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scc25 cells  (ATCC)


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    Structured Review

    ATCC scc25 cells
    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
    Scc25 Cells, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 1324 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/scc-25/pmc13173713-52-4-10?v=ATCC
    Average 97 stars, based on 1324 article reviews
    scc25 cells - by Bioz Stars, 2026-07
    97/100 stars

    Images

    1) Product Images from "Targeting CGRP signaling alleviates cancer-associated pain in oral squamous cell carcinoma"

    Article Title: Targeting CGRP signaling alleviates cancer-associated pain in oral squamous cell carcinoma

    Journal: BMC Oral Health

    doi: 10.1186/s12903-026-08444-x

    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and SCC25 xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
    Figure Legend Snippet: Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and SCC25 xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05

    Techniques Used: Transplantation Assay, Injection, Two Tailed Test



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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    f 12  (ATCC)
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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    eagle  (ATCC)
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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    scc25  (ATCC)
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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    scc 25  (ATCC)
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    ATCC scc 25
    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
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    ATCC scc 25 crl 1628 cells
    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and <t>SCC25</t> xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05
    Scc 25 Crl 1628 Cells, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and SCC25 xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05

    Journal: BMC Oral Health

    Article Title: Targeting CGRP signaling alleviates cancer-associated pain in oral squamous cell carcinoma

    doi: 10.1186/s12903-026-08444-x

    Figure Lengend Snippet: Analgesic effects of Rimegepant in OSCC-associated pain demonstrated via the unilateral tongue orthotopic transplantation model. A Construction of the unilateral tongue orthotopic transplantation model and drug injection with mechanical threshold measurement protocol. B Following tumor transplantation, the differences in mechanical sensitivity between the transplanted ( n = 14) and non-transplanted ( n = 10) sides were compared using unpaired two-tailed Student’s t test. C Changes in sensitivity 1 h after Rimegepant (50 mg/kg), Rimegepant (10 mg/kg) and Carprofen treatment were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). D Changes in sensitivity following Rimegepant (50 mg/kg) and Tramadol treatment at 1 h were performed using one-way ANOVA. Each dataset included results from monitoring over 4 consecutive days ( n = 6–8/group). E The 4-day trends of facial mechanical sensitivities 24 h after Rimegepant (50 mg/kg) and Tramadol treatment. ( n = 6–8/group). F Changes in sensitivity 1 h after Tramadol, Carprofen treatment and local lingual injection of Rimegepant (10 mg/kg) in CAL27 and SCC25 xenograft models were performed using one-way ANOVA( n = 8). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001, ns P > 0.05

    Article Snippet: Human OSCC CAL27 and SCC25 cells were purchased from the American Type Culture Collection (USA).

    Techniques: Transplantation Assay, Injection, Two Tailed Test