Platform

  • Search
  • Seminars
  • Conferences
  • Jobs

Resources

  • Submit Content
  • About Us

© 2025 World Wide

Open knowledge for all • Started with World Wide Neuro • A 501(c)(3) Non-Profit Organization

Analytics consent required

World Wide relies on analytics signals to operate securely and keep research services available. Accept to continue, or leave the site.

Review the Privacy Policy for details about analytics processing.

World Wide
SeminarsConferencesWorkshopsCoursesJobsMapsFeedLibrary
← Back

Optogenetic Control Nodal Signaling

Back to SeminarsBack
SeminarPast EventOpen Source

Optogenetic control of Nodal signaling patterns

Nathan Lord

PhD

Assistant Professor, Department of Computational and Systems Biology

Schedule
Thursday, September 19, 2024

Showing your local timezone

Schedule

Thursday, September 19, 2024

12:00 PM America/Santiago

Host: LIBRE hub Seminar

Seminar location

Seminar location

Not provided

No geocoded details are available for this content yet.

Access Seminar

Event Information

Format

Past Seminar

Recording

Not available

Host

LIBRE hub Seminar

Seminar location

Seminar location

Not provided

No geocoded details are available for this content yet.

World Wide map

Abstract

Embryos issue instructions to their cells in the form of patterns of signaling activity. Within these patterns, the distribution of signaling in time and space directs the fate of embryonic cells. Tools to perturb developmental signaling with high resolution in space and time can help reveal how these patterns are decoded to make appropriate fate decisions. In this talk, I will present new optogenetic reagents and an experimental pipeline for creating designer Nodal signaling patterns in live zebrafish embryos. Our improved optoNodal reagents eliminate dark activity and improve response kinetics, without sacrificing dynamic range. We adapted an ultra-widefield microscopy platform for parallel light patterning in up to 36 embryos and demonstrated precise spatial control over Nodal signaling activity and downstream gene expression. Using this system, we demonstrate that patterned Nodal activation can initiate specification and internalization movements of endodermal precursors. Further, we used patterned illumination to generate synthetic signaling patterns in Nodal signaling mutants, rescuing several characteristic developmental defects. This study establishes an experimental toolkit for systematic exploration of Nodal signaling patterns in live embryos.

Topics

endodermal precursorsgene expressionmicroscopynodal signalingoptogenetic controlresponse kineticssignaling patternssynthetic signalingultra-widefield microscopyzebrafish embryos

About the Speaker

Nathan Lord

PhD

Assistant Professor, Department of Computational and Systems Biology

Contact & Resources

No additional contact information available

Related Seminars

Seminar64% match - Relevant

Towards open meta-research in neuroimaging

open source

When meta-research (research on research) makes an observation or points out a problem (such as a flaw in methodology), the project should be repeated later to determine whether the problem remains. F

Dec 8, 2024
ORIGAMI - Neural data science - https://neurodatascience.github.io/
Seminar64% match - Relevant

Resonancia Magnética y Detección Remota: No se Necesita Estar tan Cerca”

open source

La resonancia magnética nuclear está basada en el fenómeno del magnetismo nuclear que más aplicaciones ha encontrado para el estudio de enfermedades humanas. Usualmente la señal de RM es recibida y tr

Mar 26, 2025
Universidad Autonoma Metropolitana Itzapalapa
Seminar64% match - Relevant

“A Focus on 3D Printed Lenses: Rapid prototyping, low-cost microscopy and enhanced imaging for the life sciences”

open source

High-quality glass lenses are commonplace in the design of optical instrumentation used across the biosciences. However, research-grade glass lenses are often costly, delicate and, depending on the pr

May 21, 2025
University of Glasgow
World Wide calendar

World Wide highlights

December 2025 • Syncing the latest schedule.

View full calendar
Awaiting featured picks
Month at a glance

Upcoming highlights