000071066 001__ 71066
000071066 005__ 20180628101621.0
000071066 0247_ $$2doi$$a10.2174/2468187307666170712151006
000071066 0248_ $$2sideral$$a104099
000071066 037__ $$aART-2018-104099
000071066 041__ $$aeng
000071066 100__ $$0(orcid)0000-0001-9962-3387$$aFrutos Pérez-Surio, Alberto
000071066 245__ $$aDrug vectoring systems to target drug delivery using nanotechnologies
000071066 260__ $$c2018
000071066 5060_ $$aAccess copy available to the general public$$fUnrestricted
000071066 5203_ $$aBackground: The development of nanostructures (nanoparticles and nanocapsules) is one of the most important pipelines of research of pharmaceutical technology. 
Methods: These nanotechnology pharmaceuticals allow the vectorization of drugs to tissues or cells target, allowing thus actions more specific and therapeutically active directed by molecules. 
Results: The use of molecules with an affinity for membrane receptors expressed in specific excess in tumor cells, monoclonal antibodies, or proteins, among others, is common for this purpose. In addition, these nanosystems allow  to deliver drugs that could be the basis of the pharmacological treatment of many disorders of genetic origin in the future: biomolecules. 
Conclusion: The future scope of drug vectoring systems to target drug delivery using nanotechnologies can increase the control of pharmacokinetic parameters of chemotherapeutic agents.
000071066 540__ $$9info:eu-repo/semantics/openAccess$$aAll rights reserved$$uhttp://www.europeana.eu/rights/rr-f/
000071066 655_4 $$ainfo:eu-repo/semantics/article$$vinfo:eu-repo/semantics/acceptedVersion
000071066 700__ $$aAlcácera López, María Aránzazu
000071066 773__ $$g8, 1 (2018), 39-44$$pCurr. nanomed.$$tCurrent Nanomedicine$$x2468-1873
000071066 8564_ $$s66640$$uhttps://zaguan.unizar.es/record/71066/files/texto_completo.pdf$$yPostprint
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000071066 909CO $$ooai:zaguan.unizar.es:71066$$particulos$$pdriver
000071066 951__ $$a2018-06-28-09:53:36
000071066 980__ $$aARTICLE