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Myostatin Inhibitors: Panacea or Predicament for Musculoskeletal Disorders?
1Department of Molecular Genetics and Dental Pharmacology, School of Dentistry and Dental Research Institute, Seoul National University, Seoul, Korea.
Abstract:
Myostatin, also known as growth differentiation factor 8 (GDF8), is a transforming growth factor-β (TGF-β) family member that functions to limit skeletal muscle growth. Accordingly, loss-of-function mutations in myostatin result in a dramatic increase in muscle mass in humans and various animals, while its overexpression leads to severe muscle atrophy. Myostatin also exerts a significant effect on bone metabolism, as demonstrated by enhanced bone mineral density and bone regeneration in myostatin null mice. The identification of myostatin as a negative regulator of muscle and bone mass has sparked an enormous interest in developing myostatin inhibitors as therapeutic agents for treating a variety of clinical conditions associated with musculoskeletal disorders. As a result, various myostatin-targeting strategies involving antibodies, myostatin propeptides, soluble receptors, and endogenous antagonists have been generated, and many of them have progressed to clinical trials. Importantly, most myostatin inhibitors also repress the activities of other closely related TGF-β family members including GDF11, activins, and bone morphogenetic proteins (BMPs), increasing the potential for unwanted side effects, such as vascular side effects through inhibition of BMP 9/10 and bone weakness induced by follistatin through antagonizing several TGF-β family members. Therefore, a careful distinction between targets that may enhance the efficacy of an agent and those that may cause adverse effects is required with the improvement of the target specificity. In this review, we discuss the current understanding of the endogenous function of myostatin, and provide an overview of clinical trial outcomes from different myostatin inhibitors.
Insights
Myostatin inhibitors show promise for muscle and bone disorders. However, targeting myostatin requires careful consideration of potential side effects due to its interaction with other growth factors.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Myostatin (GDF8) is a key regulator of skeletal muscle mass.
- It also influences bone metabolism, affecting bone mineral density and regeneration.
- Dysregulation of myostatin is implicated in various musculoskeletal disorders.
Purpose of the Study:
- To review the endogenous functions of myostatin.
- To provide an overview of clinical trial outcomes for myostatin inhibitors.
- To highlight the importance of target specificity in myostatin-based therapies.
Main Methods:
- Literature review of myostatin's role in muscle and bone.
- Analysis of clinical trial data for various myostatin inhibitors.
- Discussion of potential off-target effects and therapeutic strategies.
Main Results:
- Myostatin inhibition increases muscle mass and enhances bone parameters.
- Numerous myostatin inhibitors (antibodies, propeptides, etc.) are in clinical trials.
- Inhibitors often affect related TGF-β family members, leading to potential side effects.
Conclusions:
- Myostatin inhibitors represent a promising therapeutic avenue for musculoskeletal conditions.
- Careful consideration of target specificity is crucial to mitigate adverse effects.
- Further research is needed to optimize myostatin-targeting strategies for clinical application.
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