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Nanocarriers as Potential Drug Delivery Candidates for Overcoming the Blood–Brain Barrier: Challenges and Possibilities

ACS Omega · 2020 · Vol. 5(22) · pp. 12583–12595
Jyoti AhlawatGileydis Guillama BarrosoShima Masoudi AsilMelinda AlvaradoIsabela ArmendarizJosé Ángel Rubio BernalXimena CarabazaStephanie ChavezPaulina CruzVassti EscalanteSavana EstorgaDaniel FernándezCarolina Ramirez LozanoMartin MarrufoNabeel AhmadSergio NegreteKaryme OlveraXimena ParadaBrianna PortilloAndrea RamirezRaul RamosVerónica RodríguezPaola RojasJessica RomeroDavid L. SuarezGraciela UruetaStephanie VielMahesh Narayan

Abstract

The design of a drug that successfully overcomes the constraints imposed by the blood-brain barrier (BBB, which acts as a gatekeeper to the entry of substances into the brain) requires an understanding of the biological firewall. It is also of utmost importance to understand the physicochemical properties of the said drug and how it engages the BBB to avoid undesired side effects. Since fewer than 5% of the tested molecules can pass through the BBB, drug development pertaining to brain-related disorders takes inordinately long to develop. Furthermore, in most cases it is also unsuccessful for allied reasons. Several drug delivery systems (DDSs) have shown excellent potential in drug delivery across the BBB while demonstrating minimal side effects. This mini-review summarizes key features of the BBB, recapitulates recent advances in our understanding of the BBB, and highlights existing strategies for the delivery of drug to the brain parenchyma.

Drug Transport and Resistance MechanismsNanoparticle-Based Drug DeliveryAdvanced Drug Delivery SystemsNanocarriersDrug deliveryBlood–brain barrierDrugDrug delivery to the brainTargeted drug deliveryMedicinePharmacologyNanotechnologyCentral nervous system

Funding

  • National Institutes of Health
  • National Institute of General Medical Sciences
Citations
254
FWCI
11.46
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References
35
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99%
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