erythrosine has been researched along with Bone Loss, Osteoclastic in 40 studies
Fluoresceins: A family of spiro(isobenzofuran-1(3H),9'-(9H)xanthen)-3-one derivatives. These are used as dyes, as indicators for various metals, and as fluorescent labels in immunoassays.
Excerpt | Relevance | Reference |
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"The parameters for bone resorption in tissue sections showed increased number of osteoclasts in OVX WT, but not in OVX TgLRAP over that of sham operated WT or TgLRAP mice, supporting the observed bone phenotypes in OVX mice." | 1.62 | Leucine rich amelogenin peptide prevents ovariectomy-induced bone loss in mice. ( Cho, A; Gibson, CW; Hall, B; Haruyama, N; Kulkarni, AB; Suzuki, S; Yamaza, T, 2021) |
"However, bone resorption was also stimulated by BMP; this stimulated bone resorption caused by BMP was effectively inhibited with addition of bisphosphonate." | 1.39 | Prefabrication of vascularized bone allograft in a recipient rat using a flow-through vascular pedicle, bone morphogenetic protein, and bisphosphonate. ( Imaizumi, Y; Kaji, Y; Nakamura, O; Yamagami, Y; Yamamoto, T, 2013) |
"Osteoclasts are involved in bone resorption, and its activation is considered one of the causes of osteoporosis." | 1.37 | Evaluation of osteoclastic resorption activity using calcium phosphate coating combined with labeled polyanion. ( Anada, T; Imaizumi, H; Miyauchi, S; Miyazaki, T; Suzuki, O, 2011) |
"For a histometric measure of bone resorption, the number of osteoclasts along the distal surface of the alveolar wall was counted." | 1.36 | The effect of diabetes mellitus on rat mandibular bone formation and microarchitecture. ( Abbassy, MA; Soma, K; Watari, I, 2010) |
" These data demonstrated that full Runx2 gene dosage is required for maintaining normal function of osteoblasts in mechanical unloading or nonphysiological condition." | 1.33 | Runx2 is a target of mechanical unloading to alter osteoblastic activity and bone formation in vivo. ( Ezura, Y; Komori, T; Nakashima, K; Noda, M; Salingcarnboriboon, R; Tsuji, K, 2006) |
"The purposes of the present study were to differentiate the effects of pre-surgery treatment with risedronate and post-surgery treatment with a reduced dosing frequency of risedronate on trabecular bone loss in ovariectomized rats and to determine whether post-surgery treatment with a reduced dosing frequency of risedronate would have a beneficial effect on trabecular bone loss after pre-surgery treatment with risedronate by means of bone histomorphometric analysis." | 1.33 | Effect of pre- and post-surgery treatment with risedronate on trabecular bone loss in ovariectomized rats. ( Iwamoto, J; Sato, Y; Shen, CL; Takeda, T; Yeh, JK, 2006) |
"In the 10." | 1.31 | A histomorphometric analysis on bone dynamics in denture supporting tissue under continuous pressure. ( Imai, Y; Mori, S; Okamoto, M; Sato, T, 2002) |
"In vitro bone resorption assays demonstrated that MPS VII osteoclasts formed significantly smaller and fewer pits than those formed by osteoclasts derived from normal mice of the same strain." | 1.31 | Abnormal osteoclast morphology and bone remodeling in a murine model of a lysosomal storage disease. ( Monroy, MA; Ross, FP; Sands, MS; Teitelbaum, SL, 2002) |
"Moreover, the bone resorption and formation parameters in the maxilla, mandible and proximal tibia in the OVX-HCa group became equivalent to the Sham-OVX levels with the passage of time." | 1.31 | Effect of calcium supplementation on bone dynamics of the maxilla, mandible and proximal tibia in experimental osteoporosis. ( Hara, T; Mori, S; Oka, M; Sato, T; Shirai, H, 2002) |
"These results suggest that bone resorption was enhanced and dentine formation was reduced after gastrectomy." | 1.31 | Defects in mandibular bone area, enamel iron content and dentine formation following gastrectomy in rats. ( Hirama, Y; Morohashi, T; Ohta, A; Saitoh, S; Sano, T; Sasa, R; Takahara, S; Yamada, S, 2002) |
"However, the effects on bone resorption of the concentrations of these ions or their transmembrane gradients are unknown." | 1.29 | Acid and base effects on avian osteoclast activity. ( Athanasou, NA; Blair, HC; Carano, A; Schlesinger, PH; Teitelbaum, SL, 1993) |
"Evidence in support of collagenase in bone resorption from adjacent tissue (in this case, inflammatory connective tissue) would require identification of the enzyme in cells involved in the inflammatory process adjacent to the resorbing bone." | 1.26 | Localization of collagenase in human middle ear cholesteatoma. ( Abramson, M; Huang, CC, 1977) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 9 (22.50) | 18.7374 |
1990's | 7 (17.50) | 18.2507 |
2000's | 13 (32.50) | 29.6817 |
2010's | 10 (25.00) | 24.3611 |
2020's | 1 (2.50) | 2.80 |
Authors | Studies |
---|---|
Haruyama, N | 1 |
Yamaza, T | 1 |
Suzuki, S | 1 |
Hall, B | 1 |
Cho, A | 1 |
Gibson, CW | 1 |
Kulkarni, AB | 1 |
Nakamura, O | 1 |
Kaji, Y | 1 |
Imaizumi, Y | 1 |
Yamagami, Y | 1 |
Yamamoto, T | 1 |
Han, KH | 1 |
Park, JH | 1 |
Bayome, M | 1 |
Jeon, IS | 1 |
Lee, W | 1 |
Kook, YA | 1 |
Tatara, AM | 1 |
Lipner, JH | 1 |
Das, R | 1 |
Kim, HM | 1 |
Patel, N | 1 |
Ntouvali, E | 1 |
Silva, MJ | 1 |
Thomopoulos, S | 1 |
Lin, S | 1 |
Huang, J | 1 |
Zheng, L | 1 |
Liu, Y | 1 |
Liu, G | 1 |
Li, N | 1 |
Wang, K | 1 |
Zou, L | 1 |
Wu, T | 1 |
Qin, L | 1 |
Cui, L | 1 |
Li, G | 1 |
Wang, X | 1 |
Liu, L | 1 |
Gao, C | 1 |
Zhao, G | 1 |
Shen, G | 1 |
Zhang, W | 1 |
Xie, Z | 1 |
Xu, Y | 1 |
Sebaoun, JD | 1 |
Kantarci, A | 1 |
Turner, JW | 1 |
Carvalho, RS | 1 |
Van Dyke, TE | 1 |
Ferguson, DJ | 1 |
Kim, SJ | 1 |
Park, YG | 1 |
Kang, SG | 1 |
Zhou, X | 1 |
Zhang, P | 1 |
Zhang, C | 1 |
An, B | 1 |
Zhu, Z | 1 |
Abbassy, MA | 1 |
Watari, I | 1 |
Soma, K | 1 |
Miyazaki, T | 1 |
Miyauchi, S | 1 |
Anada, T | 1 |
Imaizumi, H | 1 |
Suzuki, O | 1 |
Tanaka, M | 2 |
Yamashita, E | 1 |
Anwar, RB | 1 |
Yamada, K | 1 |
Ohshima, H | 1 |
Nomura, S | 1 |
Ejiri, S | 2 |
Draenert, GF | 1 |
Huetzen, DO | 1 |
Kämmerer, PW | 1 |
Palarie, V | 1 |
Nacu, V | 1 |
Wagner, W | 1 |
Lean, JM | 1 |
Jagger, CJ | 1 |
Kirstein, B | 1 |
Fuller, K | 1 |
Chambers, TJ | 1 |
Matsumoto, C | 1 |
Inada, M | 1 |
Toda, K | 1 |
Miyaura, C | 1 |
Salingcarnboriboon, R | 1 |
Tsuji, K | 1 |
Komori, T | 1 |
Nakashima, K | 1 |
Ezura, Y | 1 |
Noda, M | 1 |
Iwamoto, J | 1 |
Takeda, T | 1 |
Sato, Y | 1 |
Shen, CL | 1 |
Yeh, JK | 1 |
Sullivan, PG | 1 |
Schliephake, H | 1 |
Neukam, FW | 1 |
Hutmacher, D | 1 |
Wüstenfeld, H | 1 |
Turner, RT | 1 |
Carano, A | 1 |
Schlesinger, PH | 1 |
Athanasou, NA | 1 |
Teitelbaum, SL | 2 |
Blair, HC | 1 |
Kuroda, H | 1 |
Nakamura, M | 1 |
Kamiyama, K | 1 |
Freitag, V | 1 |
Landau, H | 1 |
Frisch, T | 2 |
Sørensen, MS | 2 |
Overgaard, S | 2 |
Lind, M | 1 |
Bretlau, P | 2 |
Howlett, CR | 1 |
Childs, LM | 1 |
Paschalis, EP | 1 |
Xing, L | 1 |
Dougall, WC | 1 |
Anderson, D | 1 |
Boskey, AL | 1 |
Puzas, JE | 1 |
Rosier, RN | 1 |
O'Keefe, RJ | 1 |
Boyce, BF | 1 |
Schwarz, EM | 1 |
Imai, Y | 1 |
Sato, T | 2 |
Mori, S | 2 |
Okamoto, M | 1 |
Monroy, MA | 1 |
Ross, FP | 1 |
Sands, MS | 1 |
Shirai, H | 1 |
Oka, M | 1 |
Hara, T | 1 |
Toyooka, E | 1 |
Kohno, S | 1 |
Ozawa, H | 1 |
Morohashi, T | 1 |
Hirama, Y | 1 |
Takahara, S | 1 |
Sano, T | 1 |
Saitoh, S | 1 |
Ohta, A | 1 |
Sasa, R | 1 |
Yamada, S | 1 |
Abramson, M | 1 |
Huang, CC | 1 |
Popoff, SN | 1 |
Schneider, GB | 1 |
Sontag, W | 2 |
Hammond, RH | 2 |
Storey, E | 2 |
Herrmann, HJ | 1 |
Deeb, S | 1 |
Gallina, AM | 1 |
Helmboldt, CF | 1 |
Frier, HI | 1 |
Nielsen, SW | 1 |
Eaton, HD | 1 |
Trial | Phase | Enrollment | Study Type | Start Date | Status | ||
---|---|---|---|---|---|---|---|
Randomized, Blinded, Controlled Clinical Trial of Surgically Facilitated Orthodontic Treatment in the Mandibular Anterior Region[NCT01866345] | 0 participants (Actual) | Interventional | 2013-08-31 | Withdrawn (stopped due to Cannot find subjects to particpate) | |||
Efficiency of Piezotome-Corticision Assisted Orthodontics in Alleviating Mandibular Anterior Crowding - A Randomized Controlled Clinical Trial[NCT02026258] | 41 participants (Actual) | Interventional | 2011-12-31 | Completed | |||
[information is prepared from clinicaltrials.gov, extracted Sep-2024] |
Days until complete alignment of mandibular anterior alignment was achieved after wire insertion on both groups. Complete alignment was based on Little's Irregularity index (Sum of contact displacement in mm between the anterior teeth from mesial of one canine to the mesial of the contralateral canine) of less than 2mm. (NCT02026258)
Timeframe: From the placement of the first wire to complete alignment of mandibular anteiror teeth, assessed up to 9 months
Intervention | Days to complete alignment (Mean) |
---|---|
Orthodontics no Piezocision | 112 |
Orthodontics With Piezotome Corticision | 102.13 |
"Binomial measurement in questionnaire on medications taken and satisfaction with the procedure~Did you take any pain medication after the procedure? Y/N (Count Yes)~Would you undergo this procedure again? Y/N (Count Yes)~Would you recommend this procedure to a friend? Y/N (Count Yes)" (NCT02026258)
Timeframe: 4-5 weeks after first wire placement
Intervention | Participants (Count of Participants) | ||
---|---|---|---|
Use of Medications | Undergo procedure again | Recommend Procedure to Friend | |
Orthodontics no Piezocision | 8 | 11 | 13 |
Orthodontics With Piezotome Corticision | 11 | 14 | 14 |
"Visual analogue Scale from 0-100~Are you satisfied with your treatment? Very- Not Satisfied (0-100)~How easy was the procedure to you? Easy-Complicated (0-100)" (NCT02026258)
Timeframe: 4-5 weeks after first wire placement
Intervention | units on a scale (Mean) | |
---|---|---|
Ease of Procedure | Satisfaction with Procedure | |
Orthodontics no Piezocision | 7.85 | 4.31 |
Orthodontics With Piezotome Corticision | 9.35 | 9.08 |
"Specific questions questionnaire included:~1) How much pain/discomfort at the following time points? 1) Immediately after first wire placement (T0), 2) 1 hour, (T1) 3) 12 hrs (T2) and 4) Seven days after (T3). Rated on a scale from 0-100 (No pain-Unbearable pain)" (NCT02026258)
Timeframe: Immediate to 1 week after wire placement (T0-T3)
Intervention | units on a scale (Mean) | |||
---|---|---|---|---|
Visual Analogue Scale (VAS) at T0 (0-100) | VAS T1 | VAS T2 | VAS T3 | |
Orthodontics no Piezocision | 7.57 | 12.55 | 20.71 | 8.01 |
Orthodontics With Piezotome Corticision | 18.25 | 28.74 | 28.93 | 11.46 |
40 other studies available for erythrosine and Bone Loss, Osteoclastic
Article | Year |
---|---|
Leucine rich amelogenin peptide prevents ovariectomy-induced bone loss in mice.
Topics: Animals; Bone Density; Bone Resorption; Cells, Cultured; Collagen Type I, alpha 1 Chain; Dental Enam | 2021 |
Prefabrication of vascularized bone allograft in a recipient rat using a flow-through vascular pedicle, bone morphogenetic protein, and bisphosphonate.
Topics: Alendronate; Animals; Arteries; Bone Density Conservation Agents; Bone Morphogenetic Protein 2; Bone | 2013 |
Effect of frequent application of low-level laser therapy on corticotomized tooth movement in dogs: a pilot study.
Topics: Acid Phosphatase; Alveolar Process; Animals; Anthraquinones; Bicuspid; Bone Resorption; Cell Prolife | 2014 |
The role of muscle loading on bone (Re)modeling at the developing enthesis.
Topics: Alendronate; Animals; Animals, Newborn; Anthraquinones; Bone Density Conservation Agents; Bone Resor | 2014 |
Glucocorticoid-induced osteoporosis in growing rats.
Topics: Acetates; Animals; Biomarkers; Biomechanical Phenomena; Body Weight; Bone Resorption; Densitometry; | 2014 |
[Antagonistic effects of estrogen on iron-induced bone resorption and its mechanism].
Topics: Animals; Bone Resorption; Estradiol; Estrogen Antagonists; Estrogens; Female; Femur; Ferric Compound | 2014 |
Modeling of trabecular bone and lamina dura following selective alveolar decortication in rats.
Topics: Acid Phosphatase; Alveolar Process; Animals; Anthraquinones; Biomarkers; Bone Remodeling; Bone Resor | 2008 |
Effects of Corticision on paradental remodeling in orthodontic tooth movement.
Topics: Alveolar Process; Animals; Anthraquinones; Bone Marrow; Bone Remodeling; Bone Resorption; Cats; Cusp | 2009 |
Tetracyclines inhibit rat osteoclast formation and activity in vitro and affect bone turnover in young rats in vivo.
Topics: Age Factors; Animals; Anthraquinones; Anti-Bacterial Agents; Bone and Bones; Bone Density Conservati | 2010 |
The effect of diabetes mellitus on rat mandibular bone formation and microarchitecture.
Topics: Alveolar Process; Animals; Blood Glucose; Body Weight; Bone Density; Bone Remodeling; Bone Resorptio | 2010 |
Evaluation of osteoclastic resorption activity using calcium phosphate coating combined with labeled polyanion.
Topics: Animals; Bisbenzimidazole; Bone Resorption; Calcium Phosphates; Cell Line; Chondroitin Sulfates; DNA | 2011 |
Radiological and histologic studies of the mandibular cortex of ovariectomized monkeys.
Topics: Animals; Bone Density; Bone Remodeling; Bone Resorption; Female; Fluoresceins; Fluorescent Dyes; Hav | 2011 |
Dexrazoxane shows cytoprotective effects in zoledronic acid-treated human cells in vitro and in the rabbit tibia model in vivo.
Topics: Animals; Apoptosis; Bone Density Conservation Agents; Bone Resorption; Cell Culture Techniques; Cell | 2012 |
Hydrogen peroxide is essential for estrogen-deficiency bone loss and osteoclast formation.
Topics: Animals; Antioxidants; Bone Marrow Cells; Bone Resorption; Catalase; Cell Differentiation; Cells, Cu | 2005 |
Estrogen and androgen play distinct roles in bone turnover in male mice before and after reaching sexual maturity.
Topics: Age Factors; Androgens; Animals; Aromatase; Bone and Bones; Bone Density; Bone Resorption; Estrogens | 2006 |
Runx2 is a target of mechanical unloading to alter osteoblastic activity and bone formation in vivo.
Topics: Amino Acids; Animals; Bone and Bones; Bone Density; Bone Development; Bone Resorption; Core Binding | 2006 |
Effect of pre- and post-surgery treatment with risedronate on trabecular bone loss in ovariectomized rats.
Topics: Absorptiometry, Photon; Animals; Bone Density; Bone Density Conservation Agents; Bone Diseases, Meta | 2006 |
Volume change in the growing canine mandible measured by intra-vital fluorescent dye three-dimensional reconstruction.
Topics: Animals; Bone Resorption; Cephalometry; Dogs; Fluoresceins; Fluorescent Dyes; Mandible | 1983 |
Experimental transplantation of hydroxylapatite-bone composite grafts.
Topics: Angiography; Animals; Anthraquinones; Bone Regeneration; Bone Resorption; Bone Transplantation; Dent | 1995 |
Cancellous bone turnover in growing rats: time-dependent changes in association between calcein label and osteoblasts.
Topics: Animals; Bone Development; Bone Resorption; Fluoresceins; Indicators and Reagents; Male; Models, Bio | 1994 |
Acid and base effects on avian osteoclast activity.
Topics: Acid-Base Equilibrium; Animals; Bicarbonates; Bone Resorption; Carbon Dioxide; Cells, Cultured; Dose | 1993 |
Effects of calcitonin and parathyroid hormone on the distribution of F-actin in the clear zone of osteoclasts in vivo.
Topics: Actins; Animals; Bone Resorption; Calcitonin; Fluoresceins; Injections, Intraperitoneal; Osteoclasts | 1996 |
Histological findings in the alveolar sockets and tooth roots after experimental mandibular fractures in dogs.
Topics: Alveolar Process; Animals; Anthraquinones; Bone Plates; Bone Remodeling; Bone Resorption; Bone Screw | 1997 |
Volume-referent bone turnover estimated from the interlabel area fraction after sequential labeling.
Topics: Animals; Bone Density; Bone Remodeling; Bone Resorption; Dogs; Fluoresceins; Fluorescent Dyes; Forel | 1998 |
Early bone formation around calcium-ion-implanted titanium inserted into rat tibia.
Topics: Alloys; Animals; Artifacts; Biocompatible Materials; Bone Resorption; Calcium; Fluoresceins; Materia | 1999 |
Estimation of volume referent bone turnover in the otic capsule after sequential point labeling.
Topics: Animals; Bone Density; Bone Remodeling; Bone Resorption; Dogs; Fluoresceins; Fluorescent Dyes; Image | 2000 |
In vivo RANK signaling blockade using the receptor activator of NF-kappaB:Fc effectively prevents and ameliorates wear debris-induced osteolysis via osteoclast depletion without inhibiting osteogenesis.
Topics: Acid Phosphatase; Animals; Bone Matrix; Bone Remodeling; Bone Resorption; Female; Fluoresceins; Glyc | 2002 |
A histomorphometric analysis on bone dynamics in denture supporting tissue under continuous pressure.
Topics: Acrylic Resins; Analysis of Variance; Animals; Bone Matrix; Bone Resorption; Calcification, Physiolo | 2002 |
Abnormal osteoclast morphology and bone remodeling in a murine model of a lysosomal storage disease.
Topics: Animals; Bone Remodeling; Bone Resorption; Disease Models, Animal; Femur; Fluoresceins; Fluorescent | 2002 |
Effect of calcium supplementation on bone dynamics of the maxilla, mandible and proximal tibia in experimental osteoporosis.
Topics: Analysis of Variance; Animals; Body Weight; Bone Matrix; Bone Resorption; Calcium, Dietary; Dietary | 2002 |
Effects of ovariectomy on trabecular structures of rat alveolar bone.
Topics: Alveolar Process; Analysis of Variance; Animals; Bone Density; Bone Marrow; Bone Remodeling; Bone Re | 2002 |
Defects in mandibular bone area, enamel iron content and dentine formation following gastrectomy in rats.
Topics: Anemia, Iron-Deficiency; Animals; Bone Resorption; Calcium; Dental Enamel; Dentin; Dentinogenesis; E | 2002 |
Localization of collagenase in human middle ear cholesteatoma.
Topics: Animals; Bone Resorption; Cholesteatoma; Collagen; Disease Models, Animal; Ear Diseases; Ear, Middle | 1977 |
Processing of concanavalin A-receptor complexes by rat osteoclasts in vitro.
Topics: Animals; Bone Resorption; Concanavalin A; Endocytosis; Fluorescein-5-isothiocyanate; Fluoresceins; I | 1986 |
Quantitative measurement of periosteal and cortical-endosteal bone formation and resorption in the midshaft of female rat femur.
Topics: Aging; Animals; Autoradiography; Bone Development; Bone Resorption; Female; Femur; Fluoresceins; Min | 1986 |
Quantitative measurements of periosteal and cortical-endosteal bone formation and resorption in the midshaft of male rat femur.
Topics: Aging; Animals; Body Weight; Bone Development; Bone Resorption; Female; Femur; Fluoresceins; Male; M | 1986 |
Measurement of growth and resorption of bone in the seventh caudal vertebra of the rat.
Topics: Animals; Biometry; Body Weight; Bone Development; Bone Resorption; Fluoresceins; Male; Microscopy, U | 1974 |
Fluorescence microscopical studies on OTC and DCAF-OTC labelled bones of parathormone-treated and non-treated rats. I. Fluorescence microscopical appearances and histology of parathormone action.
Topics: Animals; Bone and Bones; Bone Resorption; Epiphyses; Fluoresceins; Injections, Intraperitoneal; Male | 1974 |
Bone growth in the hypovitaminotic A calf.
Topics: Absorption; Animals; Body Height; Body Weight; Bone Development; Bone Diseases, Developmental; Bone | 1970 |
Measurement of growth and resorption of bone in rats fed meat diet.
Topics: Animals; Anthraquinones; Bone Development; Bone Resorption; Diet; Femur; Fluoresceins; Male; Meat; M | 1970 |