Nano-lipospheres as acoustically active ultrasound contrast agents: evolving tumor imaging and therapy technique.


Journal

Nanotechnology
ISSN: 1361-6528
Titre abrégé: Nanotechnology
Pays: England
ID NLM: 101241272

Informations de publication

Date de publication:
03 May 2019
Historique:
pubmed: 16 1 2019
medline: 15 3 2019
entrez: 16 1 2019
Statut: ppublish

Résumé

Applying nanobubbles (NBs) for contrast-enhanced ultrasound imaging has received increased attention. NBs are biocompatible, multifunctional, theranostic agents. Their properties of high echogenicity and stability create an agent suitable for ultrasonography diagnosis. Their favorable properties of size, in vivo stability, and ease of modification are being exploited to implement a theranostic platform for cancer treatment. The considerable development offers the potential to overcome drug resistance and adverse side effects that are associated with traditional chemotherapy. This review outlines the principles of ultrasonography and angiogenesis. Microbubbles and micelles are also discussed to underline the superior capabilities of NBs for the application. NBs could passively accumulate to tumor tissue by enhanced permeability and retention effect. In addition, it can also achieve the active transportation by surface modification. Active targeting modalities and stimuli-responsive drug delivery modifications generate a therapeutic vehicle. The cytotoxicity of NBs formulations, multimodal imaging capability, active targeting mechanisms, and drug delivery methods are highlighted to confirm the NB as a vehicle for targeted treatment and enhanced ultrasound imaging.

Identifiants

pubmed: 30645984
doi: 10.1088/1361-6528/aafeb9
doi:

Substances chimiques

Contrast Media 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

182001

Auteurs

Laura Emma Andrews (LE)

Department of Chemistry, National Taiwan University, Taiwan. School of Chemistry, The University of Edinburgh, United Kingdom.

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Classifications MeSH