2020
DOI: 10.1016/j.ijbiomac.2020.08.036
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Folic acid functionalized starch encapsulated green synthesized copper oxide nanoparticles for targeted drug delivery in breast cancer therapy

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Cited by 109 publications
(27 citation statements)
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“…Besides hyaluronic acid and chitosan, other polysaccharides ( e.g. , pullulan [ 43 ], starch [ 155 ], dextran [ 156 ], alginate [ 157 ]) have also gained much attention in developing CR-NDDSs because of their excellent physicochemical properties.…”
Section: Current Development Of Polymeric Materials For Cr-nddss Applicationsmentioning
confidence: 99%
See 1 more Smart Citation
“…Besides hyaluronic acid and chitosan, other polysaccharides ( e.g. , pullulan [ 43 ], starch [ 155 ], dextran [ 156 ], alginate [ 157 ]) have also gained much attention in developing CR-NDDSs because of their excellent physicochemical properties.…”
Section: Current Development Of Polymeric Materials For Cr-nddss Applicationsmentioning
confidence: 99%
“…Also, the existences of hydroxyl groups in the side chains of the starch off excellent performance in the pharmacological application [ 159 ]. By using aminated starch, negatively charged Helianthus tuberosus—CuO nanoparticles was reversed into positive to improve the cellular internalization of nanoparticles through electrostatic interaction with negatively charged cancerous cell membrane [ 155 ].…”
Section: Current Development Of Polymeric Materials For Cr-nddss Applicationsmentioning
confidence: 99%
“…The ratio changes of ferric to ferrous leads to the responsive MRI that can be used to monitor tumor growth [18]. Using the DCFH-DA fluorescent probe to detect the intracellular ROS level proved that the 4T1 cells were incubated with Fe 3 O 4 -PLGA-Ce6 NPs plus light irradiation had the highest ROS concentration [19]. The results of in vivo and in vitro experiments also strongly support the synergistic treatment of ferroptosis and PDT.…”
Section: Polymer-based Platformsmentioning
confidence: 73%
“…Specifically, stimuliresponsive delivery systems have been created to target the acidic pH and/or hypoxic environment characteristic of tumor cells [210] (Figure 5). In this respect, polymeric nanoparticles have been investigated as carriers towards various tumor cells, including breast [44,[211][212][213], colon [91,[214][215][216][217], gastric [169,[218][219][220], liver [116,221,222], bladder [46,223], skin [224,225], lung [36,92,226], prostate [94,[227][228][229], and ovarian [230][231][232] cancer cells (Table 2). In this respect, polymeric nanoparticles have been investigated as carriers towards various tumor cells, including breast [44,[211][212][213], colon [91,[214][215][216][217], gastric [169,[218]…”
Section: Drug Deliverymentioning
confidence: 99%