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1 al chromophore by ET from the electrolyte to alizarin.
2 acilitated by vibrational modes localized on alizarin.
7 s and historical periods, these dyes (mainly alizarin and purpurin) are traditionally analyzed by mea
10 photoinduced electron transfer (ET) from the alizarin chromophore into the TiO2 surface is investigat
13 to investigate the electron dynamics at the alizarin/I2-/TiO2 interface this study uses a novel stat
14 -clearing and calcium minerals staining with alizarin, mineralisation was evaluated using whole body
15 ductor acceptor states, TiO2 sensitized with alizarin presents a novel case in which the molecular ph
16 rapped at the surface to the ground state of alizarin proceeds on a 1 ps time scale and is facilitate
19 formed mineralized nodules, and stained for alizarin red and alkaline phosphatase, while expressing
21 smooth muscle cells in culture, as shown by Alizarin red and van Kossa stain and increased alkaline
26 rum: re-calcification can be demonstrated by Alizarin Red and von Kossa stains, by depletion of serum
27 issue deposits, which reacted positively for alizarin red and von Kossa, and demonstrated increased e
29 ent pups double stained with alcian blue and alizarin red exhibited generalized, pronounced skeletal
31 h before re-calcification can be detected by Alizarin Red or von Kossa staining and before the subseq
32 he interaction of the commercially available alizarin red S (ARS) chemosensor with the nanomaterial,
37 ipogenic differentiation were analyzed using alizarin red S and oil red O staining, respectively.
39 cell line was confirmed histologically using alizarin red S and von Kossa staining as well as Raman m
40 printed carbon electrodes modified with poly Alizarin Red S are employed as electrochemical sensors i
41 on, alkaline phosphatase (ALP) staining, and Alizarin Red S biomineralization assays were performed t
45 rphologically, staining with trypan blue and alizarin red S showed an apparently intact endothelial m
46 uration/mineralization), von Kossa stain and alizarin red S stain for mineralization, and enzyme assa
47 nt, real-time polymerase chain reaction, and alizarin red S staining and calcium content analysis wer
48 d fewer false-positive test results than did alizarin red S staining and could provide estimates of t
49 Histochemical analyses using Von Kossa and Alizarin red S staining of kidney sections confirmed the
52 osphatase (ALP) activity/staining as well as alizarin red S staining when compared with DPSCs of thei
58 t reduced calcium deposition, as assessed by alizarin red staining (VICs: p < 0.0001; AV leaflets: p
61 ed enhanced mineralization, as determined by alizarin red staining and mineralized marker expression.
62 MM, as measured by ALP activity at d 14 and Alizarin Red staining at d 21 (by 1.57+/-0.03- and 1.71+
67 uantitative histopathologic evaluations with Alizarin Red staining independently confirmed the respec
73 used to interveneosteoblasts (OBs).CCK-8 and Alizarin Red staining were used to investigate the proli
74 ne phosphatase activity) and mineralization (alizarin red staining) compared with cells treated with
76 line phosphatase (ALP) activity measurement, alizarin red staining, and electron-dispersive x-ray spe
79 assess, by immunofluorescence microscopy and Alizarin red staining, the potential impact of intraleaf
80 ification was assessed using micro-CT scans, Alizarin Red staining, Von Kossa staining, and calcium a
88 y electron microscopy, whereas von Kossa and alizarin red stains showed no evidence of calcification.
90 sirius red to demonstrate collage type 1 and Alizarin red to demonstrate calcium/mineralisation furth
91 ated by alkaline phosphatase (ALP) activity, Alizarin Red, and Von Kossa staining followed by scannin
92 (osteopontin, alkaline phosphatase activity, Alizarin red, and Von Kossa) compared with the control g
95 s that stained with the calcium deposit dye, Alizarin red, were abundant in the insoluble fraction fr
97 er numbers of von Kossa-positive nodules and alizarin red-positive nodules compared with WT cells wit
102 d for 4 to 7 wks, formed toluidine-blue- and alizarin-red-stainable nodules, indicative of chondrogen
105 the back electron transfer (ET) from TiO2 to alizarin, the ET from the surface to the electrolyte, an
108 ed the change in the interface properties of alizarin-TiO2 system as a result of the externally appli