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Bioptechs inc fcs2 live cell chamber
Fcs2 Live Cell Chamber, supplied by Bioptechs inc, used in various techniques. Bioz Stars score: 96/100, based on 445 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/bioptechs+fcs2/Cooled+FCS2/pm09166399-154-7-11
Average 96 stars, based on 445 article reviews
fcs2 live cell chamber - by Bioz Stars, 2026-09
96/100 stars

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Related Articles

Microscopy:

Article Title: CD49d governs immune synapse formation through actin rearrangements and synchronizes BCR signaling in CLL.
Article Snippet: .. 179 Real-time microscopy on planar lipid bilayers 180 Artificial planar lipid bilayers were assembled in FCS2 chambers (Bioptechs) as 181 previously described.16 TCL1-tg and CD49dΔB TCL1-tg leukemic cells (4x106) were 182 purified from total splenocytes by negative selection with EasySepTM Mouse Pan-B 183 cells Isolation kit (StemCell Technologies), and co-injected (4x106) into the warmed 184 chamber (37oC) for imaging. ..

Purification:

Article Title: CD49d governs immune synapse formation through actin rearrangements and synchronizes BCR signaling in CLL.
Article Snippet: .. 179 Real-time microscopy on planar lipid bilayers 180 Artificial planar lipid bilayers were assembled in FCS2 chambers (Bioptechs) as 181 previously described.16 TCL1-tg and CD49dΔB TCL1-tg leukemic cells (4x106) were 182 purified from total splenocytes by negative selection with EasySepTM Mouse Pan-B 183 cells Isolation kit (StemCell Technologies), and co-injected (4x106) into the warmed 184 chamber (37oC) for imaging. ..

Selection:

Article Title: CD49d governs immune synapse formation through actin rearrangements and synchronizes BCR signaling in CLL.
Article Snippet: .. 179 Real-time microscopy on planar lipid bilayers 180 Artificial planar lipid bilayers were assembled in FCS2 chambers (Bioptechs) as 181 previously described.16 TCL1-tg and CD49dΔB TCL1-tg leukemic cells (4x106) were 182 purified from total splenocytes by negative selection with EasySepTM Mouse Pan-B 183 cells Isolation kit (StemCell Technologies), and co-injected (4x106) into the warmed 184 chamber (37oC) for imaging. ..

Isolation:

Article Title: CD49d governs immune synapse formation through actin rearrangements and synchronizes BCR signaling in CLL.
Article Snippet: .. 179 Real-time microscopy on planar lipid bilayers 180 Artificial planar lipid bilayers were assembled in FCS2 chambers (Bioptechs) as 181 previously described.16 TCL1-tg and CD49dΔB TCL1-tg leukemic cells (4x106) were 182 purified from total splenocytes by negative selection with EasySepTM Mouse Pan-B 183 cells Isolation kit (StemCell Technologies), and co-injected (4x106) into the warmed 184 chamber (37oC) for imaging. ..

Imaging:

Article Title: CD49d governs immune synapse formation through actin rearrangements and synchronizes BCR signaling in CLL.
Article Snippet: .. 179 Real-time microscopy on planar lipid bilayers 180 Artificial planar lipid bilayers were assembled in FCS2 chambers (Bioptechs) as 181 previously described.16 TCL1-tg and CD49dΔB TCL1-tg leukemic cells (4x106) were 182 purified from total splenocytes by negative selection with EasySepTM Mouse Pan-B 183 cells Isolation kit (StemCell Technologies), and co-injected (4x106) into the warmed 184 chamber (37oC) for imaging. ..

Article Title: HaloTag-based approach to quantify subcellular localization of TRPV3 channels.
Article Snippet: All analysis was carried out using Igor Pro 9 (Wavemetrics) or Microsoft Excel. .. Recordings were performed using a temperature-controlled Delta T imaging chamber (Bioptechs). ..

Article Title: Functional Coupling of Calcium-Sensing Receptor and Polycystin-2 in Renal Epithelial Cells: Physiological Role and Potential Therapeutic Target in Polycystic Kidney Disease
Article Snippet: .. The coverslips with dye-loaded cells were mounted in a perfusion chamber (FCS2 Closed Chamber System, BIOPTECHS, Butler, PA, USA) and measurements were performed using an inverted microscope (Nikon Eclipse TE2000-S microscope—Nikon Europe B.V., Amstelveen, The Netherlands), equipped for single-cell fluorescence measurements and imaging analysis. ..

Inverted Microscopy:

Article Title: Motility Functions as an Essential Defense in the Bacterial Persister Lifecycle
Article Snippet: .. To capture the natural swimming behavior of cells in their original living environment, we directly placed 8 μL of bacterial culture onto the Bioptechs FCS2 chamber (0.2 mm plastic pad between slide and coverslip) and used a Nikon ECLIPSE Ti inverted microscope to record bright-field videos at approximately 22 frames per second (FPS). ..

Article Title: Functional Coupling of Calcium-Sensing Receptor and Polycystin-2 in Renal Epithelial Cells: Physiological Role and Potential Therapeutic Target in Polycystic Kidney Disease
Article Snippet: .. The coverslips with dye-loaded cells were mounted in a perfusion chamber (FCS2 Closed Chamber System, BIOPTECHS, Butler, PA, USA) and measurements were performed using an inverted microscope (Nikon Eclipse TE2000-S microscope—Nikon Europe B.V., Amstelveen, The Netherlands), equipped for single-cell fluorescence measurements and imaging analysis. ..

Incubation:

Article Title: A primary neuron culture system for functional studies of anoxia tolerance in turtles.
Article Snippet: .. After incubation, cells were allowed to reach room temperature and washed with turtle aCSF for 5 min. After washing, 40 mm coverslips were quickly mounted to a FCS2 laminar flow perfusion chamber (Bioptechs, Butler, PA, USA) and room temperature turtle aCSF was quickly added to the coverslip to prevent cells from desiccating. ..

Single Cell:

Article Title: Functional Coupling of Calcium-Sensing Receptor and Polycystin-2 in Renal Epithelial Cells: Physiological Role and Potential Therapeutic Target in Polycystic Kidney Disease
Article Snippet: .. The coverslips with dye-loaded cells were mounted in a perfusion chamber (FCS2 Closed Chamber System, BIOPTECHS, Butler, PA, USA) and measurements were performed using an inverted microscope (Nikon Eclipse TE2000-S microscope—Nikon Europe B.V., Amstelveen, The Netherlands), equipped for single-cell fluorescence measurements and imaging analysis. ..

Fluorescence:

Article Title: Functional Coupling of Calcium-Sensing Receptor and Polycystin-2 in Renal Epithelial Cells: Physiological Role and Potential Therapeutic Target in Polycystic Kidney Disease
Article Snippet: .. The coverslips with dye-loaded cells were mounted in a perfusion chamber (FCS2 Closed Chamber System, BIOPTECHS, Butler, PA, USA) and measurements were performed using an inverted microscope (Nikon Eclipse TE2000-S microscope—Nikon Europe B.V., Amstelveen, The Netherlands), equipped for single-cell fluorescence measurements and imaging analysis. ..



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A) Schematic of generating rifampin-induced persisters and evaluating persister survival rates. B) Survival rate (mean value ± standard deviation) of E. coli MG1655 cells against ampicillin with no pretreatment ( A ) and rifampin-pretreatment ( R-A ). Data represent results from six independent experiments. C) Motile percentage (mean value ± standard deviation) of mid-exponential phase cells ( M ), rifampin-treated cells ( R ), rifampin-induced persisters ( R-A ). Data represent results from five experimental videos. The total numbers of cells in the five videos are 598 ( M ), 663 ( R ), and 291 ( R-A ), respectively. D - F) Representative trajectories of mid-exponential phase cells ( D ), rifampin-treated cells ( E ), and persisters ( F ) swimming in their original living environment (LB or LB with corresponding antibiotics), imaged in the <t>FCS2</t> chamber. The colored lines show the trajectories of different cells. G , H) Comparison of track mean speed ( G ) and track mean directional change rate ( H ) distributions for mid-exponential phase cells ( M ), rifampin-treated cells ( R ), and persisters ( R-A ). Data were obtained from at least three experimental videos. Sample sizes for mid-exponential phase cell, rifampin-treated cell, and persister are 6358, 6580, and 4610 tracks, respectively.
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A) Schematic of generating rifampin-induced persisters and evaluating persister survival rates. B) Survival rate (mean value ± standard deviation) of E. coli MG1655 cells against ampicillin with no pretreatment ( A ) and rifampin-pretreatment ( R-A ). Data represent results from six independent experiments. C) Motile percentage (mean value ± standard deviation) of mid-exponential phase cells ( M ), rifampin-treated cells ( R ), rifampin-induced persisters ( R-A ). Data represent results from five experimental videos. The total numbers of cells in the five videos are 598 ( M ), 663 ( R ), and 291 ( R-A ), respectively. D - F) Representative trajectories of mid-exponential phase cells ( D ), rifampin-treated cells ( E ), and persisters ( F ) swimming in their original living environment (LB or LB with corresponding antibiotics), imaged in the <t>FCS2</t> chamber. The colored lines show the trajectories of different cells. G , H) Comparison of track mean speed ( G ) and track mean directional change rate ( H ) distributions for mid-exponential phase cells ( M ), rifampin-treated cells ( R ), and persisters ( R-A ). Data were obtained from at least three experimental videos. Sample sizes for mid-exponential phase cell, rifampin-treated cell, and persister are 6358, 6580, and 4610 tracks, respectively.
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Image Search Results


A) Schematic of generating rifampin-induced persisters and evaluating persister survival rates. B) Survival rate (mean value ± standard deviation) of E. coli MG1655 cells against ampicillin with no pretreatment ( A ) and rifampin-pretreatment ( R-A ). Data represent results from six independent experiments. C) Motile percentage (mean value ± standard deviation) of mid-exponential phase cells ( M ), rifampin-treated cells ( R ), rifampin-induced persisters ( R-A ). Data represent results from five experimental videos. The total numbers of cells in the five videos are 598 ( M ), 663 ( R ), and 291 ( R-A ), respectively. D - F) Representative trajectories of mid-exponential phase cells ( D ), rifampin-treated cells ( E ), and persisters ( F ) swimming in their original living environment (LB or LB with corresponding antibiotics), imaged in the FCS2 chamber. The colored lines show the trajectories of different cells. G , H) Comparison of track mean speed ( G ) and track mean directional change rate ( H ) distributions for mid-exponential phase cells ( M ), rifampin-treated cells ( R ), and persisters ( R-A ). Data were obtained from at least three experimental videos. Sample sizes for mid-exponential phase cell, rifampin-treated cell, and persister are 6358, 6580, and 4610 tracks, respectively.

Journal: bioRxiv

Article Title: Motility Functions as an Essential Defense in the Bacterial Persister Lifecycle

doi: 10.64898/2025.12.17.694804

Figure Lengend Snippet: A) Schematic of generating rifampin-induced persisters and evaluating persister survival rates. B) Survival rate (mean value ± standard deviation) of E. coli MG1655 cells against ampicillin with no pretreatment ( A ) and rifampin-pretreatment ( R-A ). Data represent results from six independent experiments. C) Motile percentage (mean value ± standard deviation) of mid-exponential phase cells ( M ), rifampin-treated cells ( R ), rifampin-induced persisters ( R-A ). Data represent results from five experimental videos. The total numbers of cells in the five videos are 598 ( M ), 663 ( R ), and 291 ( R-A ), respectively. D - F) Representative trajectories of mid-exponential phase cells ( D ), rifampin-treated cells ( E ), and persisters ( F ) swimming in their original living environment (LB or LB with corresponding antibiotics), imaged in the FCS2 chamber. The colored lines show the trajectories of different cells. G , H) Comparison of track mean speed ( G ) and track mean directional change rate ( H ) distributions for mid-exponential phase cells ( M ), rifampin-treated cells ( R ), and persisters ( R-A ). Data were obtained from at least three experimental videos. Sample sizes for mid-exponential phase cell, rifampin-treated cell, and persister are 6358, 6580, and 4610 tracks, respectively.

Article Snippet: To capture the natural swimming behavior of cells in their original living environment, we directly placed 8 μL of bacterial culture onto the Bioptechs FCS2 chamber (0.2 mm plastic pad between slide and coverslip) and used a Nikon ECLIPSE Ti inverted microscope to record bright-field videos at approximately 22 frames per second (FPS).

Techniques: Standard Deviation, Comparison

A) Representative trajectories of mid-exponential phase cells swimming in LB after CCCP exposure, observed in the FCS2 chamber. The colored lines show the trajectories of different cells. B) Survival rate (mean value ± standard deviation) of E. coli cells against ampicillin with exposure to CCCP before rifampin ( C-R-A ), exposure to CCCP and rifampin together ( CR-A ), exposure to CCCP and ampicillin together after rifampin ( R-CA ), and 15% w/v Ficoll in culture medium upon rifampin exposure ( 15%FR-A ). Data represent results from six independent experiments. C) Membrane potential (mean value ± standard deviation) of mid-exponential phase cells treated with CCCP ( CCCP ), experiencing no treatment ( M ), treated with 5% ( 5%F ), 10% ( 10%F ), and 15% ( 15%F ) w/v Ficoll, as indicated by the red/green median fluorescence intensity ratio measured by flow cytometry. Data represent results from at least three independent experiments. D) Representative trajectories of mid-exponential phase cells swimming in LB with 15% w/v Ficoll, imaged in the FCS2 chamber. The colored lines show the trajectories of different cells. E) Two-dimensional distribution correlating track mean speed and track mean directional change rate for mid-exponential phase cells in LB with 15% w/v Ficoll, with corresponding marginal distributions. The sample size is 5374 tracks, obtained from seven videos. F) Relationship between rifampin-induced survival rate against ampicillin (mean) and swimming speed (mean) for cells under different conditions: M , 15%F , and CCCP .

Journal: bioRxiv

Article Title: Motility Functions as an Essential Defense in the Bacterial Persister Lifecycle

doi: 10.64898/2025.12.17.694804

Figure Lengend Snippet: A) Representative trajectories of mid-exponential phase cells swimming in LB after CCCP exposure, observed in the FCS2 chamber. The colored lines show the trajectories of different cells. B) Survival rate (mean value ± standard deviation) of E. coli cells against ampicillin with exposure to CCCP before rifampin ( C-R-A ), exposure to CCCP and rifampin together ( CR-A ), exposure to CCCP and ampicillin together after rifampin ( R-CA ), and 15% w/v Ficoll in culture medium upon rifampin exposure ( 15%FR-A ). Data represent results from six independent experiments. C) Membrane potential (mean value ± standard deviation) of mid-exponential phase cells treated with CCCP ( CCCP ), experiencing no treatment ( M ), treated with 5% ( 5%F ), 10% ( 10%F ), and 15% ( 15%F ) w/v Ficoll, as indicated by the red/green median fluorescence intensity ratio measured by flow cytometry. Data represent results from at least three independent experiments. D) Representative trajectories of mid-exponential phase cells swimming in LB with 15% w/v Ficoll, imaged in the FCS2 chamber. The colored lines show the trajectories of different cells. E) Two-dimensional distribution correlating track mean speed and track mean directional change rate for mid-exponential phase cells in LB with 15% w/v Ficoll, with corresponding marginal distributions. The sample size is 5374 tracks, obtained from seven videos. F) Relationship between rifampin-induced survival rate against ampicillin (mean) and swimming speed (mean) for cells under different conditions: M , 15%F , and CCCP .

Article Snippet: To capture the natural swimming behavior of cells in their original living environment, we directly placed 8 μL of bacterial culture onto the Bioptechs FCS2 chamber (0.2 mm plastic pad between slide and coverslip) and used a Nikon ECLIPSE Ti inverted microscope to record bright-field videos at approximately 22 frames per second (FPS).

Techniques: Standard Deviation, Membrane, Fluorescence, Flow Cytometry