| Literature DB >> 31157768 |
Jordan L Ferguson, Heather R Shive1.
Abstract
Investigation of intercellular interactions often requires discrete labeling of specific cell populations and precise protein localization. The zebrafish embryo is an excellent tool for examining such interactions with an in vivo model. Whole-mount immunohistochemical and immunofluorescence assays are frequently applied in zebrafish embryos to assess protein expression. However, it can be difficult to achieve accurate mapping of co-localized proteins in three-dimensional space. In addition, some studies may require the use of two antibodies that are not compatible with the same technique (e.g., antibody 1 is only suitable for immunohistochemistry and antibody 2 is only suitable for immunofluorescence). The purpose of the method described herein is to perform sequential immunofluorescence and/or immunohistochemistry on individual cryosections derived from early-stage zebrafish embryos. Here we describe the use of sequential rounds of immunofluorescence, imaging, immunohistochemistry, imaging for a single cryosection in order to achieve precise identification of protein expression at the single-cell level. This methodology is suitable for any study in early-stage zebrafish embryos that requires accurate identification of multiple protein targets in individual cells.Entities:
Mesh:
Year: 2019 PMID: 31157768 PMCID: PMC7291005 DOI: 10.3791/59344
Source DB: PubMed Journal: J Vis Exp ISSN: 1940-087X Impact factor: 1.355
Materials
| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| 15/25 | N/A | N/A | 15% fish gelatin/25% sucrose w/v, made in dH2O |
| Alexa 555 secondary antibody | Invitrogen | A21429 | used at 1:2,000 dilution in block buffer for IF |
| Antibody Diluent | Dako | S3022 | |
| Background Buster | Innovex | NB306 | |
| block buffer (IF) | N/A | N/A | 5% normal goat serum, 0.1 % Triton X-100 in 1x PBS |
| cellSens imaging software | Olympus | cellSens | imaging software used with compound light microscope |
| chimeric zebrafish embryos | N/A | N/A | AB wild-type chimera zebrafish embryos analyzed at 48 hpf |
| Compound light microscope | Olympus | BX51 | used with digital camera and cellSens imaging software for image capture after IHC |
| Confocal fluorescence microscope | Leica | DM 2500 | used with digital camera and Leica Application Suite Advanced Fluorescence imaging software for image capture after IF |
| Disposable plastic molds, 15 mm × 15 mm × 5 mm | Ted Pella | 27147–2 | |
| Digital camera, light microscope | Olympus | DP27 | |
| Digital camera, fluorescence microscope | Leica | TCS SPE | |
| Ethanol | Koptec | V1001 | |
| Fish gelatin | Sigma | G7041 | |
| Glass slides | Fisher | 12-550-15 | |
| Hydrogen peroxide, 30% | Fisher | H325–100 | |
| ImmPRESS HRP Polymer detection kit | Vector | MP-7401 | anti-rabbit secondary antibody, HRP polymer |
| Leica Application Suite Advanced Fluorescence imaging software | Leica | LAS AF 2.3.6 | imaging software used with confocal fluorescence microscope |
| Methanol | Fisher | A452-4 | |
| Modified Meyer's Hematoxylin | Thermo | 72804 | |
| Normal Goat Serum | MP Biomedical | 191356 | |
| OCT medium | Tissue-Tek/Fisher | 4583/4585 | |
| anti-Oregon Green antibody | Molecular Probes/Life Technologies | A889 | used at 1:7500 dilution for IHC |
| Oregon Green Dextran | Invitrogen | P7171 | used at 2.5% in 0.2 M KCl |
| Paraformaldehyde, 4% | Acros Organics | 416780030 | made in lab in 1x PBS |
| Permount | Fisher | SP15 | |
| 1x phosphate-buffered saline | made in lab | N/A | 50 mL 10x PBS, up to 500 mL volume with dH2O |
| 10x phoshpate-buffered saline | made in lab | N/A | use Cold Spring Harbor protocol |
| 1x PBSt | made in lab | N/A | 50 mL 10x PBS, 1 mL 10% Tween 20, up to 500 mL volume with dH2O |
| anti-Ser10 phosphorylated Histone H3 antibody | Santa Cruz | sc-8656-R | used at 1:500 dilution for IF |
| Scot’s Tap Water | Electron Microscopy Sciences | 26070-06 | have used other brands successfully in addition to EMS |
| Sucrose | Amresco | 335 | |
| Tween-20 | Fisher | BP337 | |
| TO-PRO3 | Invitrogen | T3605 | used at 1:1,000 in 1x PBS for IF |
| 1x Tris-buffered saline | made in lab | N/A | 50 mL 10x TBS, up to 500 mL volume with dH2O |
| 10x Tris-buffered saline | made in lab | N/A | 85 g NaCl, 61 g Tris base, up to 1 L volume with dH2O |
| 1x TBSt | made in lab | N/A | 50 mL 10x TBS, 1 mL 10% Tween 20, up to 500 mL volume with dH2O |
| Triton X-100 | Acros Organics | 327371000 | |
| Vectashield | Vector | H-1000 | non-hardening mounting media |
| Vector NovaRed substrate | Vector | SK-4800 | HRP substrate |
| Xylene | Fisher | X3P-1GAL |
Figure 1:Preparation of frozen OCT blocks.
(A) 50x microscopic view of embryos in OCT in a cryogenic mold prepared for freezing. Red arrow indicates head of zebrafish embryo position against the bottom surface of the mold; black arrow indicates tail pointing up towards the user. (B) Plastic molds with embryos and OCT placed on chilled metal platform. (C) Foam ice bucket placed over plastic molds to create freezing chamber. (D) OCT turns white from transparent once the block is fully frozen.
Figure 2:Cryosectioning of frozen OCT blocks.
(A), Application of fresh OCT onto cryostat disc and placement of frozen block on OCT, rotated 180° from the freezing orientation of the block. (B) Side view of block frozen to sectioning disc. (C) View of sectioning block with roll plate in position. (D) Pick-up of sections using a charged slide from the metal platform of the cryostat.
Figure 3:View of prepared sections after placement on a slide.
Arrow indicates hydrophobic barrier, and dotted line delineates the zone containing sections within barrier perimeter.
Figure 4:Preparation for chromogenic substrate application during IHC.
The slide is placed on a flat surface covered with plastic wrap to allow uniform application of the chromogenic substrate while containing any spillage of hazardous material.
Figure 5:Representative IF and IHC labeling of cryosectioned 48 hpf chimeric zebrafish embryos generated by blastula-to-blastula transplant between AB wild-type zebrafish embryos.
(A) IF to detect Ser 10 phosphorylated Histone H3 (anti-pH3, 1:200) expression in 48 hpf chimeric zebrafish embryo. Red = pH3-positive cells; blue = nuclei. Yellow arrows indicate examples of positive cells. (B) Subtraction of the blue nuclear stain in the digital image (ImageJ software) enhances visualization of pH3-positive cells for quantification and image overlay. (C) Negative control (secondary antibody only) for IF assay in cryosectioned 48 hpf chimeric zebrafish embryo. Scale bar represents 50 μm (applicable to all panels). (D) IHC to detect labeled dextran (anti-labeled dextran, 1:7,500) in chimeric 48 hpf zebrafish embryo generated by blastula-to-blastula transplant between AB wild-type zebrafish embryos. Donor embryos were injected with a fluorescently labeled dextran conjugate at the one-cell stage prior to use for blastula-to-blastula transplant. Red indicates cells labeled with a dextran conjugate; blue indicates nuclei. Yellow arrows indicate examples of positive cells. (E) Overlay of panel B (IF for pH3) and panel C (IHC for labeled dextran) showing colocalization of pH3 expression and dextran labeling in individual cells. Yellow arrows indicate examples of double-positive cells. (F) Negative control (secondary antibody only) for IHC assay in cryosectioned 48 hpf chimeric zebrafish embryo.