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In vivo modulation of morphogenetic movements in Drosophila embryos with femtosecond laser pulses.


ABSTRACT: The complex biomechanical events associated with embryo development are investigated in vivo, by using femtosecond laser pulse-induced ablation combined with multimodal nonlinear microscopy. We demonstrate controlled intravital ablations preserving local cytoskeleton dynamics and resulting in the modulation of specific morphogenetic movements in nonmutant Drosophila embryos. A quantitative description of complex movements is obtained both in GFP-expressing systems by using whole-embryo two-photon microscopy and in unlabeled nontransgenic embryos by using third harmonic generation microscopy. This methodology provides insight into the issue of mechano-sensitive gene expression by revealing the correlation of in vivo tissue deformation patterns with Twist protein expression in stomodeal cells at gastrulation.

SUBMITTER: Supatto W 

PROVIDER: S-EPMC545833 | biostudies-other | 2005 Jan

REPOSITORIES: biostudies-other

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In vivo modulation of morphogenetic movements in Drosophila embryos with femtosecond laser pulses.

Supatto Willy W   Débarre Delphine D   Moulia Bruno B   Brouzés Eric E   Martin Jean-Louis JL   Farge Emmanuel E   Beaurepaire Emmanuel E  

Proceedings of the National Academy of Sciences of the United States of America 20050118 4


The complex biomechanical events associated with embryo development are investigated in vivo, by using femtosecond laser pulse-induced ablation combined with multimodal nonlinear microscopy. We demonstrate controlled intravital ablations preserving local cytoskeleton dynamics and resulting in the modulation of specific morphogenetic movements in nonmutant Drosophila embryos. A quantitative description of complex movements is obtained both in GFP-expressing systems by using whole-embryo two-photo  ...[more]

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