Product References
A spatiotemporal steroidogenic regulatory network in human fetal adrenal glands and gonads.
Frontiers in endocrinology
Wang Y,Guo B,Guo Y,Qi N,Lv Y,Ye Y,Huang Y,Long X,Chen H,Su C,Zhang L,Zhang Q,Li M,Liao J,Yan Y,Mao X,Zeng Y,Jiang J,Chen Z,Guo Y,Gao S,Cheng J,Jiang Y,Mo Z
MA5-16987 was used in Flow Cytometry to study human fetal adrenal glands through single-cell transcriptome techniques, revealing their role in steroid synthesis and sexual differentiation during early gestational weeks.
Tue Dec 06 00:00:00 EST 2022
A spatiotemporal steroidogenic regulatory network in human fetal adrenal glands and gonads.
Frontiers in endocrinology
Wang Y,Guo B,Guo Y,Qi N,Lv Y,Ye Y,Huang Y,Long X,Chen H,Su C,Zhang L,Zhang Q,Li M,Liao J,Yan Y,Mao X,Zeng Y,Jiang J,Chen Z,Guo Y,Gao S,Cheng J,Jiang Y,Mo Z
MA5-16987 was used in Flow Cytometry to study human fetal adrenal glands through single-cell transcriptome techniques, revealing their role in steroid synthesis and sexual differentiation during early gestational weeks.
Tue Dec 06 00:00:00 EST 2022
Heterogeneous Development of β-Cell Populations in Diabetes-Resistant and -Susceptible Mice.
Diabetes
Gottmann P,Speckmann T,Stadion M,Zuljan E,Aga H,Sterr M,Büttner M,Santos PM,Jähnert M,Bornstein SR,Theis FJ,Lickert H,Schürmann A
MA5-16987 was used in Immunohistochemistry-immunofluorescence to identify six β-cell clusters with similar abundance in both strains.
Thu Sep 01 00:00:00 EDT 2022
A point mutation in the Pdia6 gene results in loss of pancreatic β-cell identity causing overt diabetes.
Molecular metabolism
Chhabra NF,Amend AL,Bastidas-Ponce A,Sabrautzki S,Tarquis-Medina M,Sachs S,Rubey M,Lorenz-Depiereux B,Feuchtinger A,Bakhti M,Lickert H,Przemeck GKH,Hrabě de Angelis M
MA5-16987 was used in Immunohistochemistry (PFA fixed) to demonstrate that a global Pdia6 mutation renders mice hypoinsulinemic and hyperglycemic due to loss of pancreatic β-cell function and identity.
Wed Dec 01 00:00:00 EST 2021
A point mutation in the Pdia6 gene results in loss of pancreatic β-cell identity causing overt diabetes.
Molecular metabolism
Chhabra NF,Amend AL,Bastidas-Ponce A,Sabrautzki S,Tarquis-Medina M,Sachs S,Rubey M,Lorenz-Depiereux B,Feuchtinger A,Bakhti M,Lickert H,Przemeck GKH,Hrabě de Angelis M
MA5-16987 was used in Immunohistochemistry (PFA fixed) to demonstrate that a global Pdia6 mutation renders mice hypoinsulinemic and hyperglycemic due to loss of pancreatic β-cell function and identity.
Wed Dec 01 00:00:00 EST 2021
Pancreatic cancer triggers diabetes through TGF-β-mediated selective depletion of islet β-cells.
Life science alliance
Parajuli P,Nguyen TL,Prunier C,Razzaque MS,Xu K,Atfi A
Published figure using Somatostatin monoclonal antibody (Product # MA5-16987) in Immunohistochemistry
Mon Jun 01 00:00:00 EDT 2020
Pancreatic cancer triggers diabetes through TGF-β-mediated selective depletion of islet β-cells.
Life science alliance
Parajuli P,Nguyen TL,Prunier C,Razzaque MS,Xu K,Atfi A
Published figure using Somatostatin monoclonal antibody (Product # MA5-16987) in Immunohistochemistry
Mon Jun 01 00:00:00 EDT 2020
Pancreatic cancer triggers diabetes through TGF-β-mediated selective depletion of islet β-cells.
Life science alliance
Parajuli P,Nguyen TL,Prunier C,Razzaque MS,Xu K,Atfi A
Published figure using Somatostatin monoclonal antibody (Product # MA5-16987) in Immunohistochemistry
Mon Jun 01 00:00:00 EDT 2020
Point mutations in the PDX1 transactivation domain impair human β-cell development and function.
Molecular metabolism
Wang X,Sterr M,Burtscher I,Böttcher A,Beckenbauer J,Siehler J,Meitinger T,Häring HU,Staiger H,Cernilogar FM,Schotta G,Irmler M,Beckers J,Wright CVE,Bakhti M,Lickert H
MA5-16987 was used in Immunocytochemistry-immunoflourescence to reveal mechanistic details of how common coding mutations in PDX1 impair human pancreatic endocrine lineage formation and Β-cell function and contribute to the predisposition for diabetes.
Sat Jun 01 00:00:00 EDT 2019
Point mutations in the PDX1 transactivation domain impair human β-cell development and function.
Molecular metabolism
Wang X,Sterr M,Burtscher I,Böttcher A,Beckenbauer J,Siehler J,Meitinger T,Häring HU,Staiger H,Cernilogar FM,Schotta G,Irmler M,Beckers J,Wright CVE,Bakhti M,Lickert H
MA5-16987 was used in Immunocytochemistry-immunoflourescence to reveal mechanistic details of how common coding mutations in PDX1 impair human pancreatic endocrine lineage formation and Β-cell function and contribute to the predisposition for diabetes.
Sat Jun 01 00:00:00 EDT 2019