Prostaglandin E2 Receptor EP4 Inhibition Contracts Rat Ductus Arteriosus. 2018

Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
Department of Cell Physiology, The Jikei University School of Medicine.

Patent ductus arteriosus (PDA) is common in premature infants. Cyclooxygenase inhibitors such as indomethacin, which inhibit prostaglandin E2(PGE2) synthesis, are currently the sole treatments for patients with PDA. Their efficacy are, however, frequently limited, and adverse effects are problematic. Because the PGE2-specific receptor EP4 selectively expresses in rat ductus arteriosus (DA), it is hypothesized that EP4 inhibition would promote DA closure with fewer side-effects.Methods and Results:A new chemical compound EP4 antagonist, RQ-15986 (renamed from CJ-042794), was used. Whether RQ-15986 selectively contracted the DA was examined by measuring the isometric tension of rat DA ex vivo at embryonic day 19 (e19) and e21. RQ-15986 at a dose of 10-6mol/L increased the isometric tension of the DA up to 44.8±6.2% and 69.1±12.9% to the maximal KCl-induced tension at e19 and e21 respectively. The effect of RQ-15986 on rat DA in vivo was also tested by using a rapid whole-body freezing method. RQ-15986 inhibited PGE1-induced DA dilatation in neonatal rats. Furthermore, RQ-15986 contracted the DA in a dose-dependent manner, and the constriction was greater at e21 than at e19. Moreover, RQ-15986 did not contract the aorta or the marginal artery of the colon. EP4 inhibition contracts rat DA with fewer side-effects. EP4 inhibition is a promising alternative strategy to treat patients with PDA.

UI MeSH Term Description Entries
D009200 Myocardial Contraction Contractile activity of the MYOCARDIUM. Heart Contractility,Inotropism, Cardiac,Cardiac Inotropism,Cardiac Inotropisms,Contractilities, Heart,Contractility, Heart,Contraction, Myocardial,Contractions, Myocardial,Heart Contractilities,Inotropisms, Cardiac,Myocardial Contractions
D004373 Ductus Arteriosus A fetal blood vessel connecting the pulmonary artery with the descending aorta. Arteriosus, Ductus
D004374 Ductus Arteriosus, Patent A congenital heart defect characterized by the persistent opening of fetal DUCTUS ARTERIOSUS that connects the PULMONARY ARTERY to the descending aorta (AORTA, DESCENDING) allowing unoxygenated blood to bypass the lung and flow to the PLACENTA. Normally, the ductus is closed shortly after birth. Patent Ductus Arteriosus Familial,Patency of the Ductus Arteriosus,Patent Ductus Arteriosus
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001549 Benzamides BENZOIC ACID amides.
D015232 Dinoprostone The most common and most biologically active of the mammalian prostaglandins. It exhibits most biological activities characteristic of prostaglandins and has been used extensively as an oxytocic agent. The compound also displays a protective effect on the intestinal mucosa. PGE2,PGE2alpha,Prostaglandin E2,Prostaglandin E2alpha,PGE2 alpha,Prepidil Gel,Prostaglandin E2 alpha,Prostenon,E2 alpha, Prostaglandin,E2, Prostaglandin,E2alpha, Prostaglandin,Gel, Prepidil,alpha, PGE2,alpha, Prostaglandin E2
D017208 Rats, Wistar A strain of albino rat developed at the Wistar Institute that has spread widely at other institutions. This has markedly diluted the original strain. Wistar Rat,Rat, Wistar,Wistar Rats
D051381 Rats The common name for the genus Rattus. Rattus,Rats, Laboratory,Rats, Norway,Rattus norvegicus,Laboratory Rat,Laboratory Rats,Norway Rat,Norway Rats,Rat,Rat, Laboratory,Rat, Norway,norvegicus, Rattus
D058309 Receptors, Prostaglandin E, EP4 Subtype A subtype of prostaglandin E receptors that specifically couples to GS ALPHA GTP-BINDING PROTEIN SUBUNITS and subsequently activates ADENYLYL CYCLASES. The receptor may also signal through the activation of PHOSPHATIDYLINOSITOL 3-KINASE. PGE Receptor, EP4 Subtype,Prostaglandin E Receptor 4,Prostaglandin E2 Receptor, EP4 Subtype,Prostaglandin EP4 Receptors,Prostanoid Receptor EP4,Receptor, Prostaglandin EP4,EP4 Receptor, Prostaglandin,EP4 Receptors, Prostaglandin,EP4, Prostanoid Receptor,Prostaglandin EP4 Receptor,Receptor EP4, Prostanoid,Receptors, Prostaglandin EP4

Related Publications

Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
January 2014, Circulation,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
May 1998, Biochemical and biophysical research communications,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
September 2006, Pediatric research,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
November 2006, The Journal of clinical investigation,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
October 2004, Pediatric research,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
May 2004, American journal of physiology. Regulatory, integrative and comparative physiology,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
September 2018, Biochemical and biophysical research communications,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
January 2020, Cancer science,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
December 2006, The Journal of pharmacology and experimental therapeutics,
Toshiki Sakuma, and Toru Akaike, and Susumu Minamisawa
April 1978, Prostaglandins,
Copied contents to your clipboard!