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New treatments addressing the pathophysiology of hereditary angioedema
1Professor of Pediatrics, Harvard Medical School, Senior Investigator, Immune Disease Institute, 800 Huntington Avenue, Boston, MA 02114, USA. aldavis@idi.harvard.edu.
Insights
Hereditary angioedema (HAE) is a rare genetic disorder caused by C1-inhibitor deficiency, leading to severe swelling attacks. New therapies in Phase III development aim to replace C1-inhibitor or target bradykinin pathways to manage HAE effectively.
Area of Science:
- Immunology
- Genetics
- Pharmacology
Background:
- Hereditary angioedema (HAE) is a rare, serious genetic disorder caused by C1-inhibitor deficiency.
- This deficiency leads to uncontrolled activation of plasma cascade systems, primarily the contact system, resulting in bradykinin overproduction and angioedema.
- HAE attacks cause significant pain, debilitation, and potentially life-threatening airway obstruction.
Purpose of the Study:
- To review the current understanding of HAE pathogenesis, focusing on C1-inhibitor deficiency and bradykinin's role.
- To discuss the limitations of existing HAE therapies and introduce promising new agents in late-stage development.
Main Methods:
- Review of scientific literature on hereditary angioedema.
- Analysis of the mechanisms of action for novel therapeutic agents targeting C1-inhibitor deficiency and the contact system.
Main Results:
- Current HAE treatments are suboptimal, with no universally effective acute attack therapies available in the US.
- Five novel agents are in Phase III trials: three C1-inhibitor replacement therapies (nano-filtered, pasteurized, recombinant) and two agents targeting the contact system (kallikrein inhibitor, bradykinin receptor-2 antagonist).
- C1-inhibitor replacement therapies aim to restore regulatory control, while kallikrein and bradykinin antagonists target mediators of vascular permeability.
Conclusions:
- Significant advancements are being made in HAE treatment, with novel therapies addressing the underlying pathophysiology.
- These emerging treatments offer potential for improved management of acute attacks and prophylaxis, addressing unmet needs in HAE patient care.
Abstract:
Hereditary angioedema is a serious medical condition caused by a deficiency of C1-inhibitor. The condition is the result of a defect in the gene controlling the synthesis of C1-inhibitor, which regulates the activity of a number of plasma cascade systems. Although the prevalence of hereditary angioedema is low - between 1:10,000 to 1:50,000 - the condition can result in considerable pain, debilitation, reduced quality of life, and even death in those afflicted. Hereditary angioedema presents clinically as cutaneous swelling of the extremities, face, genitals, and trunk, or painful swelling of the gastrointestinal mucosa. Angioedema of the upper airways is extremely serious and has resulted in death by asphyxiation.Subnormal levels of C1-inhibitor are associated with the inappropriate activation of a number of pathways - including, in particular, the complement and contact systems, and to some extent, the fibrinolysis and coagulation systems.Current findings indicate bradykinin, a product of contact system activation, as the primary mediator of angioedema in patients with C1-inhibitor deficiency. However, other systems may play a role in bradykinin's rapid and excessive generation by depleting available levels of C1-inhibitor.There are currently no effective therapies in the United States to treat acute attacks of hereditary angioedema, and currently available agents used to treat hereditary angioedema prophylactically are suboptimal. Five new agents are, however, in Phase III development. Three of these agents replace C1-inhibitor, directly addressing the underlying cause of hereditary angioedema and re-establishing regulatory control of all pathways and proteases involved in its pathogenesis. These agents include a nano-filtered C1-inhibitor replacement therapy, a pasteurized C1-inhibitor, and a recombinant C1-inhibitor isolated from the milk of transgenic rabbits. All C1-inhibitors are being investigated for acute angioedema attacks; the nano-filtered C1-inhibitor is also being investigated for prophylaxis of attacks. The other two agents, a kallikrein inhibitor and a bradykinin receptor-2 antagonist, target contact system components that are mediators of vascular permeability. These mediators are formed by contact system activation as a result of C1-inhibitor consumption.
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