Abstract
In vivo transduction or electroporation often requires sub-microliter volume injection of virus or recombinant DNA/RNA to a precise anatomic site. Two-hand manual manipulation of the injection needle and target tissues is dramatically faster than mechanical manipulation, but technically challenging for operators. Here, we present an all open-source, footswitch-actuated injector for nano- or microliter volumes. Our microinjector is simple, can be assembled in less than 2 hours with ordinary tools, does not require custom fabrication or soldering, and can cost less than $130 USD. This device is completely self-contained, pressure controllable, and offers both aspirate and discharge modes to facilitate multiple injections during the same procedure. Pulse-triggered discharges can reliably deliver nanoliter volumes with dispense errors of around 15%. By reducing technical and financial barriers, we anticipate this microinjector may inspire adoption of in vivo electroporation or genome editing across broader scientific communities where access may be presently limited.
Cite
CITATION STYLE
Dominguez, V. H., Frankfurter, M., Hayes, K. B., Kahn, M. L., & Dominguez, M. H. (2026). A portable, ultra-low cost, open-source, pedal-controlled microinjector for laboratory use. PLOS ONE, 21(5 May). https://doi.org/10.1371/journal.pone.0347487
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