Expression of Therapy-Induced Senescence Markers in Breast Cancer Samples Upon Incomplete Response to Neoadjuvant Chemotherapy

Author:

Saleh Tareq1,Al-Hesa Ahmad2,Al-Balas Mahmoud1,Abuelaish Omar3,Mansour Ahmad4,Awad Heyam2,El-Sadoni Mohammed2,Carpenter Valerie J5,Azab Bilal2

Affiliation:

1. Hashemite University, Zarqa, Jordan

2. The University of Jordan, Amman, Jordan

3. Royal Medical Services, Amman, Jordan

4. University of Cincinnati, Cincinnati, Ohio, United States

5. Virginia Commonwealth University, Richmond, Virginia, United States

Abstract

Senescence is a cell stress response induced by replicative, oxidative, oncogenic, and genotoxic stresses. Tumor cells undergo senescence in response to several cancer therapeutics in vitro (Therapy-Induced Senescence, TIS), including agents utilized as Neoadjuvant Chemotherapy (NAC) in the treatment of invasive breast cancer. TIS has been proposed to contribute to adverse therapy outcomes including relapse. However, there is limited evidence on the induction of senescence in response to NAC in clinical cancer and its contribution to disease outcomes. In this work, the expression of three senescence-associated markers (p21CIP1, H3K9Me3 and Lamin B1) was investigated in breast cancer samples that developed partial or incomplete pathological response to NAC (n=37).  Accordingly, 40.54 % of all samples showed marker expression consistent with a senescence-like phenotype, while the remainders were either negative or inconclusive for senescence (2.70 % and 56.8 %, respectively). Moreover, analysis of core needle biopsies revealed minimal changes in p21CIP1 and H3K9Me3, but significant changes in Lamin B1 expression levels following NAC, highlighting a more predictive role of Lamin B1 in senescence detection. However, our analysis did not establish an association between TIS and cancer relapse as only 3 patients (8.1 %) with a senescence-like profile developed short-term recurrent disease. Our analysis indicates that identification of TIS in tumor samples requires large-scale transcriptomic and protein marker analyses and extended clinical follow-up. Better understanding of in vivo senescence should elucidate its contribution to therapy outcomes and pave the way for the utilization of senolytic approaches as potential adjuvant cancer therapy.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry,Biophysics

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