Clinical implications of PTEN loss in prostate cancer

Tamara Jamaspishvili1,2, David M Berman1,2, Ashley E Ross3

  • 1Division of Cancer Biology and Genetics, Cancer Research Institute, Queen's University, Kingston, Ontario, Canada.

Nature Reviews. Urology
|February 21, 2018
PubMed

Insights

PTEN gene loss is common in prostate cancer, impacting outcomes. PTEN status can guide treatment, especially in advanced disease, and may predict response to targeted therapies.

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • Genomic aberrations of the PTEN tumor suppressor gene are frequent in prostate cancer, occurring in ~20% of primary tumors and up to 50% of castration-resistant tumors.
  • Loss of PTEN function activates the PI3K-AKT pathway, correlating with adverse oncological outcomes and distinguishing indolent from aggressive disease.

Purpose of the Study:

  • To evaluate the utility of PTEN status as a prognostic and predictive biomarker in prostate cancer.
  • To explore the role of PTEN in advanced disease and its potential for predicting response to targeted therapies.

Main Methods:

  • Development and application of analytically validated, clinical-grade assays for PTEN loss detection in tumor tissue and blood liquid biopsies.
  • Correlation analysis of PTEN loss with protein levels, pathological features, and oncological outcomes.

Main Results:

  • Clinical-grade assays demonstrate a robust correlation between PTEN loss and its protein expression.
  • PTEN loss is strongly associated with adverse pathological features and poorer oncological outcomes.
  • Assessing PTEN status in liquid biopsies shows promise for predicting treatment response in advanced prostate cancer.

Conclusions:

  • PTEN status is a valuable biomarker for distinguishing prostate cancer indolent from aggressive disease and predicting outcomes.
  • Targeting the PI3K-AKT-mTOR pathway may benefit patients with specific PTEN alterations.
  • PTEN may have additional roles in modulating the immune response and tumor microenvironment, independent of the PI3K-AKT pathway.

Related Concept Videos

Line Loss01:10

Line Loss

The different configurations of source-load connections include wye (star) and delta connections. The relationship between line and phase voltages and currents varies depending on the configuration. When the source is supplying power, it is transmitted through the wires to the load, and during this transmission, some power is absorbed by the wires, leading to line loss.
Line loss impacts power delivery efficiency in a balanced three-phase circuit. The symmetry in such a circuit simplifies the...
548
Reducing Line Loss01:18

Reducing Line Loss

In a three-phase circuit, line loss is an indicator of energy dissipated as heat due to the resistance of transmission lines. To address this, incorporating transformers into the system—a step-up transformer at the source and a step-down transformer at the load—is a strategic solution. Two three-phase transformers are introduced to improve this.
With a step-up transformer at the source, the voltage is increased, thereby reducing the current in the transmission lines since power loss in...
395
Major Losses in Pipes01:28

Major Losses in Pipes

When a fluid flows through a pipe, it experiences energy losses due to frictional resistance along the pipe walls, known as major losses. These energy losses result in a pressure drop, which varies based on the flow conditions — whether laminar or turbulent — and the specific physical properties of the fluid and pipe.
Fluid flow can be classified as laminar or turbulent, primarily based on the Reynolds number. This dimensionless number reflects the relative influence of inertial to viscous...
2.0K
Minor Losses in Pipes01:25

Minor Losses in Pipes

In pipe systems, minor losses refer to energy losses arising from components such as valves, bends, fittings, expansions, and other features that disrupt the steady flow of fluid. These disturbances cause energy dissipation through turbulence and resistance, which engineers quantify to manage system efficiency effectively.
Valves play a significant role in generating minor losses by obstructing or redirecting the fluid flow. When a valve is closed or partially closed, it restricts the flow...
2.0K
Energy Losses in Transformers01:21

Energy Losses in Transformers

In an ideal transformer, it is assumed that there are no energy losses, and, hence, all the power at the primary winding is transferred to the secondary winding. However, in reality,  the transformers always have some energy losses, and, hence, the output power obtained at the secondary winding is less than the input power at the primary winding due to energy losses.
There are four main reasons for energy losses in transformers.
The first cause can be  the high resistance of the...
1.4K
Adaptations that Reduce Water Loss01:57

Adaptations that Reduce Water Loss

Though evaporation from plant leaves drives transpiration, it also results in loss of water. Because water is critical for photosynthetic reactions and other cellular processes, evolutionary pressures on plants in different environments have driven the acquisition of adaptations that reduce water loss.
28.3K