Stimuli-Responsive Polymeric Nanocarriers for Drug Delivery, Imaging, and Theragnosis
Полимерные нанопереносчики, реагирующие на стимулы, для доставки лекарственных средств, визуализации и терагностики
2020-06-22
SCID: 54.1/sq5gx4tc
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cancer nanomedicinecontrolled drug releasemultimodal imagingstimuli-responsive polymeric nanocarrierstheragnosis
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Abstract (AI)
In the past few decades, polymeric nanocarriers have been recognized as promising tools and have gained attention from researchers for their potential to efficiently deliver bioactive compounds, including drugs, proteins, genes, nucleic acids, etc., in pharmaceutical and biomedical applications. Remarkably, these polymeric nanocarriers could be further modified as stimuli-responsive systems based on the mechanism of triggered release, i.e., response to a specific stimulus, either endogenous (pH, enzymes, temperature, redox values, hypoxia, glucose levels) or exogenous (light, magnetism, ultrasound, electrical pulses) for the effective biodistribution and controlled release of drugs or genes at specific sites. Various nanoparticles (NPs) have been functionalized and used as templates for imaging systems in the form of metallic NPs, dendrimers, polymeric NPs, quantum dots, and liposomes. The use of polymeric nanocarriers for imaging and to deliver active compounds has attracted considerable interest in various cancer therapy fields. So-called smart nanopolymer systems are built to respond to certain stimuli such as temperature, pH, light intensity and wavelength, and electrical, magnetic and ultrasonic fields. Many imaging techniques have been explored including optical imaging, magnetic resonance imaging (MRI), nuclear imaging, ultrasound, photoacoustic imaging (PAI), single photon emission computed tomography (SPECT), and positron emission tomography (PET). This review reports on the most recent developments in imaging methods by analyzing examples of smart nanopolymers that can be imaged using one or more imaging techniques. Unique features, including nontoxicity, water solubility, biocompatibility, and the presence of multiple functional groups, designate polymeric nanocues as attractive nanomedicine candidates. In this context, we summarize various classes of multifunctional, polymeric, nano-sized formulations such as liposomes, micelles, nanogels, and dendrimers.
Key Findings
1
Polymeric nanocarriers have been developed as multifunctional platforms for cancer imaging and therapy using optical imaging, MRI, nuclear imaging, ultrasound, PAI, SPECT, and PET.
2
Polymeric nanoformulations, including liposomes, micelles, nanogels, and dendrimers, are attractive nanomedicine candidates because of their reported nontoxicity, water solubility, biocompatibility, and multiple functional groups.
3
Smart nanopolymer systems can respond to pH, enzymes, temperature, redox conditions, hypoxia, glucose, light, magnetism, ultrasound, or electrical fields.
4
Stimuli-responsive polymeric nanocarriers enable site-specific, controlled delivery of drugs, proteins, genes, and nucleic acids through endogenous or exogenous triggers.
5
The review analyzes recent examples of smart nanopolymers detectable by one or more imaging modalities for theragnostic applications.
Research Object
stimuli-responsive polymeric nanocarriers and smart nanopolymer formulations for drug delivery, imaging, and theragnosis
Research Subject
their triggered drug or gene release, biodistribution, imaging capabilities, and multifunctional properties in biomedical and cancer-therapy applications
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2020-06-22
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