cfx96 real time manager software Search Results


96
Bio-Rad cfx96 real time software
Cfx96 Real Time Software, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/CFX96+Touch+Deep+Well+Real-Time+PCR+Detection+System/pmc06182146-71-12-15
Average 96 stars, based on 1 article reviews
cfx96 real time software - by Bioz Stars, 2026-09
96/100 stars
  Buy from Supplier

96
Bio-Rad cfx96 real time system
Cfx96 Real Time System, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/CFX96+Touch+Real-Time+PCR+Detection+System+with+Starter+Package/pm36170269-81-15-14
Average 96 stars, based on 1 article reviews
cfx96 real time system - by Bioz Stars, 2026-09
96/100 stars
  Buy from Supplier

99
Bio-Rad cfx96 real time system software
Cfx96 Real Time System Software, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/CFX96+and+CFX384+Real-Time+PCR+Detection+Systems+Firmware+Update/pmc03186832-120-20-24
Average 99 stars, based on 1 article reviews
cfx96 real time system software - by Bioz Stars, 2026-09
99/100 stars
  Buy from Supplier

94
Bio-Rad cfx96 real time system c1000 thermal cycler
Cfx96 Real Time System C1000 Thermal Cycler, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/C1000+Manager+Software/pm33106338-110-8-15
Average 94 stars, based on 1 article reviews
cfx96 real time system c1000 thermal cycler - by Bioz Stars, 2026-09
94/100 stars
  Buy from Supplier

98
Bio-Rad cfx connect real time cfx96 pcr system running cfx maestro frontiers
Cfx Connect Real Time Cfx96 Pcr System Running Cfx Maestro Frontiers, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 98/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/CFX+Maestro+Software/pm36467694-177-8-7
Average 98 stars, based on 1 article reviews
cfx connect real time cfx96 pcr system running cfx maestro frontiers - by Bioz Stars, 2026-09
98/100 stars
  Buy from Supplier

98
Bio-Rad real time qpcr
a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb <t>ChIP–qPCR</t> analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.
Real Time Qpcr, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 98/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/CFX+Manager+Software/pmc10113154-336-0-2
Average 98 stars, based on 1 article reviews
real time qpcr - by Bioz Stars, 2026-09
98/100 stars
  Buy from Supplier

99
Bio-Rad well plates
a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb <t>ChIP–qPCR</t> analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.
Well Plates, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/CFX96+Touch/pmc07710556-169-6-16
Average 99 stars, based on 1 article reviews
well plates - by Bioz Stars, 2026-09
99/100 stars
  Buy from Supplier

90
Biogazelle qbase plus software
a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb <t>ChIP–qPCR</t> analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.
Qbase Plus Software, supplied by Biogazelle, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/qbase++software/pmc07728609-158-10-10
Average 90 stars, based on 1 article reviews
qbase plus software - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

96
Bio-Rad cfx96 software
a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb <t>ChIP–qPCR</t> analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.
Cfx96 Software, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/ChromLab+Software/pmc10917613-71-7-9
Average 96 stars, based on 1 article reviews
cfx96 software - by Bioz Stars, 2026-09
96/100 stars
  Buy from Supplier

99
Bio-Rad cfx96 thermocycler
a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb <t>ChIP–qPCR</t> analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.
Cfx96 Thermocycler, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/PrimePCR+Analysis+Software/pmc07326953-143-8-10
Average 99 stars, based on 1 article reviews
cfx96 thermocycler - by Bioz Stars, 2026-09
99/100 stars
  Buy from Supplier

99
Bio-Rad ssofast evagreen supermix
a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb <t>ChIP–qPCR</t> analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.
Ssofast Evagreen Supermix, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cfx96+real+time+manager+software/SsoFast+Eva+Green+Supermix/pmc04317965-21-8-17
Average 99 stars, based on 1 article reviews
ssofast evagreen supermix - by Bioz Stars, 2026-09
99/100 stars
  Buy from Supplier

Image Search Results


a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb ChIP–qPCR analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.

Journal: Nature Structural & Molecular Biology

Article Title: Loss of H3K9 trimethylation alters chromosome compaction and transcription factor retention during mitosis

doi: 10.1038/s41594-023-00943-7

Figure Lengend Snippet: a , Volcano plots as in Fig. , highlighting pluripotency-associated factors that are enriched (red) or not significantly changed (black) on WT (left plot) or Suv39h dn (right plot) ESC mitotic chromosomes. b , Esrrb immunolabeling (red) of WT and Suv39h dn flow-sorted chromosomes 19 (left panel) and X (right panel), where DAPI counterstain is shown in light gray. Scale bar, 5 μm. Esrrb mean intensities were measured across individual chromosomes; the mean ± s.d. is shown ( n = minimum 50 chromosomes analyzed over 3 independent experiments). P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. c , Esrrb ChIP–qPCR analysis in WT versus Suv39h dn mitotic and asynchronous ESCs. Enrichment (immunoprecipitated as a percentage of input (% IP)) was measured at Esrrb bookmarked sites ( Capn2 , Esrrb , Jam2-s1 , Jam2-s2 , Tbx3 and Tet2 ), Esrrb lost sites (bound only in interphase ; Mgat3 and Twistnb ) or control sites that do not bind Esrrb ( Esrrb-3 ′ and Actb ). The mean + s.d. results are shown. For interphase cells n = 3 biological replicates, for mitotic cells n = 4 biological replicates (except Capn2 , Esrrb , Rex1 and Jam2-s1 , where n = 5). d , Live-cell imaging of Esrrb–tdTomato mouse ESCs pretreated with DMSO (upper panel) or 100 nM of chaetocin (lower panel) cultured with SiR-DNA (red). Arrows show Esrrb localization to mitotic chromatin. Scale bar, 5 μm. Esrrb–tdTomato mean intensities on mitotic DNA (gated based on SiR-DNA signal) and in interphase nuclei were quantified for each condition; the mean ± s.d. is shown. For mitotic chromosomes: n = 25 (DMSO) or n = 35 (chaetocin) cells analyzed; for interphase nuclei: n = 46 cells analyzed for both DMSO and chaetocin treatments, representing 3 independent experiments. b – d , P values of statistically significant changes, measured by unpaired, two-tailed Student’s t -tests, are indicated. and precise n numbers are provided.

Article Snippet: Real-time qPCR (BioRad, CFX96 system with CFX manager software) was performed in technical triplicate for each biological replicate, using SYBR Green PCR Master Mix (QIAGEN) and the primers listed in Supplementary Table .

Techniques: Immunolabeling, Two Tailed Test, ChIP-qPCR, Immunoprecipitation, Control, Live Cell Imaging, Cell Culture