Samantha Nichols
Overview
Explore the profile of Samantha Nichols including associated specialties, affiliations and a list of published articles.
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12
Citations
302
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Recent Articles
1.
Takahashi N, Pongor L, Agrawal S, Shtumpf M, Gurjar A, Rajapakse V, et al.
Genome Med
. 2025 Feb;
17(1):15.
PMID: 40001151
Background: Profiling circulating cell-free DNA (cfDNA) has become a fundamental practice in cancer medicine, but the effectiveness of cfDNA at elucidating tumor-derived molecular features has not been systematically compared to...
2.
Desai P, Takahashi N, Kumar R, Nichols S, Malin J, Hunt A, et al.
Cell Rep Med
. 2024 Jun;
5(6):101610.
PMID: 38897168
Small-cell lung cancer (SCLC) is the most fatal form of lung cancer. Intratumoral heterogeneity, marked by neuroendocrine (NE) and non-neuroendocrine (non-NE) cell states, defines SCLC, but the cell-extrinsic drivers of...
3.
Takahashi N, Pongor L, Agrawal S, Shtumpf M, Rajapakse V, Shafiei A, et al.
bioRxiv
. 2024 Jun;
PMID: 38895436
Background: Profiling circulating cell-free DNA (cfDNA) has become a fundamental practice in cancer medicine, but the effectiveness of cfDNA at elucidating tumor-derived molecular features has not been systematically compared to...
4.
Takahashi N, Hao Z, Villaruz L, Zhang J, Ruiz J, Petty W, et al.
JAMA Oncol
. 2023 Oct;
9(12):1669-1677.
PMID: 37824137
Importance: Patients with relapsed small cell lung cancer (SCLC), a high replication stress tumor, have poor prognoses and few therapeutic options. A phase 2 study showed antitumor activity with the...
5.
Abel M, Takahashi N, Peer C, Redon C, Nichols S, Vilimas R, et al.
Clin Cancer Res
. 2023 May;
29(18):3603-3611.
PMID: 37227187
Purpose: Despite promising preclinical studies, toxicities have precluded combinations of chemotherapy and DNA damage response (DDR) inhibitors. We hypothesized that tumor-targeted chemotherapy delivery might enable clinical translation of such combinations....
6.
Pongor L, Schultz C, Rinaldi L, Wangsa D, Redon C, Takahashi N, et al.
Cancer Discov
. 2023 Jan;
13(4):928-949.
PMID: 36715552
Significance: MYC drives SCLC progression, but the genetic basis of MYC-driven SCLC evolution is unknown. Using SCLC as a paradigm, we report how ecDNA amplifications function as MYC-amplifying units, fostering...
7.
Thomas A, Fontaine S, Diolaiti M, Desai P, Kumar R, Takahashi N, et al.
Mol Cancer Ther
. 2022 Aug;
21(11):1722-1728.
PMID: 35999657
Alterations in the ATM gene are among the most common somatic and hereditary cancer mutations, and ATM-deficient tumors are hypersensitive to DNA-damaging agents. A synthetic lethal combination of DNA-damaging agents...
8.
Lissa D, Takahashi N, Desai P, Manukyan I, Schultz C, Rajapakse V, et al.
Nat Commun
. 2022 Apr;
13(1):2023.
PMID: 35440132
Molecular subtypes of small cell lung cancer (SCLC) defined by the expression of key transcription regulators have recently been proposed in cell lines and limited number of primary tumors. The...
9.
Thomas A, Takahashi N, Rajapakse V, Zhang X, Sun Y, Ceribelli M, et al.
Cancer Cell
. 2021 Apr;
39(4):566-579.e7.
PMID: 33848478
Small cell neuroendocrine cancers (SCNCs) are recalcitrant cancers arising from diverse primary sites that lack effective treatments. Using chemical genetic screens, we identified inhibition of ataxia telangiectasia and rad3 related...
10.
Tlemsani C, Takahashi N, Pongor L, Rajapakse V, Tyagi M, Wen X, et al.
Sci Transl Med
. 2021 Jan;
13(578).
PMID: 33504652
Because tobacco is a potent carcinogen, secondary causes of lung cancer are often diminished in perceived importance. To assess the extent of inherited susceptibility to small cell lung cancer (SCLC),...