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September 14, 2021Endocrine Reviews105 citationsOpen Access

Myostatin/Activin Receptor Ligands in Muscle and the Development Status of Attenuating Drugs

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BRBuel D. RodgersCWChristopher W. Ward

Key Result

Drugs targeting myostatin and activin receptor signaling aim to treat muscle wasting, but many clinical trials have failed due to adverse events or an inability to improve muscle function.

Structured PICO

P
Population
Patients with muscle wasting diseases associated with neuromuscular diseases, myopathies, cancer, heart failure, chronic pulmonary and renal diseases, peripheral neuropathies, inflammatory disorders, and musculoskeletal injuries
I
Intervention
Drugs targeting myostatin and activin receptor signaling (including antibodies and gene therapeutics)

While drugs targeting myostatin and activin receptor signaling show promise for preventing muscle wasting, clinical translation has been hindered by safety issues and a lack of functional improvement.

Abstract

Abstract Muscle wasting disease indications are among the most debilitating and often deadly noncommunicable disease states. As a comorbidity, muscle wasting is associated with different neuromuscular diseases and myopathies, cancer, heart failure, chronic pulmonary and renal diseases, peripheral neuropathies, inflammatory disorders, and, of course, musculoskeletal injuries. Current treatment strategies are relatively ineffective and can at best only limit the rate of muscle degeneration. This includes nutritional supplementation and appetite stimulants as well as immunosuppressants capable of exacerbating muscle loss. Arguably, the most promising treatments in development attempt to disrupt myostatin and activin receptor signaling because these circulating factors are potent inhibitors of muscle growth and regulators of muscle progenitor cell differentiation. Indeed, several studies demonstrated the clinical potential of “inhibiting the inhibitors,” increasing muscle cell protein synthesis, decreasing degradation, enhancing mitochondrial biogenesis, and preserving muscle function. Such changes can prevent muscle wasting in various disease animal models yet many drugs targeting this pathway failed during clinical trials, some from serious treatment-related adverse events and off-target interactions. More often, however, failures resulted from the inability to improve muscle function despite preserving muscle mass. Drugs still in development include antibodies and gene therapeutics, all with different targets and thus, safety, efficacy, and proposed use profiles. Each is unique in design and, if successful, could revolutionize the treatment of both acute and chronic muscle wasting. They could also be used in combination with other developing therapeutics for related muscle pathologies or even metabolic diseases.

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Cite This Study

Rodgers et al. (2021) conducted a review in Muscle wasting diseases. Myostatin and activin receptor attenuating drugs was evaluated. Drugs targeting myostatin and activin receptor signaling aim to treat muscle wasting, but many clinical trials have failed due to adverse events or an inability to improve muscle function.

synapsesocial.com/papers/6a1309f3257f24f1de9eba5ehttps://doi.org/10.1210/endrev/bnab030
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Myostatin inhibitors as therapies for muscle wasting associated with cancer and other disorders2013 · 151 citations
  2. 2Downregulation of myostatin pathway in neuromuscular diseases may explain challenges of anti-myostatin therapeutic approaches2017 · 139 citations
  3. 3Myostatin: a therapeutic target for skeletal muscle wasting2004 · 58 citations
  4. 4Myostatin Inhibitors: Panacea or Predicament for Musculoskeletal Disorders?2020 · 85 citations
  5. 5Clinical Applications of Myostatin Inhibitors for Neuromuscular Diseases2010 · 3 citations