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https://www.sciencedirect.com/science/article/pii/S0168365908000254
The use of stimuli-responsive nanocarriers offers an interesting opportunity for drug and gene delivery where the delivery system becomes an active participant, rather than passive vehicle, in the optimization of therapy. Several families of molecular assemblies are employed as stimuli-responsive nanocarriers for either passive or active targeting.Cited by: 1989
https://www.sciencedirect.com/science/article/abs/pii/S0168365908000254
In this review, we discuss the role of stimuli-responsive nanocarrier systems for drug and gene delivery. The advancement in material science has led to design of a variety of materials, which are used for development of nanocarrier systems that can respond to biological stimuli. Temperature, pH, and hypoxia are examples of “triggers” at the diseased site that could be exploited with stimuli …Cited by: 1989
https://www.nature.com/articles/nmat3776
Oct 23, 2013 · In this Review, we discuss recent advances in the design of nanoscale stimuli-responsive systems that are able to control drug biodistribution in response to specific stimuli, either exogenous (variations in temperature, magnetic field, ultrasound intensity, light or electric pulses) or endogenous …Cited by: 3355
https://www.academia.edu/6746939/A_review_of_stimuli-responsive_nanocarriers_for_drug_and_gene_delivery
A review of stimuli-responsive nanocarriers for drug and gene delivery
https://www.academia.edu/11597712/A_review_of_stimuli-responsive_nanocarriers_for_drug_and_gene_delivery
A review of stimuli-responsive nanocarriers for drug and gene delivery
https://www.researchgate.net/publication/5590046_A_Review_of_Stimuli-Responsive_Nano_Carriers_for_Drug_and_Gene_Delivery
A nanocarrier system incorporated with stimuli-responsive property (e.g., pH, temperature, or redox potential), for instance, would be amenable to address some of the systemic and intracellular...
http://www.thno.org/v10p4557.htm
The stimuli-responsive nanocarriers for drug delivery to tumors towards precision imaging, effective therapy and theranostics. The nanocarriers could accumulate and penetrate tumors, and target cancer cells for achieving different applications and functions by responding to the external and internal stimuli.
https://onlinelibrary.wiley.com/doi/full/10.1002/mabi.200800248
Numerous drug delivery systems with controlled release exist nowadays and a significant number of reviews are dedicated to drug 52-57 or DNA delivery; 47, 58, 59 the use of different polymer carriers such as micelles, dendrimers, gels, and nanoparticles; and the targeting to the location of choice. 55-57, 60 As mentioned earlier, this review focuses specifically on polymersomes used as drug or DNA carriers …Cited by: 481
https://www.ncbi.nlm.nih.gov/pubmed/28194746
Current gene vectors can be divided into viral and non-viral vectors. Although non-viral gene delivery carriers can offer some advantages, such as safety and facile fabrication, they do not possess the same high gene transfection efficiency as viral vectors due to a lack of functionality to overcome extra- and intracellular gene delivery obstacles.Cited by: 18
https://www.researchgate.net/publication/23689384_Stimuli-Responsive_Polymersomes_as_Nanocarriers_for_Drug_and_Gene_Delivery
Stimuli-responsive polymers have emerged as promising candidates for controlled drug delivery due to their stability in the circulation and the ability to target and deliver the drug at the ...
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