Lipid Nanoparticles Improve the Uptake of α-Asarone Into the Brain Parenchyma: Formulation, Characterization, In Vivo Pharmacokinetics, and Brain Delivery

被引:0
作者
Prakash Ramalingam
Palanivel Ganesan
D. S. Prabakaran
Pardeep K. Gupta
Sriramakamal Jonnalagadda
Karthivashan Govindarajan
Revuri Vishnu
Kalaiselvi Sivalingam
Srushti Sodha
Dong-Kug Choi
Young Tag Ko
机构
[1] Genus Lifesciences Inc,Industrial Pharmacy Laboratory, Philadelphia College of Pharmacy
[2] University of the Sciences,College of Pharmacy
[3] Gachon University,Nanotechnology Research Center and Department of Applied Life Science and Biotechnology, College of Biomedical and Health Science
[4] Konkuk University,Department of Radiation Oncology, College of Medicine
[5] Chungbuk National University,Department of Green Bio Engineering
[6] Korea National University of Transportation,Department of Pharmaceutical Sciences, Irma Lerma Rangel College of Pharmacy
[7] Texas A&M University,undefined
来源
AAPS PharmSciTech | / 21卷
关键词
lipid nanoparticles; α-asarone; stability; pharmacokinetics; brain distribution;
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摘要
Treatment of brain-related diseases is one of the most strenuous challenges in drug delivery research due to numerous hurdles, including poor blood-brain barrier penetration, lack of specificity, and severe systemic toxicities. Our research primarily focuses on the delivery of natural therapeutic compound, α-asarone, for the treatment of brain-related diseases. However, α-asarone has poor aqueous solubility, bioavailability, and stability, all of which are critical issues that need to be addressed. This study aims at formulating a lipid nanoparticulate system of α-asarone (A-LNPs) that could be used as a brain drug delivery system. The physicochemical, solid-state properties, stability, and in vitro and in vivo studies of the A-LNPs were characterized. The release of α-asarone from the A-LNPs was prolonged and sustained. After intravenous administration of A-LNPs or free α-asarone, significantly higher levels of α-asarone from the A-LNPs were detected in murine plasma and brain parenchyma fractions, confirming the ability of A-LNPs to not only maintain a therapeutic concentration of α-asarone in the plasma, but also transport α-asarone across the blood-brain barrier. These findings confirm that lipid nanoparticulate systems enable penetration of natural therapeutic compound α-asarone through the blood-brain barrier and may be a candidate for the treatment of brain-related diseases.
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  • [1] Pardeshi CV(2018)N, N, N-trimethyl chitosan modified flaxseed oil based mucoadhesive neuronanoemulsions for direct nose to brain drug delivery Int J Biol Macromol 120 2560-2571
  • [2] Belgamwar VS(2013)Novel surface modified polymer–lipid hybrid nanoparticles as intranasal carriers for ropinirole hydrochloride: in vitro, ex vivo and in vivo pharmacodynamic evaluation J Mater Sci Mater Med 24 2101-2115
  • [3] Pardeshi CV(2012)Natural polyphenols against neurodegenerative disorders: potentials and pitfalls Ageing Res Rev 11 329-345
  • [4] Belgamwar VS(2014)Protective effects of curcumin against rotenone and salsolinol-induced toxicity: implications for Parkinson’s disease Neurotox Res 25 81-89
  • [5] Tekade AR(2014)Natural triterpenoids and their derivatives with pharmacological activity against neurodegenerative disorders Mini-Rev Organ Chem 11 307-315
  • [6] Surana SJ(2015)α-Asarone attenuates microglia-mediated neuroinflammation by inhibiting NF kappa B activation and mitigates MPTP-induced behavioral deficits in a mouse model of Parkinson's disease Neuropharmacology 97 46-57
  • [7] Ebrahimi A(2014)α-Asarone ameliorates memory deficit in lipopolysaccharide-treated mice via suppression of pro-inflammatory cytokines and microglial activation Biomol Ther 22 17-26
  • [8] Schluesener H(2016)Neurogenesis-promoting natural product α-asarone modulates morphological dynamics of activated microglia Front Cell Neurosci 10 280-796
  • [9] Qualls Z(2015)A herbal medicine for Alzheimer's disease and its active constituents promote neural progenitor proliferation Aging Cell 14 784-16
  • [10] Brown D(2018)Alpha-asarone attenuates depression-like behavior in nicotine-withdrawn mice: evidence for the modulation of hippocampal pCREB levels during nicotine-withdrawal Eur J Pharmacol 818 10-58