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Novel combinatorial autophagy inhibition therapy for triple negative breast cancers

自噬 三阴性乳腺癌 癌症研究 紫杉醇 乳腺癌 细胞生长 生物 癌症 医学 内科学 细胞凋亡 遗传学 生物化学
作者
Yomna S. Abd El-Aziz,Taymin du Toit‐Thompson,Matthew J. McKay,Mark P. Molloy,Shihani Stoner,Betty McDowell,Elizabeth Moon,Loretta Sioson,Amy Sheen,Angela Chou,Anthony J. Gill,Patric J. Jansson,Sumit Sahni
出处
期刊:European Journal of Pharmacology [Elsevier BV]
卷期号:973: 176568-176568
标识
DOI:10.1016/j.ejphar.2024.176568
摘要

Triple negative breast cancer (TNBC) has the worst prognosis among breast cancer subtypes. It is characterized by lack of estrogen, progesterone and human epidermal growth factor 2 receptors, and thus, have limited therapeutic options. Autophagy has been found to be correlated with poor prognosis and aggressive behaviour in TNBC. This study aimed to target autophagy in TNBC via a novel approach to inhibit TNBC progression. Immunoblotting and confocal microscopy were carried out to examine the effect of tumor microenvironmental stressors on autophagy. Cellular proliferation and migration assays were used to test the effect of different autophagy inhibitors and standard chemotherapy alone or in combination. In vivo xenograft mouse model was utilized to assess the effect of autophagy inhibitors alone or in combination with Paclitaxel. High resolution mass spectrometry based proteomic analysis was performed to explore the mechanisms behind chemoresistance in TNBC. Lastly, immunohistochemistry was done to assess the correlation between autophagic related proteins and clinical characteristics in TNBC tissue specimens. Metabolic stressors were found to induce autophagy in TNBC cell lines. Autophagy initiation inhibitors, SAR405 and MRT68921, showed marked synergy in their anti-proliferative activity in both chemosensitive and chemoresistant TNBC cell models. Paradoxically, positive expression of autophagosome marker LC3 was shown to be associated with better overall survival of TNBC patients. In this study, a novel combination between different autophagy inhibitors was identified which inhibited tumor cell proliferation in both chemosensitive and chemoresistant TNBC cells and could result in development of novel treatment modality against TNBC.

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