axio observer 7 wide-field inverted microscope Search Results


98
Carl Zeiss axio observer 7 widefield fluorescence microscope
Axio Observer 7 Widefield Fluorescence Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pmc08160579-483-13-19?v=Carl+Zeiss
Average 98 stars, based on 1 article reviews
axio observer 7 widefield fluorescence microscope - by Bioz Stars, 2026-08
98/100 stars
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98
Carl Zeiss axio observer z1 widefield inverted microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Axio Observer Z1 Widefield Inverted Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/bio_rxiv__2024__11__15__623168-69-20-19?v=Carl+Zeiss
Average 98 stars, based on 1 article reviews
axio observer z1 widefield inverted microscope - by Bioz Stars, 2026-08
98/100 stars
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99
Carl Zeiss axio observer z1 live
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Axio Observer Z1 Live, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/bio_rxiv__2024__03__08__583864-388-11-10?v=Carl+Zeiss
Average 99 stars, based on 1 article reviews
axio observer z1 live - by Bioz Stars, 2026-08
99/100 stars
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96
Carl Zeiss axioobserver z1 inverted wide field microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Axioobserver Z1 Inverted Wide Field Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pm36812322-319-21-25?v=Carl+Zeiss
Average 96 stars, based on 1 article reviews
axioobserver z1 inverted wide field microscope - by Bioz Stars, 2026-08
96/100 stars
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99
Carl Zeiss widefield zeiss axio observer z1 inverted microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Widefield Zeiss Axio Observer Z1 Inverted Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pmc06431224-300-9-16?v=Carl+Zeiss
Average 99 stars, based on 1 article reviews
widefield zeiss axio observer z1 inverted microscope - by Bioz Stars, 2026-08
99/100 stars
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90
Carl Zeiss all-quartz widefield fluorescence microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
All Quartz Widefield Fluorescence Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pmc10089173__pnas__2208860120__sapp-99-16-19?v=Carl+Zeiss
Average 90 stars, based on 1 article reviews
all-quartz widefield fluorescence microscope - by Bioz Stars, 2026-08
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99
Carl Zeiss inverted widefield zeiss axio observer microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Inverted Widefield Zeiss Axio Observer Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pm29386996-64-29-35?v=Carl+Zeiss
Average 99 stars, based on 1 article reviews
inverted widefield zeiss axio observer microscope - by Bioz Stars, 2026-08
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97
Carl Zeiss wide field zeiss axio observer 7
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Wide Field Zeiss Axio Observer 7, supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/axio+observer+7+wide-field+inverted+microscope/pm39696860-202-5-7?v=Carl+Zeiss
Average 97 stars, based on 1 article reviews
wide field zeiss axio observer 7 - by Bioz Stars, 2026-08
97/100 stars
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96
Carl Zeiss wide field zeiss axio observer 7 microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Wide Field Zeiss Axio Observer 7 Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/bio_rxiv__2021__09__17__460635-279-9-16?v=Carl+Zeiss
Average 96 stars, based on 1 article reviews
wide field zeiss axio observer 7 microscope - by Bioz Stars, 2026-08
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90
Carl Zeiss all-quartz wide-field fluorescence zeiss axio observer 7 microscope
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
All Quartz Wide Field Fluorescence Zeiss Axio Observer 7 Microscope, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pmc08982572-184-15-18?v=Carl+Zeiss
Average 90 stars, based on 1 article reviews
all-quartz wide-field fluorescence zeiss axio observer 7 microscope - by Bioz Stars, 2026-08
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90
Carl Zeiss motorised inverted widefield (wf) microscopy system axio observer 7
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Motorised Inverted Widefield (Wf) Microscopy System Axio Observer 7, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pm36617069-98-7-16?v=Carl+Zeiss
Average 90 stars, based on 1 article reviews
motorised inverted widefield (wf) microscopy system axio observer 7 - by Bioz Stars, 2026-08
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90
Carl Zeiss inverted wide-field fluorescence microscope axio observer 7
All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using <t>widefield</t> microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.
Inverted Wide Field Fluorescence Microscope Axio Observer 7, supplied by Carl Zeiss, 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/axio+observer+7+wide-field+inverted+microscope/pmc08486878-498-6-12?v=Carl+Zeiss
Average 90 stars, based on 1 article reviews
inverted wide-field fluorescence microscope axio observer 7 - by Bioz Stars, 2026-08
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Image Search Results


All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using widefield microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.

Journal: bioRxiv

Article Title: RecN and RecA orchestrate an ordered DNA supercompaction response following ciprofloxacin exposure in Escherichia coli

doi: 10.1101/2024.11.15.623168

Figure Lengend Snippet: All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using widefield microscopy. ( A ) Representative images of HU-mCherry labelled (green) wild-type cells at 0, 8, and 16 minutes after CIP exposure, showing DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 34-141 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells were immobilized on agar pads and imaged using spinning disk microscopy. Results shown are from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.

Article Snippet: To examine the cells’ immediate response to CIP exposure, we employed a microfluidic setup to image cells using a Zeiss Axio Observer Z1 widefield inverted microscope with a 63x oil objective (Zeiss Plan Apochromat 1.4 NA, DIC), a Colibri 7 LED light source, a Hamamatsu ORCA-Flash4.0 V3 digital CMOS camera, as well as a heated incubation chamber and mounting frame, both maintained at 37°C.

Techniques: Live Cell Imaging, Microscopy, Fluorescence

All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using widefield microscopy. ( A ) Representative images of ΔrecN cells at 0, 8, and 16 minutes after CIP exposure, showing HU-mCherry fluorescence (green) to represent DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 17-61 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells immobilized on agar pads and imaged using spinning disk microscopy. Results are shown from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.

Journal: bioRxiv

Article Title: RecN and RecA orchestrate an ordered DNA supercompaction response following ciprofloxacin exposure in Escherichia coli

doi: 10.1101/2024.11.15.623168

Figure Lengend Snippet: All cells were grown in LB at 37°C and imaged at 2-minute intervals using live-cell imaging. ( A and B ) Cells were immobilized in microfluidic channel slides and imaged using widefield microscopy. ( A ) Representative images of ΔrecN cells at 0, 8, and 16 minutes after CIP exposure, showing HU-mCherry fluorescence (green) to represent DNA distribution. Scale bar: 5 µm. ( B ) Analysis of DNA distribution along the cells’ long axis before and after CIP, quantified by measuring the distance between the outer bounds of symmetrical fluorescence peaks at 80% of maximum averaged intensity for each time point. Results are averaged from 17-61 cells from a single representative biological replicate (see Materials and methods for detailed explanation). ( C and D ) Cells immobilized on agar pads and imaged using spinning disk microscopy. Results are shown from images captured 12, 14, 16, and 18 minutes after CIP exposure, averaged from 40 tracked cells from a single representative biological replicate. ( C ) Average HU-mCherry fluorescence intensity along the cells’ long axis. ( D ) Kymograph heat map of relative HU-mCherry intensity distribution over time. A.u., arbitrary unit.

Article Snippet: To examine the cells’ immediate response to CIP exposure, we employed a microfluidic setup to image cells using a Zeiss Axio Observer Z1 widefield inverted microscope with a 63x oil objective (Zeiss Plan Apochromat 1.4 NA, DIC), a Colibri 7 LED light source, a Hamamatsu ORCA-Flash4.0 V3 digital CMOS camera, as well as a heated incubation chamber and mounting frame, both maintained at 37°C.

Techniques: Live Cell Imaging, Microscopy, Fluorescence