2022
DOI: 10.1016/j.jcis.2022.03.109
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Facile fabrication of hypercrosslinked microporous polymer nanospheres for effective inhibition of triple negative breast cancer cells proliferation

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Cited by 5 publications
(4 citation statements)
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“…In this manner, functionalized hyper-crosslinked microporous organic nanospheres, named HMPNs-EDA-ssDNA (Figure 10A,B), were developed, which showed strong blue fluorescence. 121 The cellular uptake of the functionalized nanospheres (HMPNs, HMPNs-EDA, and HMPNs-EDA-ssDNA) in different cell types (HEK293, SUM-159, and HeLa) was tested by bioimaging using confocal laser scanning microscopy. After adding the HMPNs, a clear blue fluorescence was observed inside the cells, indicating successful internalization.…”
Section: Bioimagingmentioning
confidence: 99%
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“…In this manner, functionalized hyper-crosslinked microporous organic nanospheres, named HMPNs-EDA-ssDNA (Figure 10A,B), were developed, which showed strong blue fluorescence. 121 The cellular uptake of the functionalized nanospheres (HMPNs, HMPNs-EDA, and HMPNs-EDA-ssDNA) in different cell types (HEK293, SUM-159, and HeLa) was tested by bioimaging using confocal laser scanning microscopy. After adding the HMPNs, a clear blue fluorescence was observed inside the cells, indicating successful internalization.…”
Section: Bioimagingmentioning
confidence: 99%
“…For bioimaging purposes, the fluorescence molecule is powerful to visualize particular cells due to their emission properties in response to the specific wavelength of light. In this manner, functionalized hyper‐crosslinked microporous organic nanospheres, named HMPNs‐EDA‐ssDNA (Figure 10A,B), were developed, which showed strong blue fluorescence 121 . The cellular uptake of the functionalized nanospheres (HMPNs, HMPNs‐EDA, and HMPNs‐EDA‐ssDNA) in different cell types (HEK293, SUM‐159, and HeLa) was tested by bioimaging using confocal laser scanning microscopy.…”
Section: Biomedical Applicationsmentioning
confidence: 99%
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“…HCP is characterized by simple synthesis methods, low cost, a wide choice of monomers, high yields, and easy post-modification [ 20 , 21 ]. Due to their relatively stable porous structure and resistance to collapse, HCPs have been widely used in catalysis [ 22 , 23 ], adsorption [ 24 ], sensing [ 25 , 26 ], drug delivery [ 27 , 28 ], gas storage [ 29 ], and other fields [ 30 , 31 , 32 ]. To date, there are already reports on the comprehensive review of the applications of hyper-crosslinked polymers (HCPs) in areas such as biomedical applications [ 33 ], removal of heavy metal ions [ 34 ], and dye adsorption [ 35 ].…”
Section: Introductionmentioning
confidence: 99%