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1 4) mineralization evaluated by von Kossa and Alizarin-red.
2                                              Alizarin red-/Alcian blue-stained skeletons were prepare
3                              X-ray, microCT, alizarin red/alcian blue and calcein staining revealed s
4                                              Alizarin red and Alcian blue whole mount analysis of the
5  formed mineralized nodules, and stained for alizarin red and alkaline phosphatase, while expressing
6 ents were immunohistochemically stained with Alizarin red and human RANKL antibody.
7  smooth muscle cells in culture, as shown by Alizarin red and van Kossa stain and increased alkaline
8 was observed in those specimens stained with Alizarin red and Von Kossa after 21 and 28 days.
9                                              Alizarin red and von Kossa staining confirmed the dysfun
10                                              Alizarin red and von Kossa staining demonstrated that 15
11 nfirmed by alkaline phosphatase activity and Alizarin red and Von Kossa staining results.
12 rum: re-calcification can be demonstrated by Alizarin Red and von Kossa stains, by depletion of serum
13 issue deposits, which reacted positively for alizarin red and von Kossa, and demonstrated increased e
14 ated by alkaline phosphatase (ALP) activity, Alizarin Red, and Von Kossa staining followed by scannin
15 (osteopontin, alkaline phosphatase activity, Alizarin red, and Von Kossa) compared with the control g
16 as well as alamar blue, acridine orange, and alizarin red assays.
17 ent pups double stained with alcian blue and alizarin red exhibited generalized, pronounced skeletal
18 le-mount homozygous lenses were stained with Alizarin red in the cataract region.
19 e chain reaction and histochemical staining (Alizarin Red, Oil Red O, Toluidine Blue).
20 h before re-calcification can be detected by Alizarin Red or von Kossa staining and before the subseq
21                                              Alizarin red, osteopontin, and osteocalcin protein expre
22 er numbers of von Kossa-positive nodules and alizarin red-positive nodules compared with WT cells wit
23 he interaction of the commercially available alizarin red S (ARS) chemosensor with the nanomaterial,
24                             The oxidation of alizarin red s (ARS) in the boron-ARS complex at MNP/CNT
25                                              Alizarin red s (ARS) is used as a redox indicator.
26                                              Alizarin red S (ARS) staining has been used for decades
27 cid and the diol-containing, fluorescent dye Alizarin Red S (ARS) was probed.
28 ipogenic differentiation were analyzed using alizarin red S and oil red O staining, respectively.
29 fluid samples were compared by staining with alizarin red S and oxytetracycline.
30 cell line was confirmed histologically using alizarin red S and von Kossa staining as well as Raman m
31 printed carbon electrodes modified with poly Alizarin Red S are employed as electrochemical sensors i
32 on, alkaline phosphatase (ALP) staining, and Alizarin Red S biomineralization assays were performed t
33 le with the diol-containing, fluorescent dye Alizarin Red S is probed.
34                                The number of alizarin red S positive colonies produced by the hSG-MSC
35                        Results indicate that Alizarin Red S reacts with both the boronic (neutral, tr
36 rphologically, staining with trypan blue and alizarin red S showed an apparently intact endothelial m
37 uration/mineralization), von Kossa stain and alizarin red S stain for mineralization, and enzyme assa
38 nt, real-time polymerase chain reaction, and alizarin red S staining and calcium content analysis wer
39 d fewer false-positive test results than did alizarin red S staining and could provide estimates of t
40   Histochemical analyses using Von Kossa and Alizarin red S staining of kidney sections confirmed the
41 s/immunocytochemistry (for protein), whereas alizarin red S staining revealed CE cell shape.
42                                              Alizarin red S staining was used to detect calcium-conta
43 osphatase (ALP) activity/staining as well as alizarin red S staining when compared with DPSCs of thei
44                 CCK8 assays, flow cytometry, Alizarin red S staining, ALP staining, qRT-PCR, and west
45 s post-fertilization (dpf) using microscopy, Alizarin Red S staining, and microCT was performed.
46 al skeletal patterning, based on Alcian blue/Alizarin red S staining.
47              Mineralization was evaluated by Alizarin-Red-S staining.
48 mation was measured by Alcian blue stain and Alizarin red stain.
49 d for 4 to 7 wks, formed toluidine-blue- and alizarin-red-stainable nodules, indicative of chondrogen
50                                              Alizarin red stained calcified deposits that did not loc
51 s of panoramic and microscopic images of the alizarin red-stained corneal endothelium.
52 t reduced calcium deposition, as assessed by alizarin red staining (VICs: p < 0.0001; AV leaflets: p
53  mineral deposition by VSMCs, as assessed by alizarin red staining and (45)Ca accumulation.
54                                              Alizarin red staining and immunohistochemistry of GFP an
55 ed enhanced mineralization, as determined by alizarin red staining and mineralized marker expression.
56  MM, as measured by ALP activity at d 14 and Alizarin Red staining at d 21 (by 1.57+/-0.03- and 1.71+
57       Activation of SIRT1 by SRT1720 reduced Alizarin red staining by a third, via inhibition of the
58                                              Alizarin Red staining clearly showed that the elastin fi
59                                              Alizarin red staining data confirms the presence of calc
60                Calcification was assessed by alizarin red staining in primary human trabecular meshwo
61 uantitative histopathologic evaluations with Alizarin Red staining independently confirmed the respec
62                              Alcian Blue and Alizarin Red staining of the cranium exhibited an unfuse
63                                              Alizarin red staining showed calcification.
64                                              Alizarin Red staining showed that osteogenic induction m
65                                              Alizarin red staining suggests mineralization at the per
66                                              Alizarin Red staining suggests that manganese bound to p
67 used to interveneosteoblasts (OBs).CCK-8 and Alizarin Red staining were used to investigate the proli
68 ne phosphatase activity) and mineralization (alizarin red staining) compared with cells treated with
69 tizing encephalitis and decreased bone size (Alizarin red staining) were noticed.
70 line phosphatase (ALP) activity measurement, alizarin red staining, and electron-dispersive x-ray spe
71 ed by micro-computed tomography, Alcian blue/Alizarin red staining, and histology.
72                                              Alizarin red staining, microcomputerized tomography (mic
73 assess, by immunofluorescence microscopy and Alizarin red staining, the potential impact of intraleaf
74 ification was assessed using micro-CT scans, Alizarin Red staining, Von Kossa staining, and calcium a
75            IOL calcification was analyzed by alizarin red staining, von Kossa staining, scanning elec
76 itriol) reduced calcification as measured by Alizarin Red staining.
77 f mineralization by alkaline phosphatase and alizarin red staining.
78 he medium and mineral deposition, assayed by Alizarin red staining.
79 s measured by the cresolphthalein method and alizarin red staining.
80         Calcium deposition was quantified by Alizarin Red Staining.
81     In vitro calcification was determined by Alizarin red staining.
82                     Functional studies using Alizarin-Red staining showed robust mineral deposits wit
83 y electron microscopy, whereas von Kossa and alizarin red stains showed no evidence of calcification.
84  of vibrissae, as confirmed by von Kossa and alizarin red stains.
85 sirius red to demonstrate collage type 1 and Alizarin red to demonstrate calcium/mineralisation furth
86 s that stained with the calcium deposit dye, Alizarin red, were abundant in the insoluble fraction fr