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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 ents were immunohistochemically stained with Alizarin red and human RANKL antibody.
6 was observed in those specimens stained with Alizarin red and Von Kossa after 21 and 28 days.
7                                              Alizarin red and von Kossa staining confirmed the dysfun
8                                              Alizarin red and von Kossa staining demonstrated that 15
9 nfirmed by alkaline phosphatase activity and Alizarin red and Von Kossa staining results.
10 rum: re-calcification can be demonstrated by Alizarin Red and von Kossa stains, by depletion of serum
11 (osteopontin, alkaline phosphatase activity, Alizarin red, and Von Kossa) compared with the control g
12 ent pups double stained with alcian blue and alizarin red exhibited generalized, pronounced skeletal
13 h before re-calcification can be detected by Alizarin Red or von Kossa staining and before the subseq
14                                              Alizarin red, osteopontin, and osteocalcin protein expre
15 er numbers of von Kossa-positive nodules and alizarin red-positive nodules compared with WT cells wit
16                                              Alizarin red s (ARS) is used as a redox indicator.
17                                              Alizarin red S (ARS) staining has been used for decades
18 cid and the diol-containing, fluorescent dye Alizarin Red S (ARS) was probed.
19 fluid samples were compared by staining with alizarin red S and oxytetracycline.
20 cell line was confirmed histologically using alizarin red S and von Kossa staining as well as Raman m
21 printed carbon electrodes modified with poly Alizarin Red S are employed as electrochemical sensors i
22 le with the diol-containing, fluorescent dye Alizarin Red S is probed.
23                        Results indicate that Alizarin Red S reacts with both the boronic (neutral, tr
24 rphologically, staining with trypan blue and alizarin red S showed an apparently intact endothelial m
25 uration/mineralization), von Kossa stain and alizarin red S stain for mineralization, and enzyme assa
26 nt, real-time polymerase chain reaction, and alizarin red S staining and calcium content analysis wer
27 d fewer false-positive test results than did alizarin red S staining and could provide estimates of t
28   Histochemical analyses using Von Kossa and Alizarin red S staining of kidney sections confirmed the
29 s/immunocytochemistry (for protein), whereas alizarin red S staining revealed CE cell shape.
30                                              Alizarin red S staining was used to detect calcium-conta
31 osphatase (ALP) activity/staining as well as alizarin red S staining when compared with DPSCs of thei
32 al skeletal patterning, based on Alcian blue/Alizarin red S staining.
33              Mineralization was evaluated by Alizarin-Red-S staining.
34 mation was measured by Alcian blue stain and Alizarin red stain.
35 d for 4 to 7 wks, formed toluidine-blue- and alizarin-red-stainable nodules, indicative of chondrogen
36                                              Alizarin red stained calcified deposits that did not loc
37 s of panoramic and microscopic images of the alizarin red-stained corneal endothelium.
38  mineral deposition by VSMCs, as assessed by alizarin red staining and (45)Ca accumulation.
39                                              Alizarin red staining and immunohistochemistry of GFP an
40 ed enhanced mineralization, as determined by alizarin red staining and mineralized marker expression.
41  MM, as measured by ALP activity at d 14 and Alizarin Red staining at d 21 (by 1.57+/-0.03- and 1.71+
42                                              Alizarin Red staining clearly showed that the elastin fi
43                Calcification was assessed by alizarin red staining in primary human trabecular meshwo
44 uantitative histopathologic evaluations with Alizarin Red staining independently confirmed the respec
45                              Alcian Blue and Alizarin Red staining of the cranium exhibited an unfuse
46                                              Alizarin red staining showed calcification.
47                                              Alizarin red staining suggests mineralization at the per
48 ne phosphatase activity) and mineralization (alizarin red staining) compared with cells treated with
49 line phosphatase (ALP) activity measurement, alizarin red staining, and electron-dispersive x-ray spe
50                                              Alizarin red staining, microcomputerized tomography (mic
51 f mineralization by alkaline phosphatase and alizarin red staining.
52 he medium and mineral deposition, assayed by Alizarin red staining.
53 itriol) reduced calcification as measured by Alizarin Red staining.
54 s measured by the cresolphthalein method and alizarin red staining.
55 y electron microscopy, whereas von Kossa and alizarin red stains showed no evidence of calcification.
56  of vibrissae, as confirmed by von Kossa and alizarin red stains.
57 sirius red to demonstrate collage type 1 and Alizarin red to demonstrate calcium/mineralisation furth

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