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Bioanalysis
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February 4, 2021
Bioanalytical challenges and strategies of CRISPR genome editors
Mikko Hölttä, Roberto Nitsch, Neil Henderson
The Biochemical Journal
|
October 9, 2003
WBP-2, a WW domain binding protein, interacts with the thyroid-specific transcription factor Pax8
Roberto Nitsch, Tina Di Palma, Anna Mascia, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy
|
July 3, 2025
Peeling back the layers of immunogenicity in Cas9-based genomic medicine
Virpi Stigzelius, Anna Lina Cavallo, Rakesh Kantilal Chandode, et al.
ALTEX
|
May 10, 2025
Exploring the synergy of CRISPR and microphysiological systems
Emanuele Celauro, Amer Saleh, Prathap K Mahalingaiah, et al.
The Journal of Biological Chemistry
|
November 21, 2002
The paired domain-containing factor Pax8 and the homeodomain-containing factor TTF-1 directly interact and synergistically activate transcription
Tina Di Palma, Roberto Nitsch, Anna Mascia, et al.
Nature Communications
|
July 9, 2022
Precision digital mapping of endogenous and induced genomic DNA breaks by INDUCE-seq
Felix M Dobbs, Patrick van Eijk, Mick D Fellows, et al.
Endocrinology
|
October 27, 2011
CDH16/Ksp-cadherin is expressed in the developing thyroid gland and is strongly down-regulated in thyroid carcinomas
Gaetano Calì, Flaviana Gentile, Sara Mogavero, et al.
Molecular Endocrinology (Baltimore, Md.)
|
April 15, 2006
Functional inactivation of the transcription factor Pax8 through oligomerization chain reaction
Barbara D'Andrea, Roberto Iacone, Tina Di Palma, et al.
BMC Genomics
|
May 18, 2010
Comparative genomics reveals a functional thyroid-specific element in the far upstream region of the PAX8 gene
Roberto Nitsch, Valeria Di Dato, Alessandra di Gennaro, et al.
Molecular and Cellular Biology
|
November 2, 2005
Pendrin is a novel in vivo downstream target gene of the TTF-1/Nkx-2.1 homeodomain transcription factor in differentiated thyroid cells
Monica Dentice, Cristina Luongo, Antonia Elefante, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 25) with videos related to
Sort By:
Page
of 3
Bioanalysis
|
February 4, 2021
Bioanalytical challenges and strategies of CRISPR genome editors
Mikko Hölttä, Roberto Nitsch, Neil Henderson
The Biochemical Journal
|
October 9, 2003
WBP-2, a WW domain binding protein, interacts with the thyroid-specific transcription factor Pax8
Roberto Nitsch, Tina Di Palma, Anna Mascia, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy
|
July 3, 2025
Peeling back the layers of immunogenicity in Cas9-based genomic medicine
Virpi Stigzelius, Anna Lina Cavallo, Rakesh Kantilal Chandode, et al.
ALTEX
|
May 10, 2025
Exploring the synergy of CRISPR and microphysiological systems
Emanuele Celauro, Amer Saleh, Prathap K Mahalingaiah, et al.
The Journal of Biological Chemistry
|
November 21, 2002
The paired domain-containing factor Pax8 and the homeodomain-containing factor TTF-1 directly interact and synergistically activate transcription
Tina Di Palma, Roberto Nitsch, Anna Mascia, et al.
Nature Communications
|
July 9, 2022
Precision digital mapping of endogenous and induced genomic DNA breaks by INDUCE-seq
Felix M Dobbs, Patrick van Eijk, Mick D Fellows, et al.
Endocrinology
|
October 27, 2011
CDH16/Ksp-cadherin is expressed in the developing thyroid gland and is strongly down-regulated in thyroid carcinomas
Gaetano Calì, Flaviana Gentile, Sara Mogavero, et al.
Molecular Endocrinology (Baltimore, Md.)
|
April 15, 2006
Functional inactivation of the transcription factor Pax8 through oligomerization chain reaction
Barbara D'Andrea, Roberto Iacone, Tina Di Palma, et al.
BMC Genomics
|
May 18, 2010
Comparative genomics reveals a functional thyroid-specific element in the far upstream region of the PAX8 gene
Roberto Nitsch, Valeria Di Dato, Alessandra di Gennaro, et al.
Molecular and Cellular Biology
|
November 2, 2005
Pendrin is a novel in vivo downstream target gene of the TTF-1/Nkx-2.1 homeodomain transcription factor in differentiated thyroid cells
Monica Dentice, Cristina Luongo, Antonia Elefante, et al.
Page
of 3