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Rezultati - "Novel mechanisms"
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"Novel mechanisms"
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Figure 3 from Impact of Duration of Neoadjuvant Aromatase Inhibitors on Molecular Expression Profiles in Estrogen Receptor–positive Breast Cancers
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Milana A. Bergamino (15038015)
Izdano 2025
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Figure 4 from Impact of Duration of Neoadjuvant Aromatase Inhibitors on Molecular Expression Profiles in Estrogen Receptor–positive Breast Cancers
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Milana A. Bergamino (15038015)
Izdano 2025
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Figure 2 from Impact of Duration of Neoadjuvant Aromatase Inhibitors on Molecular Expression Profiles in Estrogen Receptor–positive Breast Cancers
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Milana A. Bergamino (15038015)
Izdano 2025
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Figure 5 from Impact of Duration of Neoadjuvant Aromatase Inhibitors on Molecular Expression Profiles in Estrogen Receptor–positive Breast Cancers
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Milana A. Bergamino (15038015)
Izdano 2025
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Figure 1 from Impact of Duration of Neoadjuvant Aromatase Inhibitors on Molecular Expression Profiles in Estrogen Receptor–positive Breast Cancers
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Milana A. Bergamino (15038015)
Izdano 2025
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Figure 6 from Impact of Duration of Neoadjuvant Aromatase Inhibitors on Molecular Expression Profiles in Estrogen Receptor–positive Breast Cancers
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Milana A. Bergamino (15038015)
Izdano 2025
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Figure S4 from Quiescent Ovarian Cancer Cells Secrete Follistatin to Induce Chemotherapy Resistance in Surrounding Cells in Response to Chemotherapy
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Alexander J. Cole (14971167)
Izdano 2025
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Figure S3 from Quiescent Ovarian Cancer Cells Secrete Follistatin to Induce Chemotherapy Resistance in Surrounding Cells in Response to Chemotherapy
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Alexander J. Cole (14971167)
Izdano 2025
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Figure S1 from Quiescent Ovarian Cancer Cells Secrete Follistatin to Induce Chemotherapy Resistance in Surrounding Cells in Response to Chemotherapy
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Alexander J. Cole (14971167)
Izdano 2025
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Figure S2 from Quiescent Ovarian Cancer Cells Secrete Follistatin to Induce Chemotherapy Resistance in Surrounding Cells in Response to Chemotherapy
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Alexander J. Cole (14971167)
Izdano 2025
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Figure S5 from Quiescent Ovarian Cancer Cells Secrete Follistatin to Induce Chemotherapy Resistance in Surrounding Cells in Response to Chemotherapy
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Alexander J. Cole (14971167)
Izdano 2025
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12
Supplementary Table S1 from Ablation of p57<sup>+</sup> Quiescent Cancer Stem Cells Suppresses Recurrence after Chemotherapy of Intestinal Tumors
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Takeru Oka (15386810)
Izdano 2025
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Source Data from Ablation of p57<sup>+</sup> Quiescent Cancer Stem Cells Suppresses Recurrence after Chemotherapy of Intestinal Tumors
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Takeru Oka (15386810)
Izdano 2025
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Supplementary File 2 from Bayesian Machine Learning Enables Identification of Transcriptional Network Disruptions Associated with Drug-Resistant Prostate Cancer
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Charles Blatti (15292859)
Izdano 2025
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Supplementary File 3 from Bayesian Machine Learning Enables Identification of Transcriptional Network Disruptions Associated with Drug-Resistant Prostate Cancer
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Charles Blatti (15292859)
Izdano 2025
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Supplementary File 4 from Bayesian Machine Learning Enables Identification of Transcriptional Network Disruptions Associated with Drug-Resistant Prostate Cancer
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Charles Blatti (15292859)
Izdano 2025
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