2022
DOI: 10.3390/molecules27092856
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Oligomer Sensor Nanoarchitectonics for “Turn-On” Fluorescence Detection of Cholesterol at the Nanomolar Level

Abstract: Sensitive and rapid monitoring of cholesterol levels in the human body are highly desirable as they are directly related to the diagnosis of cardiovascular diseases. By using the nanoarchitectonic approach, a novel fluorescent conjugated oligofluorene (OFP-CD) functionalized with β-cyclodextrin (β-CD) was assembled for “Turn-On” fluorescence sensing of cholesterol. The appended β-CD units in OFP-CD enabled the forming of host-guest complexes with dabsyl chloride moieties in water, resulting in fluorescence que… Show more

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Cited by 7 publications
(3 citation statements)
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“…53 Nanoarchitectonics can be also applied to any subject. It is applied in basic fields such as material synthesis, [54][55][56] structural control, 57,58 elucidation of physical phenomena, 59,60 and biochemical studies, 61,62 as well as in applied fields such as sensors, 63,64 devices, 65,66 catalysis, 67,68 energy, 69,70 environment, 71,72 and biomedicine. 73,74 Learning from self-assembly, which relies primarily on equilibrium processes, nanoarchitectonics combines equilibrium and parallel processes.…”
Section: Introductionmentioning
confidence: 99%
“…53 Nanoarchitectonics can be also applied to any subject. It is applied in basic fields such as material synthesis, [54][55][56] structural control, 57,58 elucidation of physical phenomena, 59,60 and biochemical studies, 61,62 as well as in applied fields such as sensors, 63,64 devices, 65,66 catalysis, 67,68 energy, 69,70 environment, 71,72 and biomedicine. 73,74 Learning from self-assembly, which relies primarily on equilibrium processes, nanoarchitectonics combines equilibrium and parallel processes.…”
Section: Introductionmentioning
confidence: 99%
“…It is known to be useful in the field of biotechnology, encompassing basic biological [89][90][91][92] and biomedical applications [93][94][95][96]. It also has notable applications in various chemical sensors [97][98][99][100][101] and biosensors [102][103][104][105][106]. There is a high possibility for nanoarchitectonics to make major contributions to sensing in biological systems, which is necessary to address modern healthcare demands.…”
Section: Introductionmentioning
confidence: 99%
“…Since this methodology is based on a highly general concept, there are almost no restrictions on the materials and functions for which it can be applied. Therefore, nanoarchitectonics is being used in many research fields: basic science fields such as materials production [ 60 , 61 , 62 ], structural regulation [ 63 , 64 , 65 ], investigation of physical science [ 66 , 67 , 68 ], and basic biochemistry [ 69 , 70 , 71 ]; application-oriented fields such as energy [ 72 , 73 , 74 ], environmental [ 75 , 76 , 77 ], and biomedical [ 78 , 79 , 80 ]; and target-oriented fields such as catalysts [ 81 , 82 , 83 ], sensors [ 84 , 85 , 86 ], devices [ 87 , 88 , 89 ], and drug-delivery systems [ 90 , 91 , 92 ]. Since materials are fundamentally composed of atoms and molecules, the nanoarchitectonics methodology of building materials from atomic and molecular nano-units may be applicable to all materials.…”
Section: Introduction: Nanoarchitectonics For Molecules Materials And...mentioning
confidence: 99%