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Morpholino Publication Database

This database contains citations and abstracts for research using Morpholino oligos, as well as some review articles incorporating Morpholino data. You can search the content using the filter boxes below.

There are 12132 scientific papers returned from the database with the search filters currently being used below.

β-Catenin and SOX2 Interaction Regulate Visual Experience-Dependent Cell Homeostasis in the Developing Xenopus Thalamus

Authors:
Gao J, Lu Y, Luo Y, Duan X, Chen P, Zhang X, Wu X, Qiu M, Shen W
Citation:
Int J Mol Sci. 2023 Sep 2;24(17):13593. doi: 10.3390/ijms241713593
Epub:
Not Epub
Abstract:
In the vertebrate brain, sensory experience plays a crucial role in shaping thalamocortical connections for visual processing....
Delivery Method:
electroporation
Organism or Cell Type:
Xenopus laevis
Citation Extract:
Gao J, Lu Y, Luo Y, Duan X, Chen P, Zhang X, Wu X, Qiu M, Shen W. β-Catenin and SOX2 Interaction Regulate Visual Experience-Dependent Cell Homeostasis in the Developing Xenopus Thalamus. Int J Mol Sci. 2023 Sep 2;24(17):13593. doi: 10.3390/ijms241713593.

Toxic effects of exogenous retinoic acid on the neurodevelopment of zebrafish (Danio rerio) embryos

Authors:
Wang X, Ma T, Wei C, Liu J, Yu T, Zou Y, Liu S, Yang Z, Xi J
Citation:
Neurotoxicol Teratol. 2023 Sep 7:107291. doi: 10.1016/j.ntt.2023.107291. Online ahead of print
Epub:
Yes
Abstract:
Endogenous retinoic acid (RA) is essential for embryonic development and maintaining adult physiological processes. Human-...
Organism or Cell Type:
zebrafish
Citation Extract:
Wang X, Ma T, Wei C, Liu J, Yu T, Zou Y, Liu S, Yang Z, Xi J. Toxic effects of exogenous retinoic acid on the neurodevelopment of zebrafish (Danio rerio) embryos. Neurotoxicol Teratol. 2023 Sep 7:107291. doi: 10.1016/j.ntt.2023.107291. Online ahead of print.

Alternative splicing of its 5' UTR limits CD20 mRNA translation and enables resistance to CD20-directed immunotherapies

Authors:
Ang Z, Paruzzo L, Hayer KE, Schmidt C, Torres-Diz M, Xu F, Zankharia U, Zhang Y, Soldan SS, Zheng S, Falkenstein CD, Loftus JP, Yang SY, Asnani M, King Sainos P, Pillai V, Chong ER, Li M, Tasian SK, Barash Y, Lieberman PM, Ruella M, Schuster SJ, Thomas-Tikhonenko A
Citation:
Blood. 2023 Sep 8:blood.2023020400. doi: 10.1182/blood.2023020400. Online ahead of print
Epub:
Yes
Abstract:
Aberrant skipping of coding exons in CD19 and CD22 compromises responses to immunotherapy for B-cell malignancies. Here, we...
Delivery Method:
Vivo-Morpholino
Organism or Cell Type:
cell culture: OCI-Ly8, Raji, and MEC-1
Citation Extract:
Ang Z, Paruzzo L, Hayer KE, Schmidt C, Torres-Diz M, Xu F, Zankharia U, Zhang Y, Soldan SS, Zheng S, Falkenstein CD, Loftus JP, Yang SY, Asnani M, King Sainos P, Pillai V, Chong ER, Li M, Tasian SK, Barash Y, Lieberman PM, Ruella M, Schuster SJ, Thomas-Tikhonenko A. Alternative splicing of its 5' UTR limits CD20 mRNA translation and enables resistance to CD20-directed immunotherapies. Blood. 2023 Sep 8:blood.2023020400. doi: 10.1182/blood.2023020400. Online ahead of print.

An ancient pan-cnidarian microRNA regulates stinging capsule biogenesis in Nematostella vectensis

Authors:
Fridrich A, Salinas-Saaverda M, Kozlolvski I, Surm JM, Chrysostomou E, Tripathi AM, Frank U, Moran Y
Citation:
Cell Rep. 2023 Sep 5;42(9):113072. doi: 10.1016/j.celrep.2023.113072. Online ahead of print
Epub:
Not Epub
Abstract:
An ancient evolutionary innovation of a novel cell type, the stinging cell (cnidocyte), appeared >600 million years ago in...
Delivery Method:
microinjection
Organism or Cell Type:
Nematostella vectensis
Citation Extract:
Fridrich A, Salinas-Saaverda M, Kozlolvski I, Surm JM, Chrysostomou E, Tripathi AM, Frank U, Moran Y. An ancient pan-cnidarian microRNA regulates stinging capsule biogenesis in Nematostella vectensis. Cell Rep. 2023 Sep 5;42(9):113072. doi: 10.1016/j.celrep.2023.113072. Online ahead of print.

Actomyosin remodeling regulates biomineral formation, growth and morphology during eukaryote skeletogenesis

Authors:
Hijaze E, Gildor T, Seidel R, Layous M, Winter M, Bertinetti L, Politi Y, de-Leon SB-T
Citation:
eLife. 2023;12:RP89080 doi:10.7554/eLife.89080.1
Epub:
Not Epub
Abstract:
Biomineralization had apparently evolved independently in different phyla, using distinct minerals, organic scaffolds and gene...
Delivery Method:
microinjection
Organism or Cell Type:
Paracentrotous lividus (sea urchin)
Citation Extract:
Hijaze E, Gildor T, Seidel R, Layous M, Winter M, Bertinetti L, Politi Y, de-Leon SB-T. Actomyosin remodeling regulates biomineral formation, growth and morphology during eukaryote skeletogenesis. eLife. 2023;12:RP89080 doi:10.7554/eLife.89080.1.

Inhibition of the serine protease HtrA1 by SerpinE2 suggests a role for an extracellular proteolytic pathway in the control of neural crest migration

Authors:
Pera EM, Nilsson-De Moura J, Pomeshchik Y, Roybon L, Milas I
Citation:
bioRxiv. 2023;[preprint] doi:10.1101/2023.09.05.556243
Epub:
Not Epub
Abstract:
Here we present an extracellular proteolytic mechanism involving the serine protease HtrA1 and its inhibitor SerpinE2 in the...
Delivery Method:
microinjection
Organism or Cell Type:
Xenopus laevis
Citation Extract:
Pera EM, Nilsson-De Moura J, Pomeshchik Y, Roybon L, Milas I. Inhibition of the serine protease HtrA1 by SerpinE2 suggests a role for an extracellular proteolytic pathway in the control of neural crest migration. bioRxiv. 2023;[preprint] doi:10.1101/2023.09.05.556243 .

Mitochondrial leak metabolism induces the Spemann-Mangold Organizer via Hif-1α in Xenopus

Authors:
Garfinkel AM, Mnatsakanyan N, Patel JH, Wills AE, Shteyman A, Smith PJS, Alavian KN, Jonas EA, Khokha MF
Citation:
Dev Cell. 2023;[Epub ahead of print] doi:10.1016/j.devcel.2023.08.015
Epub:
Not Epub
Abstract:
An instructive role for metabolism in embryonic patterning is emerging, although a role for mitochondria is poorly defined. We...
Organism or Cell Type:
Xenopus tropicalis
Citation Extract:
Garfinkel AM, Mnatsakanyan N, Patel JH, Wills AE, Shteyman A, Smith PJS, Alavian KN, Jonas EA, Khokha MF. Mitochondrial leak metabolism induces the Spemann-Mangold Organizer via Hif-1α in Xenopus. Dev Cell. 2023;[Epub ahead of print] doi:10.1016/j.devcel.2023.08.015.

Live imaging studies reveal how microclots and the associated inflammatory response enhance cancer cell extravasation

Authors:
Ward J, Martin P
Citation:
J Cell Sci. 2023 Sep 6:jcs.261225. doi: 10.1242/jcs.261225. Online ahead of print
Epub:
Not Epub
Abstract:
Previous clinical studies and work in mouse models have indicated that platelets and microclots may function as enablers in the...
Delivery Method:
microinjection
Organism or Cell Type:
zebrafish
Citation Extract:
Ward J, Martin P. Live imaging studies reveal how microclots and the associated inflammatory response enhance cancer cell extravasation. J Cell Sci. 2023 Sep 6:jcs.261225. doi: 10.1242/jcs.261225. Online ahead of print.

Moderate Elevation of Homocysteine Induces Endothelial Dysfunction through Adaptive UPR Activation and Metabolic Rewiring

Authors:
Chatterjee B, Fatima F, Seth S, Roy SS
Citation:
Preprints. 2023;[preprint] doi: 10.20944/preprints202309.0215.v1
Epub:
Not Epub
Abstract:
Hyperhomocysteinemia (HHcy), a metabolic disorder frequently associated with mutations in the methionine-cysteine metabolic...
Delivery Method:
microinjection
Organism or Cell Type:
zebrafish
Citation Extract:
Chatterjee B, Fatima F, Seth S, Roy SS. Moderate Elevation of Homocysteine Induces Endothelial Dysfunction through Adaptive UPR Activation and Metabolic Rewiring. Preprints. 2023;[preprint] doi: 10.20944/preprints202309.0215.v1.

The gastropod Lottia peitaihoensis as a model to study the body patterning of trochophore larvae

Authors:
Huan P, Liu B
Citation:
Evol Dev. 2023 Sep 4. doi: 10.1111/ede.12456. Online ahead of print
Epub:
Not Epub
Abstract:
The body patterning of trochophore larvae is important for understanding spiralian evolution and the origin of the bilateral...
Organism or Cell Type:
Lottia peitaihoensis (gastropod)
Citation Extract:
Huan P, Liu B. The gastropod Lottia peitaihoensis as a model to study the body patterning of trochophore larvae. Evol Dev. 2023 Sep 4. doi: 10.1111/ede.12456. Online ahead of print.

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