angiotensin ii

Peptideapproved

Approved

Dec 21, 2017

Angiotensin is a peptide hormone that causes vasoconstriction and a subsequent increase in blood pressure. It is part of the renin-angiotensin system, which is a major target for drugs that lower blood pressure. Angiotensin also stimulates the release of aldosterone, another hormone, from the adrenal cortex. Aldosterone promotes sodium retention in the distal nephron, in the kidney, which also drives blood pressure up. Angiotensin is an oligopeptide and is a hormone and a powerful dipsogen. Angiotensin I is derived from the precursor molecule angiotensinogen, a serum globulin produced in the liver. Angiotensin I is converted to angiotensin II (AII) through removal of two C-terminal residues by the enzyme angiotensin-converting enzyme (ACE), primarily through ACE within the lung (but also present in endothelial cells and kidney epithelial cells). ACE found in other tissues of the body has no physiological role (ACE has a high density in the lung, but activation here promotes no vasoconstriction, angiotensin II is below physiological levels of action). Angiotensin II acts as an endocrine, autocrine/paracrine, and intracrine hormone. Angiotensin II has prothrombotic potential through adhesion and aggregation of platelets and stimulation of PAI-1 and PAI-2. When cardiac cell growth is stimulated, a local (autocrine-paracrine) renin-angiotensin system is activated in the cardiac myocyte, which stimulates cardiac cell growth through protein kinase C. The same system can be activated in smooth muscle cells in conditions of hypertension, atherosclerosis, or endothelial damage. Angiotensin II is the most important Gq stimulator of the heart during hypertrophy, compared to endothelin-1 and α1 adrenoreceptors. Angiotensin II increases thirst sensation (dipsogen) through the subfornical organ of the brain, decreases the response of the baroreceptor reflex, and increases the desire for salt. It increases secretion of ADH in the posterior pituitary and secretion of ACTH in the anterior pituitary. It also potentiates the release of norepinephrine by direct action on postganglionic sympathetic fibers. Angiotensin II acts on the adrenal cortex, causing it to release aldosterone, a hormone that causes the kidneys to retain sodium and lose potassium. Elevated plasma angiotensin II levels are responsible for the elevated aldosterone levels present during the luteal phase of the menstrual cycle. Angiotensin II has a direct effect on the proximal tubules to increase Na+ reabsorption. It has a complex and variable effect on glomerular filtration and renal blood flow depending on the setting. Increases in systemic blood pressure will maintain renal perfusion pressure; however, constriction of the afferent and efferent glomerular arterioles will tend to restrict renal blood flow. The effect on the efferent arteriolar resistance is, however, markedly greater, in part due to its smaller basal diameter; this tends to increase glomerular capillary hydrostatic pressure and maintain glomerular filtration rate. A number of other mechanisms can affect renal blood flow and GFR. High concentrations of Angiotensin II can constrict the glomerular mesangium, reducing the area for glomerular filtration. Angiotensin II is a sensitizer to tubuloglomerular feedback, preventing an excessive rise in GFR. Angiotensin II causes the local release of prostaglandins, which, in turn, antagonize renal vasoconstriction. The net effect of these competing mechanisms on glomerular filtration will vary with the physiological and pharmacological environment. Angiotensin was independently isolated in Indianapolis and Argentina in the late 1930s (as 'angiotonin' and 'hypertensin', respectively) and subsequently characterised and synthesized by groups at the Cleveland Clinic and Ciba laboratories in Basel, Switzerland. — NCATS

Clinical trial activity

39 trials · 39 clinical orgs · 2 marketing orgs

Phase 1
7
Phase 2
9
Phase 3
6
Phase 4
12

Earliest trial started Oct 1, 1999 (NCT01456208)

Timeline

2010s

  1. Jan 1, 2010

    Earliest Phase 1 Sponsor(trial)

  2. Jan 1, 2010

    Earliest Phase 2 Sponsor(trial)

  3. Jan 1, 2015

    La Jolla Pharmaceutical Company — Earliest Phase 3 Sponsor(trial)

  4. Dec 21, 2017

    La Jolla Pharmaceutical Company — Earliest FDA Approval

  5. Dec 21, 2017

    La Jolla Pharmaceutical Company — NDA Secondary Org

  6. Dec 21, 2017

    La Jolla Pharmaceutical Company — NDA Organization

2020s

  1. Jun 3, 2025

    Gland Pharma Ltd — Marketing Organization

Indications

Mechanism of action

Approval history

  • approvedPriority reviewDec 21, 2017

Chemistry & pharmacology

Loading structure…

SMILES

CC(=O)O.CC[C@H](C)[C@H](NC(=O)[C@H](Cc1ccc(O)cc1)NC(=O)[C@@H](NC(=O)[C@H](CCCNC(=N)N)NC(=O)[C@@H](N)CC(=O)O)C(C)C)C(=O)N[C@@H](Cc1cnc[nH]1)C(=O)N1CCC[C@H]1C(=O)N[C@@H](Cc1ccccc1)C(=O)O
Mol. weight
1106.25 g/mol
Chirality
Single Stereoisomer
Inorganic
No
Polymer
No
Delivery
Parenteral
Availability
Prescription Only
Multi-specific
No

Oral

No

Parenteral

Yes

Topical

No

Sources

Also known as

  • angiotensin ii
  • angiotensin ii
  • angiotensin ii
  • angiotensin ii
  • angiotensin ii
  • angiotensin ii acetate
  • ljpc-501

Clinical trials

NCT IDPhaseStart dateSponsor(s)
NCT07312292Phase 2Jan 1, 2026PAION Deutschland GmbH, Utrecht University
NCT07212686Phase 4Sep 9, 2025Innoviva, Northwell Health
NCT06746753Phase 4Mar 1, 2025Atrium Medical Center, Wake Forest University
NCT06693726Phase 4Jan 31, 2025University of Iowa
NCT06615102Phase 3Jan 31, 2025German Research Foundation, University of Munster
NCT06487585Phase 4Aug 20, 2024University of Maryland
NCT06351150Phase 3May 31, 2024Jiangsu Chia-tai Tianqing Pharmaceutical Co.,Ltd
NCT06234592N/AJan 31, 2024European Society of Intensive Care Medicine, Government of United Kingdom, University of London
NCT06122987Phase 4Dec 31, 2023Kingman Regional Medical Center, La Jolla Pharmaceutical Company
NCT06157580Early Phase 1 (Phase 1)Dec 1, 2023University of Iowa
NCT05824767Phase 4Apr 17, 2023La Jolla Pharmaceutical Company, University of New Mexico
NCT05193370Phase 4Jan 3, 2022La Jolla Pharmaceutical Company, National Center for Advancing Translational Science (NCATS), University of New Mexico
NCT04901169Phase 2/Phase 3 (Phase 3)Jan 1, 2022La Jolla Pharmaceutical Company, University of California, San Francisco
NCT05199493Phase 3Dec 27, 2021German Research Foundation, University of Munster
NCT05065645Phase 1Oct 31, 2021Apeiron Biologics
NCT04904562Phase 4Jun 15, 2021La Jolla Pharmaceutical Company, Northwestern University
NCT04592744Phase 4Nov 30, 2020University of California, Los Angeles
NCT04558359Phase 4Oct 19, 2020University of Kentucky
NCT04529005Phase 4Aug 13, 2020La Jolla Pharmaceutical Company, University of Illinois at Chicago
NCT04287686N/AFeb 29, 2020Guangzhou Medical University
Showing 20 of 39 trials
Page 1 / 2

Organizations

Research & Development (39)

OrganizationOrg typeTrialsAs lead sponsorPhasesEarliest year
La Jolla Pharmaceutical CompanyFor profit11552014
Harvard UniversityAcademic/Hospital4421999
German Research FoundationAcademic/Hospital2012021
University of California, Los AngelesAcademic/Hospital2222020
University of EdinburghAcademic/Hospital2212009
University of IowaAcademic/Hospital2222023
University of LondonAcademic/Hospital2122018
University of MunsterAcademic/Hospital2212021
University of New MexicoAcademic/Hospital2212022
Wake Forest UniversityAcademic/Hospital2222019
Apeiron BiologicsFor profit1112021
Atrium Medical CenterAcademic/Hospital1012025
Austin HealthAcademic/Hospital1112010
Cairo UniversityAcademic/Hospital1112018
European Society of Intensive Care MedicineAcademic/Hospital1012024
Forest LaboratoriesFor profit1012009
George Washington UniversityAcademic/Hospital1112011
Government of United KingdomGovernment1012024
Guangzhou Medical UniversityAcademic/Hospital1112020
InnovivaFor profit1012025
39 organizations
Page 1 / 2

Marketing (3)

OrganizationOrg typeRelationshipDate
Gland Pharma LtdFor profitMKTGJun 3, 2025
La Jolla Pharmaceutical CompanyFor profitNDA2Dec 21, 2017
La Jolla Pharmaceutical CompanyFor profitNDADec 21, 2017