0000000000937522

AUTHOR

Sabya Sachi Das

showing 3 related works from this author

Stimuli-Responsive Polymeric Nanocarriers for Drug Delivery, Imaging, and Theragnosis.

2020

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…

LiposomeBiodistributionMaterials sciencePolymers and PlasticsBiocompatibilitytheranostictechnology industry and agricultureimagingNanotechnologyGeneral ChemistryReviewexogenous stimuliControlled releasestimuli-responsivelcsh:QD241-441Light intensitystimuli-responsive targetinglcsh:Organic chemistryDendrimerDrug deliverydrug deliveryNanomedicineendogenous stimuliPolymers
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Corrigendum to “Molecular insights and novel approaches for targeting tumor metastasis” [Int. J. Pharm. 585 (2020) 119556]

2020

INTCancer researchmedicinePharmaceutical ScienceBiologymedicine.diseaseMetastasisInternational Journal of Pharmaceutics
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Molecular insights and novel approaches for targeting tumor metastasis

2020

In recent years, due to the effective drug delivery and preciseness of tumor sites or microenvironment, the targeted drug delivery approaches have gained ample attention for tumor metastasis therapy. The conventional treatment approaches for metastasis therapy have reported with immense adverse effects because they exhibited maximum probability of killing the carcinogenic cells along with healthy cells. The tumor vasculature, comprising of vasculogenic impressions and angiogenesis, greatly depends upon the growth and metastasis in the tumors. Therefore, various nanocarriers-based delivery approaches for targeting to tumor vasculature have been attempted as efficient and potential approaches…

PolymersAngiogenesisMetal NanoparticlesPharmaceutical ScienceAntineoplastic Agents02 engineering and technologyTumor vasculature030226 pharmacology & pharmacyMetastasis03 medical and health sciencesDrug Delivery Systems0302 clinical medicineNeoplasmsTumor MicroenvironmentHumansMedicineNeoplasm MetastasisAdverse effectDrug CarriersNeovascularization Pathologicbusiness.industryConventional treatmentPhototherapy021001 nanoscience & nanotechnologymedicine.diseaseLipidsTargeted drug deliveryDrug deliveryCancer researchNanoparticlesRNANanocarriersPeptides0210 nano-technologybusinessInternational Journal of Pharmaceutics
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