Nanotechnology: A Promising Approach for Delivery of Neuroprotective Drugs

Нанотехнологии: перспективный подход к доставке нейропротекторных препаратов
S.J.S. Flora, Saba Naqvi, Archna Panghal
2020-06-09

blood-brain barriernanocarrier systemsnanotechnologyneurodegenerative disordersneuroprotective drug delivery
Central nervous system (CNS) disorders especially neurodegenerative disorders are the major challenge for public health and demand the great attention of researchers to protect people against them. In past few decades, different treatment strategies have been adopted, but their therapeutic efficacy are not enough and have only shown partial mitigation of symptoms. Blood-brain barrier (BBB) and blood-cerebrospinal fluid barrier (BSCFB) guard the CNS from harmful substances and pose as the major challenges in delivering drugs into CNS for treatment of CNS complications such as Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD), stroke, epilepsy, brain tumors, multiple sclerosis (MS), and encephalitis, etc. Nanotechnology has come out as an exciting and promising new platform of treating neurological disorders and has shown great potential to overcome problems related to the conventional treatment approaches. Molecules can be nanoengineered to carry out multiple specific functions such as to cross the BBB, target specific cell or signaling pathway, respond to endogenous stimuli, and act as a vehicle for gene delivery, support nerve regeneration and cell survival. In present review, the role of nanocarrier systems such as liposomes, micelles, solid lipid nanoparticles (SLNPs), dendrimers, and nanoemulsions for delivery of various neurotherapeutic agents has been discussed, besides this, their mechanism of action, and nanoformulation of different neuroprotective agents like curcumin, edaravone, nerve growth factors in CNS disorders like Alzheimer's, Parkinsonism, epilepsy, stroke, and brain tumors has been reviewed.
1
Blood-brain and blood-cerebrospinal fluid barriers substantially limit effective drug delivery for central nervous system disorders.
2
Nanocarriers including liposomes, micelles, solid lipid nanoparticles, dendrimers, and nanoemulsions offer potential vehicles for delivering neurotherapeutic agents.
3
Nanoformulations have been investigated for neuroprotective agents such as curcumin, edaravone, and nerve growth factors in Alzheimer’s disease, Parkinsonism, epilepsy, stroke, and brain tumors.
4
Nanotechnology may also support gene delivery, nerve regeneration, and cell survival, potentially overcoming limitations of conventional CNS treatments.
5
Nanotechnology-based delivery systems can be engineered to cross the blood-brain barrier, target specific cells or signaling pathways, and respond to endogenous stimuli.

Nanocarrier systems for delivery of neuroprotective drugs (liposomes, micelles, solid lipid nanoparticles, dendrimers, nanoemulsions)

Their mechanisms, nanoformulation strategies, and ability to overcome the blood–brain and blood–cerebrospinal fluid barriers and target CNS disorders

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2020-06-09
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S.J.S. Flora
Saba Naqvi
Archna Panghal
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