Development of a screen to identify selective small molecules active against patient-derived metastatic and chemoresistant breast cancer cells.

Breast cancer research : BCR 2013 Vol.15(4) p. R58

Gligorich KM, Vaden RM, Shelton DN, Wang G, Matsen CB, Looper RE, Sigman MS, Welm BE

관련 도메인

Abstract

[INTRODUCTION] High failure rates of new investigational drugs have impaired the development of breast cancer therapies. One challenge is that excellent activity in preclinical models, such as established cancer cell lines, does not always translate into improved clinical outcomes for patients. New preclinical models, which better replicate clinically-relevant attributes of cancer, such as chemoresistance, metastasis and cellular heterogeneity, may identify novel anti-cancer mechanisms and increase the success of drug development.

[METHODS] Metastatic breast cancer cells were obtained from pleural effusions of consented patients whose disease had progressed. Normal primary human breast cells were collected from a reduction mammoplasty and immortalized with human telomerase. The patient-derived cells were characterized to determine their cellular heterogeneity and proliferation rate by flow cytometry, while dose response curves were performed for chemotherapies to assess resistance. A screen was developed to measure the differential activity of small molecules on the growth and survival of patient-derived normal breast and metastatic, chemoresistant tumor cells to identify selective anti-cancer compounds. Several hits were identified and validated in dose response assays. One compound, C-6, was further characterized for its effect on cell cycle and cell death in cancer cells.

[RESULTS] Patient-derived cells were found to be more heterogeneous, with reduced proliferation rates and enhanced resistance to chemotherapy compared to established cell lines. A screen was subsequently developed that utilized both tumor and normal patient-derived cells. Several compounds were identified, which selectively targeted tumor cells, but not normal cells. Compound C-6 was found to inhibit proliferation and induce cell death in tumor cells via a caspase-independent mechanism.

[CONCLUSIONS] Short-term culture of patient-derived cells retained more clinically relevant features of breast cancer compared to established cell lines. The low proliferation rate and chemoresistance make patient-derived cells an excellent tool in preclinical drug development.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
해부 breast 유방 dict 6
시술 reduction mammoplasty 유방성형술 dict 1
해부 breast cancer cells scispacy 1
해부 cancer cell lines scispacy 1
해부 cellular scispacy 1
해부 patient-derived cells scispacy 1
해부 tumor cells scispacy 1
해부 cell scispacy 1
해부 cancer cells scispacy 1
해부 cell lines scispacy 1
해부 cells scispacy 1
합병증 pleural effusions scispacy 1
약물 [INTRODUCTION] High failure rates scispacy 1
약물 C-6 scispacy 1
약물 [CONCLUSIONS] Short-term scispacy 1
질환 chemoresistant breast cancer scispacy 1
질환 breast cancer C0006142
Malignant neoplasm of breast
scispacy 1
질환 cancer C0006826
Malignant Neoplasms
scispacy 1
질환 pleural effusions C0032227
Pleural effusion disorder
scispacy 1
질환 tumor C0027651
Neoplasms
scispacy 1
질환 death C0011065
Cessation of life
scispacy 1
질환 anti-cancer scispacy 1
질환 disease scispacy 1
기타 patients scispacy 1
기타 human breast cells scispacy 1
기타 human telomerase scispacy 1

MeSH Terms

Animals; Breast Neoplasms; Caspases; Cell Death; Cell Line, Tumor; Cell Proliferation; Disease Models, Animal; Drug Evaluation, Preclinical; Drug Resistance, Neoplasm; Drug Screening Assays, Antitumor; Female; Humans; Immunophenotyping; Neoplasm Metastasis; Phenotype; Poly(ADP-ribose) Polymerases; Small Molecule Libraries; Tumor Cells, Cultured; Xenograft Model Antitumor Assays

🔗 함께 등장하는 도메인

이 논문이 속한 카테고리와 같은 논문에서 자주 함께 다뤄지는 카테고리들

관련 논문