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Complement regulation and kidney diseases: recent knowledge of the double-edged roles of complement activation in
Masashi Mizuno1, Yasuhiro Suzuki2, Yasuhiko Ito2
1Renal Replacement Therapy, Division of Nephrology, Nagoya University Graduate School of Medicine, 65 Tsurumai-cho, Showa-ku, Nagoya, 466-8550, Japan. masashim1jp@yahoo.co.jp.
Insights
The complement system is crucial for immunity and homeostasis. Dysregulation of complement activation can cause renal diseases, but new anti-complement therapies offer treatment options.
Area of Science:
- Immunology
- Nephrology
- Complement System Biology
Background:
- The complement system is a key component of innate immunity, interacting with acquired immunity.
- Complement proteins (C3, C4, C1q, C4d) are routinely used in diagnosing renal pathologies.
- Complement activation is linked to renal diseases like glomerulonephritis and lupus nephritis.
Purpose of the Study:
- To summarize the roles of complement activation and regulation in homeostasis and disease.
- To highlight the link between complement dysregulation and renal disease progression.
- To discuss the development and clinical availability of anti-complement therapies.
Main Methods:
- Review of existing literature on complement system physiology and pathology.
- Analysis of the role of complement in various renal diseases.
- Examination of mechanisms of complement dysregulation and therapeutic strategies.
Main Results:
- Unregulated complement activation can drive renal injury, even in normocomplementemic patients.
- Complement dysregulation is implicated in diseases like atypical hemolytic uremic syndrome and C3 glomerulopathy.
- Numerous anti-complement agents have been developed, with some now clinically available.
Conclusions:
- The complement system's role in renal disease is increasingly understood.
- Anti-complement therapies are a viable treatment for complement-related diseases.
- Further research in both basic and clinical settings is advancing complementology in nephrology.
Abstract:
The complement activation system plays important roles to maintain homeostasis in the host and to fight foreign invaders to protect the host. Therefore, the complement system is considered a core part of innate immunity which also cross-talks to acquired immunity. In the history of nephrology, the complement system is familiar to us, because complement protein or fragment deposition, including C3, C4, C1q, and/or C4d, is routinely estimated by immunohistochemistry to diagnose renal pathologies. The relationships between pathological mechanisms and complement activation have been investigated for renal diseases such as post-infectious glomerulonephritis, lupus nephritis, and primary membranoproliferative glomerulonephritis, which are usually accompanied by hypocomplementemia. However, unregulated complement activation in local areas might be associated with progression of various renal injuries even in the normocomplementemic patient. Recently, attention has focused on dysfunction of complement regulation in various diseases including renal diseases such as atypical hemolytic uremic syndrome and C3 glomerulopathy. Some mechanisms associated with complement activation in these diseases were clarified. In addition, lots of anti-complement agents were developed and some of the agents have become clinically available. Now, anti-complement therapies represent a realistic choice of therapeutic approaches for complement-related diseases. Research on roles of complement activation is proceeding into new stages in the field of nephrology and in other fields involving both basic and clinical research. We herein summarize relationships between the complement activation and regulation systems, their physiological effects and roles in maintenance of homeostasis in the host, and how dysregulation of the complement system triggers disease, especially renal disease.
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