Anti-angiogenic and anti-metastatic activity of synthetic phosphoethanolamine

Adilson Kleber Ferreira1, Vanessa Morais Freitas, Débora Levy

  • 1Biochemistry and Biophysical Laboratory, Butantan Institute, Sao Paulo, Brazil.

Plos One
|March 22, 2013
PubMed
Abstract

Insights

Synthetic phosphoethanolamine (Pho-s) effectively inhibits renal cell carcinoma (RCC) lung metastasis in mice. This compound shows superior efficacy compared to Sunitinib, offering a promising new therapeutic avenue for kidney cancer treatment.

Area of Science:

  • Oncology
  • Pharmacology
  • Cancer Biology

Background:

  • Renal cell carcinoma (RCC) is a prevalent urological malignancy with limited cost-effective therapies.
  • Existing targeted therapies improve lifespan but face cost barriers.
  • Synthetic phosphoethanolamine (Pho-s) has demonstrated broad antitumor activity and in vivo tumor inhibition.

Purpose of the Study:

  • To evaluate the anti-cancer effects of synthetic phosphoethanolamine (Pho-s) on renal cell carcinoma.
  • To investigate the in vitro and in vivo mechanisms of Pho-s action.
  • To compare the efficacy of Pho-s with Sunitinib in a preclinical renal carcinoma model.

Main Methods:

  • In vitro assays assessing endothelial cell proliferation, migration, and tube formation.
  • Cell cycle analysis and molecular studies (mRNA, gene transcription, receptor expression) in HUVECs.
  • In vivo studies using a renal carcinoma model in nude mice to evaluate lung metastasis inhibition.

Main Results:

  • Pho-s exhibits greater sensitivity against murine renal carcinoma (Renca) cells than normal cells.
  • Pho-s inhibits angiogenesis by reducing endothelial cell proliferation, migration, and tube formation.
  • Pho-s induces G2/M cell cycle arrest, apoptosis via the mitochondrial pathway, and disrupts cytoskeleton organization.
  • In vivo, Pho-s significantly inhibits lung metastasis in a renal carcinoma model, outperforming Sunitinib.

Conclusions:

  • Pho-s demonstrates potent anti-metastatic activity against renal cell carcinoma.
  • The compound induces apoptosis and inhibits angiogenesis, supporting its anti-cancer effects.
  • Pho-s represents a promising novel drug candidate for the development of future kidney cancer therapies.

Related Concept Videos

Transducer Mechanism: Enzyme-Linked Receptors01:27

Transducer Mechanism: Enzyme-Linked Receptors

Enzyme-linked receptors are cell-surface receptors acting as an enzyme or associating with an enzyme intracellularly. They make excellent drug targets. Drugs can bind to the extracellular ligand-binding domain or directly affect their enzymatic domain and alter their activity.
Major types that are helpful drug targets include:
Regulation of Angiogenesis and Blood Supply01:24

Regulation of Angiogenesis and Blood Supply

Rapidly dividing tumors, embryos, and wounded tissues require more oxygen than usual, lowering the oxygen concentration in the blood. At low oxygen or hypoxic conditions, an oxygen-sensitive transcription factor called the hypoxia-inducible factor 1 or HIF1 is activated. HIF1 is a dimeric protein of alpha (ɑ) and beta (β) subunits.  Under optimal oxygen conditions, HIF1β is present in the nucleus while HIF1ɑ remains in the cytosol. HIF1ɑ is hydroxylated by prolyl hydroxylase and factor...
Treatment for Pulmonary Arterial Hypertension: Endothelin Receptor Antagonists01:18

Treatment for Pulmonary Arterial Hypertension: Endothelin Receptor Antagonists

Endothelins (ETs) are potent vasoactive peptides critical in the human body's various physiological and pathological processes. One of the most promising therapeutic strategies for treating pulmonary arterial hypertension (PAH) involves counteracting the effects of these endothelins using a class of drugs known as endothelin receptor antagonists.
ETs are synthesized through a complex sequence of enzymatic steps, primarily involving an enzyme referred to as endothelin-converting enzyme (ECE). Of...
Mitogens and the Cell Cycle02:38

Mitogens and the Cell Cycle

Mitogens and their receptors play a crucial role in controlling the progression of the cell cycle. However, the loss of mitogenic control over cell division leads to tumor formation. Therefore, mitogens and mitogen receptors play an important role in cancer research. For instance, the epidermal growth factor (EGF) - a type of mitogen and its transmembrane receptor (EGFR), decides the fate of the cell's proliferation. When EGF binds to EGFR, a member of the ErbB family of tyrosine kinase...