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CITOTEST Labware pipette tips microscope cover slips
A. Maize seedling that was used here as sample material. B. A stretch of epidermis (arrow) is peeled from the leaf using forceps and cut out together with a small piece of leaf. C. Sample submerged in FM4-64 solution. D. Sample washed in PBS in a staining jar. E. Sample mounted on a large coverslip on which a central groove was created by taping the edges. F. Sample after application of a small coverslip. G. Change of quencher solution without removal of the sample from the <t>microscope.</t>
Pipette Tips Microscope Cover Slips, supplied by CITOTEST Labware, 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/pipette+tips+microscope+cover+slips/pmc07854230-43-0-14?v=CITOTEST+Labware
Average 90 stars, based on 1 article reviews
pipette tips microscope cover slips - by Bioz Stars, 2026-07
90/100 stars

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1) Product Images from "Non-invasive Quantification of Cell Wall Porosity by Fluorescence Quenching Microscopy"

Article Title: Non-invasive Quantification of Cell Wall Porosity by Fluorescence Quenching Microscopy

Journal: Bio-protocol

doi: 10.21769/BioProtoc.3344

A. Maize seedling that was used here as sample material. B. A stretch of epidermis (arrow) is peeled from the leaf using forceps and cut out together with a small piece of leaf. C. Sample submerged in FM4-64 solution. D. Sample washed in PBS in a staining jar. E. Sample mounted on a large coverslip on which a central groove was created by taping the edges. F. Sample after application of a small coverslip. G. Change of quencher solution without removal of the sample from the microscope.
Figure Legend Snippet: A. Maize seedling that was used here as sample material. B. A stretch of epidermis (arrow) is peeled from the leaf using forceps and cut out together with a small piece of leaf. C. Sample submerged in FM4-64 solution. D. Sample washed in PBS in a staining jar. E. Sample mounted on a large coverslip on which a central groove was created by taping the edges. F. Sample after application of a small coverslip. G. Change of quencher solution without removal of the sample from the microscope.

Techniques Used: Staining, Microscopy



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CITOTEST Labware pipette tips microscope cover slips
A. Maize seedling that was used here as sample material. B. A stretch of epidermis (arrow) is peeled from the leaf using forceps and cut out together with a small piece of leaf. C. Sample submerged in FM4-64 solution. D. Sample washed in PBS in a staining jar. E. Sample mounted on a large coverslip on which a central groove was created by taping the edges. F. Sample after application of a small coverslip. G. Change of quencher solution without removal of the sample from the <t>microscope.</t>
Pipette Tips Microscope Cover Slips, supplied by CITOTEST Labware, 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/pipette+tips+microscope+cover+slips/pmc07854230-43-0-14?v=CITOTEST+Labware
Average 90 stars, based on 1 article reviews
pipette tips microscope cover slips - by Bioz Stars, 2026-07
90/100 stars
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A. Maize seedling that was used here as sample material. B. A stretch of epidermis (arrow) is peeled from the leaf using forceps and cut out together with a small piece of leaf. C. Sample submerged in FM4-64 solution. D. Sample washed in PBS in a staining jar. E. Sample mounted on a large coverslip on which a central groove was created by taping the edges. F. Sample after application of a small coverslip. G. Change of quencher solution without removal of the sample from the microscope.

Journal: Bio-protocol

Article Title: Non-invasive Quantification of Cell Wall Porosity by Fluorescence Quenching Microscopy

doi: 10.21769/BioProtoc.3344

Figure Lengend Snippet: A. Maize seedling that was used here as sample material. B. A stretch of epidermis (arrow) is peeled from the leaf using forceps and cut out together with a small piece of leaf. C. Sample submerged in FM4-64 solution. D. Sample washed in PBS in a staining jar. E. Sample mounted on a large coverslip on which a central groove was created by taping the edges. F. Sample after application of a small coverslip. G. Change of quencher solution without removal of the sample from the microscope.

Article Snippet: Pipette tips Microscope cover slips, 50 x 20 mm and 20 x 20 mm (CITOTEST, P/N: 80340-0630, 80340-3610) Microscope slide (CITOTEST, P/N: 80320-2140) 15 ml round bottom tubes 10 cm glass culture dish 1.5 ml Centrifuge tube Tape Razor blades Filter paper Yeast ( Saccharomyces cerevisiae , BY4742) Arabidopsis seedlings (Col-0) Maize ( Zea mays , B73) FM4-64 (N-(3-Triethylammoniumpropyl)-4-(6-(4-(Diethylamino) Phenyl) Hexatrienyl) Pyridinium Dibromide) (Thermo Fisher Scientific, catalog number: T3166) DMSO (Dimethyl sulfoxide) (MP Biomedicals, catalog number: 196055) Trypan blue (Solarbio, catalog number: T8070) Murashige and Skoog (MS) salts (Phyto Technology Laboratories, catalog number: M519) Sucrose (Guangzhou Jinhuada Chemical Reagent, CAS: 57-50-1) Agar (Solarbio, catalog number: A8190) Tryptone (OXIOD, catalog number: LP0042) Yeast extract (OXIOD, catalog number: LP0021) NaCl (Guangzhou Jinhuada Chemical Reagent, CAS: 7647-14-5) Glucose (Guangzhou Jinhuada Chemical Reagent, CAS: 58367-01-4) Na 2 HPO 4 (Guangzhou Jinhuada Chemical Reagent, CAS: 10039-32-4) KH 2 PO 4 (Guangzhou Jinhuada Chemical Reagent, CAS: 7778-77-0) KCl (Guangzhou Jinhuada Chemical Reagent, CAS: 7447-40-7) KOH YDP medium (see Recipes) Half strength MS medium (see Recipes) PBS solution (pH 7.2-7.4) (see Recipes) FM4-64 stock solution (see Recipes) Trypan blue stock solution (see Recipes)

Techniques: Staining, Microscopy