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J Peluso

Showing results (51-60 of 382) with videos related to

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Steroids|February 14, 2012
Evidence for a genomic mechanism of action for progesterone receptor membrane component-1John J Peluso, Josh DeCerbo, Valentina Lodde
Endocrinology|September 21, 2001
Basic fibroblast growth factor maintains calcium homeostasis and granulosa cell viability by stimulating calcium efflux via a PKC delta-dependent pathwayJ J Peluso, A Pappalardo, G Fernandez
Annals of Global Health|March 12, 2017
Bidirectional Exchanges of Medical Students Between Institutional Partners in Global Health Clinical Education Programs: Putting Ethical Principles into PracticeRobert Rohrbaugh, Anne Kellett, Michael J Peluso
Endocrinology|May 26, 1999
Hepatocyte growth factor induces rat ovarian surface epithelial cell mitosis or apoptosis depending on the presence or absence of an extracellular matrixS Hess, R Gulati, J J Peluso
Biology of Reproduction|March 22, 2001
E-cadherin-mediated cell contact prevents apoptosis of spontaneously immortalized granulosa cells by regulating Akt kinase activityJ J Peluso, A Pappalardo, G Fernandez
JBR-BTR : Organe De La Societe Royale Belge De Radiologie (SRBR) = Orgaan Van De Koninklijke Belgische Vereniging Voor Radiologie (KBVR)|October 31, 2007
Pulmonary agenesis vs congenital diaphragmatic herniationJ Peluso, E Pattyn, M H Smet
Endocrinology|November 10, 2007
Progesterone receptor membrane component-1 (PGRMC1) is the mediator of progesterone's antiapoptotic action in spontaneously immortalized granulosa cells as revealed by PGRMC1 small interfering ribonucleic acid treatment and functional analysis of PGRMC1 mutationsJohn J Peluso, Jonathan Romak, Xiufang Liu
Endocrinology|February 17, 2007
Progesterone maintains basal intracellular adenosine triphosphate levels and viability of spontaneously immortalized granulosa cells by promoting an interaction between 14-3-3sigma and ATP synthase beta/precursor through a protein kinase G-dependent mechanismJohn J Peluso, Xiufang Liu, Jonathan Romak
Endocrinology|June 22, 2012
Progesterone regulation of progesterone receptor membrane component 1 (PGRMC1) sumoylation and transcriptional activity in spontaneously immortalized granulosa cellsJohn J Peluso, Valentina Lodde, Xiufang Liu
Topics in Antiviral Medicine|June 14, 2023
CROI 2023: Acute and Post-Acute COVID-19Annukka A R Antar, Michael J Peluso
Pageof 39

Showing results (51-60 of 382) with videos related to

Sort By:
Pageof 39
Steroids|February 14, 2012
Evidence for a genomic mechanism of action for progesterone receptor membrane component-1John J Peluso, Josh DeCerbo, Valentina Lodde
Endocrinology|September 21, 2001
Basic fibroblast growth factor maintains calcium homeostasis and granulosa cell viability by stimulating calcium efflux via a PKC delta-dependent pathwayJ J Peluso, A Pappalardo, G Fernandez
Annals of Global Health|March 12, 2017
Bidirectional Exchanges of Medical Students Between Institutional Partners in Global Health Clinical Education Programs: Putting Ethical Principles into PracticeRobert Rohrbaugh, Anne Kellett, Michael J Peluso
Endocrinology|May 26, 1999
Hepatocyte growth factor induces rat ovarian surface epithelial cell mitosis or apoptosis depending on the presence or absence of an extracellular matrixS Hess, R Gulati, J J Peluso
Biology of Reproduction|March 22, 2001
E-cadherin-mediated cell contact prevents apoptosis of spontaneously immortalized granulosa cells by regulating Akt kinase activityJ J Peluso, A Pappalardo, G Fernandez
JBR-BTR : Organe De La Societe Royale Belge De Radiologie (SRBR) = Orgaan Van De Koninklijke Belgische Vereniging Voor Radiologie (KBVR)|October 31, 2007
Pulmonary agenesis vs congenital diaphragmatic herniationJ Peluso, E Pattyn, M H Smet
Endocrinology|November 10, 2007
Progesterone receptor membrane component-1 (PGRMC1) is the mediator of progesterone's antiapoptotic action in spontaneously immortalized granulosa cells as revealed by PGRMC1 small interfering ribonucleic acid treatment and functional analysis of PGRMC1 mutationsJohn J Peluso, Jonathan Romak, Xiufang Liu
Endocrinology|February 17, 2007
Progesterone maintains basal intracellular adenosine triphosphate levels and viability of spontaneously immortalized granulosa cells by promoting an interaction between 14-3-3sigma and ATP synthase beta/precursor through a protein kinase G-dependent mechanismJohn J Peluso, Xiufang Liu, Jonathan Romak
Endocrinology|June 22, 2012
Progesterone regulation of progesterone receptor membrane component 1 (PGRMC1) sumoylation and transcriptional activity in spontaneously immortalized granulosa cellsJohn J Peluso, Valentina Lodde, Xiufang Liu
Topics in Antiviral Medicine|June 14, 2023
CROI 2023: Acute and Post-Acute COVID-19Annukka A R Antar, Michael J Peluso
Pageof 39