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Multifaceted nanolipidic carriers: a modish stratagem accentuating nose-to-brain drug delivery

期刊

JOURNAL OF NANOPARTICLE RESEARCH
卷 25, 期 7, 页码 -

出版社

SPRINGER
DOI: 10.1007/s11051-023-05804-4

关键词

Nose-to-brain drug delivery; Nanostructured lipid carriers; Intranasal administration; Brain targeted delivery; Medical device combination

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The exponential growth of nanotechnology has led to the development of nanocarriers for therapeutic purposes, particularly in the treatment of brain disorders. Nanostructured lipid carriers (NLC) have gained significant attention as alternative pharmaceutical delivery systems, offering improved stability and various applications such as gene therapy and cancer treatment. This review thoroughly covers the uses and significance of NLCs in combating brain diseases, highlighting their potential through recent research papers and patents. NLCs show promise in nose-to-brain drug delivery, offering targeted delivery, reduced toxicity, and increased bioavailability.
The exponential growth of nanotechnology has focused on therapeutic pursuits, notably for brain disorders. Nanocarriers have submicron particle sizes, typically around 500 nm. Over the past few years, interest in nanostructured lipid carriers as alternative pharmaceutical delivery systems has increased on both the scientific and commercial fronts. It belongs to a more recent incarnation of lipid nanoparticulate systems with a solid matrix and superior room temperature stability. More recently, they have also been used in gene therapy, cancer treatment, and brain targeting. In this review, the uses and significance of nanostructured lipid carriers (NLC) in combating brain diseases have been thoroughly covered, with examples from several recent research papers. A summary of NLCs' present patent status has been provided to highlight their promising potential. Related patents and research reports associated with this topic are gathered and availed. The paper thoroughly summarizes NLCs and their application in different routes of administration. Drug administration directly to the brain via nose through NLCs is mainly focused. Nose-to-brain delivery has more benefits compared to the other routes. NLCs provide significant advantages such as targeted delivery, less toxicity, higher drug loading capacity due to imperfect structure, etc. However, the particle size of NLCs for intranasal drug delivery should be < 200 nm. Also, NLC is combined with a medical device to achieve the add-on benefits for delivering drugs effectively. According to the comprehensive review of literature and patents like CN110013471B, IN-MUM-2015-00667A, IN202021023420A, and AU2021104270A4, drug-loaded NLCs in nose-to-brain delivery show promising results. NLCs can increase bioavailability and reduce dosing frequency, indirectly reducing dose-related side effects. Intervening NLCs directly on the targeted site displays site specificity and many more benefits than conventional dosage forms. Thus, using NLCs in nose-to-brain drug delivery is invigorating.

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