Transforming Growth Factor β Receptor Type I Inhibitor, Galunisertib, Has No Beneficial Effects on Aneurysmal

Jeong-Ho Park1, Min-Seob Kim1, Seokran Ham1

  • 1College of Pharmacy, Chung-Ang University, Seoul 06974, Republic of Korea.

Insights

Galunisertib, a TGFβ inhibitor, did not prevent aortic disease in Marfan syndrome (MFS) mice. Losartan effectively treated MFS vascular pathology, suggesting TGFβ signaling may not drive MFS aneurysms.

Area of Science:

  • Cardiovascular Biology
  • Genetics
  • Pharmacology

Background:

  • Marfan syndrome (MFS) is a genetic connective tissue disorder characterized by vascular complications like aortic aneurysm.
  • Increased transforming growth factor β (TGFβ) signaling is implicated in MFS vascular pathogenesis.
  • Inhibiting TGFβ signaling is a therapeutic strategy for preventing MFS-related aortic disease.

Purpose of the Study:

  • To investigate the efficacy of galunisertib, a TGFβ receptor I inhibitor, in a mouse model of Marfan syndrome.
  • To compare galunisertib's effects on MFS vascular pathogenesis with losartan, a standard prophylactic agent.
  • To elucidate the role of canonical TGFβ signaling in MFS-associated aortopathy.

Main Methods:

  • Administered galunisertib or losartan to Fbn1 mice for 8 weeks.
  • Assessed ascending aortas for histopathological changes.
  • Measured phosphorylation of Smad2 and extracellular signal-regulated kinase 1/2 (Erk1/2) as markers of pathway activity.

Main Results:

  • Both galunisertib and losartan effectively inhibited Smad2 phosphorylation, indicating blockade of canonical TGFβ signaling.
  • Galunisertib did not attenuate aortic medial wall disruption or significantly reduce Erk1/2 phosphorylation.
  • Losartan significantly inhibited MFS-associated aortopathy and markedly decreased Erk1/2 phosphorylation.

Conclusions:

  • Galunisertib, despite inhibiting TGFβ signaling, showed no benefit in preventing aneurysmal disease in MFS mice.
  • Losartan effectively mitigated MFS vascular pathology, suggesting its therapeutic potential.
  • These findings challenge the prominent role of canonical TGFβ signaling in driving aneurysmal disease in Marfan syndrome.

Related Concept Videos

Types Of Transformers01:16

Types Of Transformers

Transformers can provide desired voltages to a circuit by modifying the number of turns in the secondary windings.
If the ratio of the number of turns in the secondary winding to that of the primary winding is greater than one, then the transformer is said to be a step-up transformer. In a step-up transformer, the voltage at the secondary winding is greater than the voltage applied at the primary winding.
However, if this ratio is less than one, the transformer is said to be a step-down...
1.4K
Types of Receptors: Internal Receptors01:07

Types of Receptors: Internal Receptors

Many cellular signals are hydrophilic and cannot pass through the plasma membrane. However, small or hydrophobic signaling molecules can cross the hydrophobic core of the plasma membrane and bind intracellular receptors that reside within the cell cytoplasm or nucleus. Many mammalian steroid hormones and nitric oxide (NO) gas use this cell signaling mechanism.
Similar to membrane-bound receptors, the binding of a ligand to the intracellular receptor of causes a conformational change in the...
31.6K
Types of Receptors: Cell Surface Receptors01:28

Types of Receptors: Cell Surface Receptors

Cell-surface receptors, also known as transmembrane receptors, are cell surface, membrane-anchored (integral) proteins that bind to external ligand molecules. This type of receptor spans the plasma membrane and performs signal transduction, converting an extracellular signal into an intracellular signal. Ligands that interact with cell-surface receptors do not have to enter the cell that they affect. Cell-surface receptors are also called cell-specific proteins or markers because they are...
26.8K
Role of Hematopoietic Growth Factors01:28

Role of Hematopoietic Growth Factors

Hematopoietic growth factors are molecules that regulate the differentiation rate of hematopoietic stem cells (HSCs). Erythropoietin (EPO), primarily produced by the kidneys, plays a crucial role in erythrocyte production. When oxygen levels in the blood are low, EPO is released into the bloodstream, reaching the bone marrow, where it stimulates HSCs to differentiate and mature into erythrocytes, which are vital for oxygen transport.
Thrombopoietin (TPO), mainly released by the liver,...
3.2K
Factors Influencing Microbial Growth: pH01:29

Factors Influencing Microbial Growth: pH

Microorganisms are classified as acidophiles, neutrophiles, or alkaliphiles based on their pH growth preferences, reflecting their adaptations to specific environments. Maintaining a stable intracellular pH is critical for macromolecular stability and enzymatic activity, which can be challenged by external pH variations.Neutrophiles, such as Escherichia coli, grow optimally between pH 5.5 and 8.0. These microorganisms inhabit neutral or slightly acidic environments and employ mechanisms like...
1.1K
Factors Influencing Microbial Growth: Temperature01:27

Factors Influencing Microbial Growth: Temperature

Microorganisms display remarkable adaptations, enabling them to thrive in diverse ecological niches across a wide range of temperatures. Temperature profoundly influences microbial growth by affecting enzymatic activity, membrane fluidity, and other cellular processes.Each microorganism operates within a specific temperature range defined by three cardinal points: minimum, optimum, and maximum. Below the minimum temperature, membranes lose fluidity, halting transport processes. Above the...
1.2K