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Updated: May 2, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Targeting N-cadherin increases vascular permeability and differentially activates AKT in melanoma
Ryan S Turley1, Yoshihiro Tokuhisa, Hiroaki Toshimitsu
1Departments of *Surgery †Radiation Oncology and Biomedical Engineering, Duke University, Durham, NC; and ‡Departments of Melanoma Medical Oncology and Systems Biology, University of Texas M.D. Anderson Cancer Center, Houston, TX.
Objective:
We investigate the mechanism through which N-cadherin disruption alters the effectiveness of regional chemotherapy for locally advanced melanoma.
Background:
N-cadherin antagonism during regional chemotherapy has demonstrated variable treatment effects.
Methods:
Isolated limb infusion (ILI) with melphalan (LPAM) or temozolomide (TMZ) was performed on rats bearing melanoma xenografts after systemic administration of the N-cadherin antagonist, ADH-1, or saline. Permeability studies were performed using Evans blue dye as the infusate, and interstitial fluid pressure was measured. Immunohistochemistry of LPAM-DNA adducts and damage was performed as surrogates for LPAM and TMZ delivery. Tumor signaling was studied by Western blotting and reverse-phase protein array analysis.
Results:
Systemic ADH-1 was associated with increased growth and activation of the PI3K (phosphatidylinositol-3 kinase)-AKT pathway in A375 but not DM443 xenografts. ADH-1 in combination with LPAM ILI improved antitumor responses compared with LPAM alone in both cell lines. Combination of ADH-1 with TMZ ILI did not improve tumor response in A375 tumors. ADH-1 increased vascular permeability without effecting tumor interstitial fluid pressure, leading to increased delivery of LPAM but not TMZ.
Conclusions:
ADH-1 improved responses to regional LPAM but had variable effects on tumors regionally treated with TMZ. N-cadherin-targeting agents may lead to differential effects on the AKT signaling axis that can augment growth of some tumors. The vascular targeting actions of N-cadherin antagonism may not augment some regionally delivered alkylating agents, leading to a net increase in tumor size with this type of combination treatment strategy.
Insights
N-cadherin antagonist ADH-1 improved regional melphalan chemotherapy for melanoma by increasing drug delivery. However, it had variable effects with temozolomide and may promote tumor growth via the PI3K-AKT pathway.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- N-cadherin antagonism shows variable efficacy in regional chemotherapy for melanoma.
- Understanding the precise mechanisms is crucial for optimizing treatment strategies.
Purpose of the Study:
- To investigate how N-cadherin disruption affects regional chemotherapy efficacy in locally advanced melanoma.
- To elucidate the underlying molecular and vascular mechanisms.
Main Methods:
- Rats with melanoma xenografts underwent isolated limb infusion (ILI) with melphalan (LPAM) or temozolomide (TMZ) after systemic ADH-1 administration.
- Vascular permeability, interstitial fluid pressure, drug delivery (LPAM-DNA adducts), and tumor signaling (PI3K-AKT pathway) were assessed.
Main Results:
- Systemic ADH-1 increased PI3K-AKT pathway activation in A375 xenografts.
- ADH-1 combined with LPAM ILI enhanced antitumor response compared to LPAM alone.
- ADH-1 increased vascular permeability, improving LPAM delivery but not TMZ delivery, with no change in interstitial fluid pressure.
Conclusions:
- ADH-1 enhances regional LPAM chemotherapy for melanoma by increasing drug delivery via vascular permeability.
- The effects of ADH-1 on TMZ chemotherapy are variable and may be influenced by tumor-specific signaling pathways like PI3K-AKT.
- N-cadherin antagonism can have differential impacts on chemotherapy efficacy, potentially promoting growth in some contexts.
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