Peripheral PD-1+CD56+ T-cell frequencies correlate with outcome in stage IV melanoma under PD-1 blockade

Jonas Bochem1, Henning Zelba1, Teresa Amaral1,2

  • 1Department of Dermatology, University Medical Center, Tübingen, Germany.

Plos One
|August 17, 2019
PubMed

Insights

A lower frequency of peripheral blood PD-1+CD56+ T-cells predicts better outcomes for metastatic melanoma patients receiving anti-PD-1 therapy, indicating a potential biomarker for treatment response.

Area of Science:

  • Immunology
  • Oncology
  • Biomarker Discovery

Background:

  • Immune checkpoint inhibitors, specifically anti-PD-1 antibodies, offer significant promise for treating metastatic melanoma.
  • However, a substantial proportion of patients do not respond to anti-PD-1 therapy, necessitating the identification of predictive biomarkers.

Purpose of the Study:

  • To identify peripheral blood T-cell biomarker candidates that predict treatment outcomes in stage IV melanoma patients receiving anti-PD-1 antibodies.
  • To investigate the association of these biomarkers with clinical response, progression-free survival (PFS), and overall survival (OS).

Main Methods:

  • Analysis of peripheral blood T-cell subsets in 75 stage IV melanoma patients treated with anti-PD-1 antibodies.
  • Univariate and multivariate statistical analyses were employed to assess associations between candidate biomarkers and clinical outcomes, controlling for confounders.

Main Results:

  • A lower than median frequency of peripheral PD-1+CD56+ T-cells was significantly associated with longer OS, PFS, and superior clinical benefit.
  • In multivariate analysis, the M-category and the frequency of PD-1+CD56+ T-cells were identified as independent predictors of clinical outcome.

Conclusions:

  • Pre-treatment frequency of peripheral blood PD-1+CD56+ T-cells is a potential predictive biomarker for anti-PD-1 therapy in stage IV melanoma.
  • Lower levels of these T-cells correlate with improved clinical response, PFS, and OS, guiding personalized treatment strategies.

Related Concept Videos

Frequency-Domain Interpretation of PD Control01:24

Frequency-Domain Interpretation of PD Control

Proportional-Derivative (PD) controllers are widely used in fan control systems to improve stability and performance. A fan control system can be effectively represented using a Bode plot to illustrate the impact of a PD controller through its transfer function. The Bode plot visually conveys how PD control modifies the fan's response across various frequencies, providing a frequency domain interpretation of the controller's behavior.
The proportional control gain, combined with the...
356
PD Controller: Design01:26

PD Controller: Design

In automotive engineering, car suspension systems often employ Proportional Derivative (PD) controllers to enhance performance. PD controllers are utilized to adjust the damping force in response to road conditions. A controller, acting as an amplifier with a constant gain, demonstrates proportional control, with output directly mirroring input.
Designing a continuous-data controller requires selecting and linking components like adders and integrators, which are fundamental in Proportional,...
630
Piaget's Stage 1 of Cognitive Development01:14

Piaget's Stage 1 of Cognitive Development

The sensorimotor stage, the initial phase of Jean Piaget's theory of cognitive development, spans the first two years of a child's life. During this period, infants actively engage with their surroundings, building cognitive awareness through direct interaction with the world. This interaction is primarily based on sensory perception and motor actions, allowing infants to gradually understand basic physical properties and predict how objects interact within their environment.
Exploration...
1.6K
Time-Domain Interpretation of PD Control01:07

Time-Domain Interpretation of PD Control

Proportional-Derivative (PD) control is a widely used control method in various engineering systems to enhance stability and performance. In a system with only proportional control, common issues include high maximum overshoot and oscillation, observed in both the error signal and its rate of change. This behavior can be divided into three distinct phases: initial overshoot, subsequent undershoot, and gradual stabilization.
Consider the example of control of motor torque. Initially, a positive...
381
SN1 Reaction: Stereochemistry02:15

SN1 Reaction: Stereochemistry

This lesson provides an in-depth discussion of the stereochemical outcomes in an SN1 reaction.
In the first step of an SN1 reaction, the bond between the electrophilic carbon and the leaving group ionizes to generate the carbocation intermediate. The second step of the mechanism is the nucleophilic attack.
In the formed carbocation, the positively charged carbon is sp2 hybridized with a trigonal planar geometry. As all the three substituents lie on the same plane, a plane of symmetry for the...
10.2K
SN1 Reaction: Kinetics02:05

SN1 Reaction: Kinetics

In an SN2 reaction, the reaction rate depends on both the type of nucleophile and the substrate. A hindered tertiary alkyl halide is practically inert to the SN2 mechanism despite using a strong nucleophile.
However, Sir Christopher Ingold and Edward D. Hughes, who studied the kinetics of various nucleophilic substitution reactions, noticed that a tertiary alkyl halide does undergo a nucleophilic substitution reaction in the presence of a weak nucleophile. While studying the substitution...
9.5K