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The polyamine inhibitor SAM486A increases the efficacy of adagrasib in non-small cell lung cancer cells harboring KRASG12C mutation
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Abstract
Background
Non-small cell lung cancer (NSCLC) accounts for most lung cancer cases and poses major challenges due to late-stage diagnosis and limited options. A substantial subset of NSCLC harbors KRAS mutations, most commonly at codon 12. Although KRAS
G12C
inhibitors show clinical activity, their efficacy is frequently limited by acquired resistance. Polyamines (putrescine, spermidine, and spermine) regulate key cellular processes and are dysregulated during tumorigenesis. S-adenosylmethionine decarboxylase 1 (AMD1) inhibitors such as SAM486A reduce tumor cell proliferation and migration. Thus, we evaluated the combination of the KRAS
G12C
inhibitor adagrasib with SAM486A in KRAS
G12C
-mutant NSCLC, in vitro and in vivo.
Methods
In vitro assays included viability (MTT), clonogenic, BrdU incorporation, and Western blot analyses across four NSCLC cell lines. Drug–drug interactions were quantified using Combenefit software. In vivo efficacy was tested in C57BL/6 mice using an orthotopic model with LLC46 (KRAS
G12C
/NRAS
KO
) cells and a metastatic model with LL2 (KRAS
G12C
/NRAS
Q61H
) cells. Tumor growth was monitored by µCT or caliper measurements, and immunohistochemistry (PCNA) was used to assess proliferation.
Results
In vitro, adagrasib reduced AMD1 levels, and SAM486A synergistically enhanced its antiproliferative effects, particularly in KRAS
G12C
-mutant cell lines, with minimal effects on KRAS–wild-type cells. In an orthotopic mouse model using a KRAS
G12C
/NRAS
KO
NSCLC line, the combination provided minimal additional benefit over adagrasib monotherapy. In a metastatic model, however, the combination reduced tumor size and PCNA staining more than either monotherapy.
Conclusions
Our results suggest that targeting polyamine metabolism with SAM486A enhances the efficacy of KRAS
G12C
inhibitors and may mitigate resistance. This combination represents a promising therapeutic approach for KRAS
G12C
-mutant NSCLC and warrants further clinical investigation.
Title: The polyamine inhibitor SAM486A increases the efficacy of adagrasib in non-small cell lung cancer cells harboring KRASG12C mutation
Description:
Abstract
Background
Non-small cell lung cancer (NSCLC) accounts for most lung cancer cases and poses major challenges due to late-stage diagnosis and limited options.
A substantial subset of NSCLC harbors KRAS mutations, most commonly at codon 12.
Although KRAS
G12C
inhibitors show clinical activity, their efficacy is frequently limited by acquired resistance.
Polyamines (putrescine, spermidine, and spermine) regulate key cellular processes and are dysregulated during tumorigenesis.
S-adenosylmethionine decarboxylase 1 (AMD1) inhibitors such as SAM486A reduce tumor cell proliferation and migration.
Thus, we evaluated the combination of the KRAS
G12C
inhibitor adagrasib with SAM486A in KRAS
G12C
-mutant NSCLC, in vitro and in vivo.
Methods
In vitro assays included viability (MTT), clonogenic, BrdU incorporation, and Western blot analyses across four NSCLC cell lines.
Drug–drug interactions were quantified using Combenefit software.
In vivo efficacy was tested in C57BL/6 mice using an orthotopic model with LLC46 (KRAS
G12C
/NRAS
KO
) cells and a metastatic model with LL2 (KRAS
G12C
/NRAS
Q61H
) cells.
Tumor growth was monitored by µCT or caliper measurements, and immunohistochemistry (PCNA) was used to assess proliferation.
Results
In vitro, adagrasib reduced AMD1 levels, and SAM486A synergistically enhanced its antiproliferative effects, particularly in KRAS
G12C
-mutant cell lines, with minimal effects on KRAS–wild-type cells.
In an orthotopic mouse model using a KRAS
G12C
/NRAS
KO
NSCLC line, the combination provided minimal additional benefit over adagrasib monotherapy.
In a metastatic model, however, the combination reduced tumor size and PCNA staining more than either monotherapy.
Conclusions
Our results suggest that targeting polyamine metabolism with SAM486A enhances the efficacy of KRAS
G12C
inhibitors and may mitigate resistance.
This combination represents a promising therapeutic approach for KRAS
G12C
-mutant NSCLC and warrants further clinical investigation.
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