQDs from two-dimensional MXenes, highlighting how quantum confinement, surface chemistry, and redox-active electronic states define their nano-bio interface. Mechanistic insights into immune regulation are discussed through redox-sensitive signaling pathways, inflammasome dynamics, and immune cell reprogramming. Furthermore, experimental evidence demonstrating MQD-mediated modulation of T-cell activity, endothelial immunogenicity, and spatial immune organization in inflammatory, oncologic, and regenerative models is critically evaluated. By integrating materials chemistry, immunological mechanisms, and translational studies, this review outlines emerging nano-strategies for precision immune regulation. Finally, key challenges related to immunosafety, compositional engineering, and clinical translation are addressed, positioning MQDs as a promising and programmable class of immunoactive nanomaterials for future biomedical applications.

Hali tarjima qilinmagan

Identifikatorlar

Iqtiboslar va manbalar