Research Article

A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells

Volume: 5 Number: 2 August 31, 2022
EN

A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells

Abstract

Breast cancer is one of the most important global health problems affecting both developed and developing countries. The identification of anticancer compounds, effective on breast cancer cells, is of key importance in chemoprevention investigations and drug development studies. In the literature, there are numerous compounds that have been analyzed for their cytotoxic effects on breast cancer cells, but there is no database where the researchers who want to design a new study on breast cancer can find these compounds all at once. This paper presents a relational database that stores the data of natural and synthetic compounds cytotoxically active on breast cancer cells. The database contains 381 cytotoxicity results and data of 159 compounds, compiled from selected 80 studies. When all this data in our database was queried, it was found out that quercetin, which is a dietary flavonoid, is the most analyzed compound, and MCF-7 cell line is the most used breast cancer cell line.

Keywords

References

  1. [1] WHO, “Newsroom Cancer,” 2022. [Online]. Available: https://www.who.int/news-room/fact-sheets/detail/cancer. [Accessed: 24-June-2022].
  2. [2] H. Sung, J. Ferlay, R. L. Siegel, M. Laversanne, I. Soerjomataram, A. Jemal, and F. Bray, “Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries,” CA: A Cancer Journal for Clinicians, vol. 71, no. 3, pp. 209-249, 202.
  3. [3] E. F. Codd, “A Relational Model of Data for Large Shared Data Banks,” Communications of the ACM, vol. 13, no. 6, pp. 377-387, 1970

Details

Primary Language

English

Subjects

Computer Software , Software Engineering (Other)

Journal Section

Research Article

Publication Date

August 31, 2022

Submission Date

August 2, 2022

Acceptance Date

August 5, 2022

Published in Issue

Year 1970 Volume: 5 Number: 2

APA
Oktay, Z., Erol, Ç., & Arda, N. (2022). A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells. Sakarya University Journal of Computer and Information Sciences, 5(2), 225-232. https://doi.org/10.35377/saucis...1153071
AMA
1.Oktay Z, Erol Ç, Arda N. A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells. SAUCIS. 2022;5(2):225-232. doi:10.35377/saucis.1153071
Chicago
Oktay, Zeynep, Çiğdem Erol, and Nazlı Arda. 2022. “A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells”. Sakarya University Journal of Computer and Information Sciences 5 (2): 225-32. https://doi.org/10.35377/saucis. 1153071.
EndNote
Oktay Z, Erol Ç, Arda N (August 1, 2022) A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells. Sakarya University Journal of Computer and Information Sciences 5 2 225–232.
IEEE
[1]Z. Oktay, Ç. Erol, and N. Arda, “A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells”, SAUCIS, vol. 5, no. 2, pp. 225–232, Aug. 2022, doi: 10.35377/saucis...1153071.
ISNAD
Oktay, Zeynep - Erol, Çiğdem - Arda, Nazlı. “A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells”. Sakarya University Journal of Computer and Information Sciences 5/2 (August 1, 2022): 225-232. https://doi.org/10.35377/saucis. 1153071.
JAMA
1.Oktay Z, Erol Ç, Arda N. A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells. SAUCIS. 2022;5:225–232.
MLA
Oktay, Zeynep, et al. “A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells”. Sakarya University Journal of Computer and Information Sciences, vol. 5, no. 2, Aug. 2022, pp. 225-32, doi:10.35377/saucis. 1153071.
Vancouver
1.Zeynep Oktay, Çiğdem Erol, Nazlı Arda. A Relational Database Design for The Compounds Cytotoxically Active on Breast Cancer Cells. SAUCIS. 2022 Aug. 1;5(2):225-32. doi:10.35377/saucis. 1153071

 

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