Method Article

Mosquito Embryo Microinjection: A Technique to Deliver Exogenous DNA into Embryo Yolk of Anopheles Gambiae to Generate Germline Mutations

July 8th, 2025

In This Article

Abstract

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Source: Carballar-Lejarazú, R. et al, Microinjection Method for Anopheles gambiae Embryos. J. Vis. Exp. (2021).

In this video, we demonstrate the delivery of gene drive construct into the embryo of Anopheles gambiae mosquito through embryo microinjection technique. This procedure allows for integration of delivered DNA construct, through homologous recombination, into the germline cells to generate transformed mosquito population.

Protocol

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1. Embryo microinjection

  1. Use a micro-loader tip to fill the needles with 2 µL of DNA mixture (plasmid DNA at a concentration of 300-400 ng/µL. Insert the needle into the needle holder and connect the automated pressure pump tubing (Figure 1).
  2. Important: Align the needle so that it makes an angle of 15° with the plane of the slide (Figure 1).
  3. Open the needle tip by carefully touching the first egg of Anopheles gambiae mosquito and inject it by inserting the tip of the needle ≤ 10 µm in the posterior pole. A successful injection will lead to a small movement of the cytoplasm within the egg.
  4. Use the microscope coaxial stage controls to move to the next egg to continue injection.
    1. To ensure that the needle tip remains open and has not clogged, press the Inject button before entering another embryo and visualize the small droplet at the opening of the needle.
    2. If the needle gets clogged, press the Clear button to clear the needle and repeat the droplet visualization test. Adjust the pressure as needed if the needle tip opening gets slightly bigger to ensure that the size of the droplet stays small.
    3. Inject ~40-50 eggs with one needle.
      NOTE: Make sure the filter paper stays moist at all times. Keep sufficient back-pressure on the needle to keep it cleared. A needle that cannot be unclogged must be replaced with a new needle. Embryo placement, needle insertion and injection are made easier with microscopes that have coaxial controls for horizontal movement of the stage (Figure 2).
  5. After injections are complete, rinse the eggs off into a glass container lined with filter paper and filled with 50 mL of deionized H2O (Figure 3).
    NOTE: Embryos will start hatching 2 days post-injection and may take as long as 3-5 days. Hatched first instar larvae must be transferred immediately (check 2 times daily) to a clean container with water and food.

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Results

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Microscopy setup for cellular observation steps, illustrating slide placement and focusing technique.
Figure 1: Needle position during the microinjections. A) Wide-angle view of the injection stage. B,C) Position the needle so that the aligned embryos form an angle of 15° with the injection needle. Do not elevate the arm of the mi...

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Disclosures

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No conflicts of interest declared.

Materials

List of materials used in this article
NameCompanyCatalog NumberComments
10x Microinjection Buffer--1 mM NaHPO4 buffer, pH 6.8, 50 mM KCl
Blotting membrane (Zeta-Probe GT Genomic Tested Blotting Membrane)Bio-RadNeatly and straightly cut into 2x1 cm piece
De-ionized or double-distilled water (ddH20)Mili-QIn a wash bottle
Dissecting microscopeLeicaLeica MZ12For embryo alignment
Glass containerPyrexNo. 3140125 x 65
Glass slideFisher BrandNo. 12-549-375x26 mm
MicroinjectorSutter InstrumentXenoWorks Digital Microinjector
Microloader Pipette tipsEppendorf20 µL microloader epT.I.P.S.
MicromanipulatorSutter InstrumentXenoWorks Micromanipulator
MicropipetteRainin20 µL
MicroscopeLeicaDM 1000 LED or M165 FCFor microinjection
Nylon mesh
Paint brushBlickNo. 05831-7040Fine, size 4/0
Petri dishPlastic, (60x15 mm, 90x15 mm)

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Tags

Exogenous DNA DeliveryGene Drive ConstructMicroinjection TechniqueEmbryo Yolk InjectionPosterior Pole TargetingPlasmid Solution InjectionAutomated Pressure Pump

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