The Immunological and Pharmacokinetic Evaluation of Lipid-PLGA Hybrid Nanoparticle-Based Oxycodone Vaccines

PLGA公司 材料科学 药代动力学 羟考酮 纳米颗粒 固体脂质纳米粒 药理学 生物医学工程 脂质体 纳米技术 医学 类阿片 内科学 受体
作者
Debra Walter,Bian Yao-zhang,He Hu,Fatima A. Hamid,Kobra Rostamizadeh,Jennifer Vigliaturo,Riley DeHority,Marion Ehrich,Scott P. Runyon,Marco Pravetoni,Chenming Zhang
出处
期刊:Biomaterials [Elsevier]
卷期号:: 122758-122758
标识
DOI:10.1016/j.biomaterials.2024.122758
摘要

The current opioid epidemic is one of the most profound public health crises facing the United States. Despite that it has been under the spotlight for years, available treatments for opioid use disorder (OUD) and overdose are limited to opioid receptor ligands such as the agonist methadone and the overdose reversing drugs such as naloxone. Vaccines are emerging as an alternative strategy to combat OUD and prevent relapse and overdose. Most vaccine candidates consist of a conjugate structure containing the target opioid attached to an immunogenic carrier protein. However, conjugate vaccines have demonstrated some intrinsic shortfalls, such as fast degradation and poor recognition by immune cells. To overcome these challenges, we proposed a lipid-PLGA hybrid nanoparticle (hNP)-based vaccine against oxycodone (OXY), which is one of the most frequently misused opioid analgesics. The hNP-based OXY vaccine exhibited superior immunogenicity and pharmacokinetic efficacy in comparison to its conjugate vaccine counterpart. Specifically, the hNP-based OXY vaccine formulated with subunit keyhole limpet hemocyanin (sKLH) as the carrier protein and aluminum hydroxide (Alum) as the adjuvant (OXY-sKLH-hNP(Alum)) elicited the most potent OXY-specific antibody response in mice. The induced antibodies efficiently bound with OXY molecules in blood and suppressed their entry into the brain. In a following dose-response study, OXY-sKLH-hNP(Alum) equivalent to 60 μg of sKLH was determined to be the most promising OXY vaccine candidate moving forward. This study provides evidence that hybrid nanoparticle-based vaccines may be superior vaccine candidates than conjugate vaccines and will be beneficial in treating those suffering from OUD.
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