Nanocrystallization strategies for enhanced HIV drug performance from solubility to sustained action
摘要
The treatment of HIV presents significant challenges due to the low solubility and bioavailability of antiretroviral drugs. These limitations impact the absorption of the drugs in the gastrointestinal tract, leading to reduced effectiveness. Patients often exhibit varying responses due to inconsistent levels of the drug in their bloodstream. Achieving desired plasma concentrations is challenging and often requires higher doses that increase the risk of side effects. Developing drugs with low solubility is a complex and costly process, slowing down overall drug development. Traditional formulation strategies have proven ineffective in addressing these issues, necessitating exploration of innovative techniques. Nanocrystallization has emerged as a transformative approach that enhances solubility and dissolution rates by reducing drug particles to the nanometer scale. This increased surface area improves drug solubility and bioavailability. Nanocrystallized drugs demonstrate a faster onset of action, higher drug load, and enhanced safety and efficiency, offering a potential solution to the challenges posed by the poor water solubility of many antiretroviral drugs. This article delves into nanocrystal formulations of HIV drugs and examines the effectiveness of commonly used stabilizers and surfactants in nanocrystal production. The aim is to determine whether the popularization of nanocrystallization could potentially overcome the prevalent issues of low solubility and bioavailability in existing antiretroviral therapies.