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1.

Ridaforolimus (MK-8669) synergizes with Dalotuzumab (MK-0646) in hormone-sensitive breast cancer

(Submitter supplied) Introduction: Mammalian target of rapamycin (mTOR) represents a key downstream intermediate for a myriad of oncogenic receptor tyrosine kinases. In the case of the insulin-like growth factor (IGF) pathway, the mTOR complex (mTORC1) mediates IGF-1 receptor (IGF-1R)-induced estrogen receptor alpha (ERα) phosphorylation/activation and leads to increased proliferation and growth in breast cancer cells. As a result, the prevalence of mTOR inhibitors combined with hormonal therapy has increased in recent years. Conversely, activated mTORC1 provides negative feedback regulation of IGF signaling via insulin receptor substrate (IRS)-1/2 serine phosphorylation and subsequent proteasomal degradation. Thus, the IGF pathway may provide escape (e.g. de novo or acquired resistance) from mTORC1 inhibitors. It is therefore plausible that combined inhibition of mTORC1 and IGF-1R for select subsets of ER-positive breast cancer patients presents as a viable therapeutic option. Methods: Using hormone-sensitive breast cancer cells stably transfected with the aromatase gene (MCF-7/AC-1), works presented herein describe the in vitro and in vivo antitumor efficacy of the following compounds: dalotuzumab (DALO; “MK-0646”; anti-IGF-1R antibody), ridaforolimus (RIDA; “MK-8669”; mTORC1 small molecule inhibitor) and letrozole (“LET”, aromatase inhibitor). Results: With the exception of MK-0646, all single agent and combination treatment arms effectively inhibited xenograft tumor growth, albeit to varying degrees. Correlative tissue analyses revealed MK-0646 alone and in combination with LET induced insulin receptor alpha A (InsR-A) isoform upregulation (both mRNA and protein expression), thereby further supporting a triple therapy approach. Conclusion: These data provide preclinical rationalization towards the combined triple therapy of LET plus MK-0646 plus MK-8669 as an efficacious anti-tumor strategy for ER-positive breast tumors.
Organism:
Homo sapiens
Type:
Expression profiling by high throughput sequencing
Platform:
GPL11154
46 Samples
Download data: TXT
2.

Illumina HiSeq 2000 (Homo sapiens)

Platform
Accession:
GPL11154
ID:
100011154
3.

US-1419312_MK0646+MK8669_R3

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095972
ID:
302095972
4.

US-1419278_MK0646+MK8669_R2

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095971
ID:
302095971
5.

US-1421579_MK0646+MK8669_R1

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095970
ID:
302095970
6.

US-1419318_MK8669_R3

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095969
ID:
302095969
7.

US-1419285_MK8669_R2

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095968
ID:
302095968
8.

US-1418854_MK8669_R1

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095967
ID:
302095967
9.

US-1419317_MK0646_R3

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095966
ID:
302095966
10.

US-1419253_MK0646_R2

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095965
ID:
302095965
11.

US-1419319_MK0646_R1

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095964
ID:
302095964
12.

US-1419309_LET+MK8669_R12

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095963
ID:
302095963
13.

US-1419284_LET+MK8669_R11

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095962
ID:
302095962
14.

US-1419271_LET+MK8669_R10

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095961
ID:
302095961
15.

US-1419267_LET+MK8669_R9

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095960
ID:
302095960
16.

US-1419251_LET+MK8669_R8

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095959
ID:
302095959
17.

US-1419241_LET+MK8669_R7

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095958
ID:
302095958
18.

US-1419236_LET+MK8669_R6

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095957
ID:
302095957
19.

US-1419226_LET+MK8669_R5

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095956
ID:
302095956
20.

US-1418923_LET+MK8669_R4

Organism:
Homo sapiens
Source name:
Xenograft tumor tissue
Platform:
GPL11154
Series:
GSE79492
Download data: TXT
Sample
Accession:
GSM2095955
ID:
302095955
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