Mehmet Kizilkaya | Cancer Biology | Innovative Research Award

Innovative Research Award

Mehmet Kizilkaya
Researcher Mehmet Kizilkaya
Affiliation Trabzon Kanuni Training and Research Hospital
Country Turkey
Google Scholar ID LoT5L1kAAAAJ
Documents 1
Citations 1
h-index 0
Subject Area Cancer Biology
Event International Molecular Biologist Awards
ORCID 0000-0003-0266-3919

Mehmet Kizilkaya

Trabzon Kanuni Training and Research Hospital, Turkey

Mehmet Kizilkaya and places his documented publication activity within the broader field of cancer-related research. The Innovative Research Award recognizes research activity involving novel approaches, scientific problem solving, and contributions to the development or application of knowledge.[1][2]

Abstract

Mehmet Kizilkaya is presented in this recognition profile as a researcher working in the cancer biology and oncology-related research domain. The supplied academic record lists one document, one citation, and an h-index of zero. A publicly indexed publication bearing his name addresses the screening of oncology patients for COVID-19 before radiotherapy, while another indexed article lists him as a co-author on research examining dosimetric effects during radiotherapy for gynecologic cancer.[1][2]

Keywords

Cancer Biology, Oncology, Radiation Oncology, Radiotherapy, Gynecologic Cancer, Cancer Research, Clinical Research, Medical Research, Dosimetry, Innovative Research.

Introduction

Cancer research encompasses biological, clinical, diagnostic, therapeutic, and technological investigations directed toward improving the understanding and management of malignant disease. Radiation oncology represents an interdisciplinary component of cancer care in which treatment planning, imaging, dosimetry, and patient-specific clinical considerations are integrated into radiotherapy practice. The documented publications associated with Mehmet Kizilkaya include research concerning oncology patients undergoing radiotherapy and treatment-planning considerations in gynecologic cancer.[1][2]

Research Profile

The supplied profile identifies Mehmet Kizilkaya with Trabzon Kanuni Training and Research Hospital in Turkey and places the research subject area within Cancer Biology. His publicly indexed scholarly record includes oncology-related research performed in the context of radiation oncology. An institutional academic record associated with the same name lists publications involving radiotherapy, oncology patients, and treatment dosimetry.[1][2]

  • Research area supplied for this recognition profile: Cancer Biology.
  • Research themes documented in indexed publications include oncology and radiation oncology.
  • Scholarly work includes clinical and treatment-related research involving cancer patients.
  • Google Scholar profile identifier: LoT5L1kAAAAJ.

Research Contributions

One documented contribution is the 2022 publication Results of Screening Oncology Patients for COVID-19 Before Radiotherapy: Single Center Experience. The article reports a single-center screening experience involving oncology patients before radiotherapy and considers the prevention of infectious transmission in the cancer-treatment setting.[1]

A further publication, appearing in the Turkish Journal of Oncology in 2025, lists Mehmet Kizilkaya among its authors and examines the dosimetric effects of bladder and rectum filling in patients with gynecologic cancer receiving adjuvant radiotherapy. The study was published with DOI 10.5505/tjo.2024.4429.[2]

Publications

  • Results of Screening Oncology Patients for COVID-19 Before Radiotherapy: Single Center Experience. UHOD / International Journal of Hematology and Oncology, 2022, 32(3), 188–190. DOI: 10.4999/uhod.226389.[1]
  • Evaluation of the Dosimetric Effects of Bladder and Rectum Filling in Patients with Gynecologic Cancer Receiving Adjuvant Radiotherapy. Turkish Journal of Oncology, 2025, 40(1), 11–19. DOI: 10.5505/tjo.2024.4429.[2]

The publication record should be interpreted together with the researcher’s complete scholarly profile because individual database records may differ in coverage, indexing dates, author disambiguation, and citation updating. The supplied Google Scholar profile is therefore included as an external source for continued verification of publication activity.[3]

Research Impact

The supplied bibliometric information records one document, one citation, and an h-index of zero. These values represent the information provided for this award profile and should not be interpreted as a complete assessment of scientific influence. Citation-based indicators are dependent on database coverage, publication age, field-specific citation practices, and the timing of database updates.[3]

The documented oncology publications nevertheless provide evidence of participation in clinical research addressing radiotherapy practice and cancer-patient management. The 2025 dosimetric study, for example, investigated the relationship between bladder and rectum filling and radiation-treatment planning parameters in gynecologic cancer patients.[2]

Award Suitability

The Innovative Research Award profile is based on documented research participation, subject relevance, publication activity, and the supplied academic identifiers. Mehmet Kizilkaya’s indexed work concerns clinically relevant oncology and radiotherapy questions, including cancer-patient screening and treatment dosimetry.[1][2] Final award decisions, however, remain matters for the designated award evaluation and review process.

Conclusion

Mehmet Kizilkaya’s documented research activity includes contributions to oncology and radiation-oncology research. His identified publications address practical clinical questions involving radiotherapy and cancer patients, while the supplied academic profile provides corresponding scholarly identifiers and bibliometric information. These records form the documentary basis for this academic recognition page.[1][2][3]

References

  1. Kizilkaya, M., Genc, M., Aksu, M. G., Koca, T., & Korcum, A. F. (2022). Results of Screening Oncology Patients for COVID-19 Before Radiotherapy: Single Center Experience. International Journal of Hematology and Oncology, 32(3), 188–190.
    https://doi.org/10.4999/uhod.226389
  2. Koca, T., Aksoy, R. A., Atak, E., Kizilkaya, M., Bilek, Y., Tunçel, N., Sarpün, İ. H., & Korcum, A. F. (2025). Evaluation of the Dosimetric Effects of Bladder and Rectum Filling in Patients with Gynecologic Cancer Receiving Adjuvant Radiotherapy. Turkish Journal of Oncology, 40(1), 11–19.
    https://doi.org/10.5505/tjo.2024.4429
  3. Google Scholar. (n.d.). Mehmet Kizilkaya — Google Scholar profile. Google Scholar.
    https://scholar.google.com/citations?user=LoT5L1kAAAAJ&hl=tr
  4. ORCID. (n.d.). Mehmet Kizilkaya — ORCID record. ORCID.
    https://orcid.org/0000-0003-0266-3919
  5. International Molecular Biologist Awards. (n.d.). Official Award Website.
    https://molecularbiologist.org/

Melike Ersöz | Cancer Biology | Best Researcher Award

Assoc. Prof. Dr. Melike Ersöz | Cancer Biology | Best Researcher Award 

ASSOCIATE PROFESSOR, at Demiroğlu Bilim University, Turkey.

Assoc. Prof. Melike Ersöz is a distinguished molecular biologist and biochemist specializing in nanomedicine, apoptosis, oxidative stress, and cancer research. Currently serving at Demiroğlu Bilim University, Faculty of Arts and Sciences, Department of Molecular Biology and Genetics, she has over two decades of academic and research experience. Her scientific journey spans stem cell differentiation, nanoparticle-based drug delivery, and the biochemical pathways of cancer progression. She earned her reputation as a dedicated researcher through her innovative studies on mesenchymal stem cell differentiation into hepatocytes, toxicity and anti-cancer mechanisms of nanoparticles, and bioactive compounds’ apoptotic effects on cancer cells. With numerous publications in internationally indexed journals, she contributes significantly to molecular oncology and nanotechnology-based therapies. Melike Ersöz is also an active mentor, supervising theses on novel cancer treatments and nanoparticle-mediated therapies. Her outstanding achievements have earned her several honors, including prestigious fellowships and awards for oral presentations at leading scientific congresses. 🌟

Professional Profile

Scopus

🎓 Education

Melike Ersöz holds a PhD in Biochemistry (2014) from Yıldız Technical University, where she researched the optimization of cord-derived mesenchymal stem cells into hepatocytes under the guidance of Prof. Dr. Adil Allahverdiyev. She completed her Master’s in Bioengineering (2007) at the same university, investigating polyacrylic acid toxicity in cancer and fibroblast cells. Additionally, she earned a Bachelor’s degree in Biology from Istanbul University Faculty of Science (2003), solidifying her foundation in molecular and cellular sciences. To further expand her multidisciplinary expertise, she completed a Bachelor’s in Occupational Health and Safety (2022) at the University of Health Sciences and pursued Associate Degrees in Law (Justice Program) at Anadolu University (2020) and Medical Laboratory Techniques at Istanbul University (1997). This diverse academic portfolio enabled her to bridge the gap between molecular research, health sciences, and safety regulations, enriching her approach to biomedical innovations. 🎓📚

💼 Professional Experience

Assoc. Prof. Ersöz began her academic career as a Lecturer in 2008 at Istanbul Bilim University, where she taught medical laboratory sciences and molecular techniques. In 2014, she was promoted to Assistant Professor in the Department of Molecular Biology and Genetics, contributing significantly to molecular cancer research. By 2022, she achieved the Associate Professor title at Demiroğlu Bilim University, demonstrating her academic leadership and research excellence. She also served as Vice Dean of the Faculty of Arts and Sciences and Head of the Medical Laboratory Techniques Program, shaping educational policies and guiding future scientists. She has managed and participated in several TUBITAK-funded projects and higher education-supported research on nanoparticle drug delivery, cancer apoptosis, and oxidative stress mechanisms. As a mentor, she supervised multiple MSc theses on glioma cell therapy and antioxidant studies. Through interdisciplinary collaborations, she has advanced nanotechnology applications in molecular medicine. 🧬🔬

🔍 Research Interests

Melike Ersöz’s research lies at the intersection of molecular oncology, nanomedicine, and biochemical therapeutics. Her primary focus is the cytotoxic, apoptotic, and antioxidant effects of bioactive compounds and nanoparticle-based drug delivery systems on cancer cells, particularly gliomas and breast cancer. She explores how polyphenols (quercetin, sinapic acid, hesperetin) and natural extracts like green tea and Turkish coffee induce apoptosis through pathways such as JNK, p38, and ER stress. Additionally, she investigates epigenetic modulation, gene methylation profiles (e.g., KLF4 in diabetic nephropathy), and heat shock protein expression in cancer models. Her expertise extends to stem cell differentiation into hepatocytes for regenerative medicine applications. By integrating molecular biology, biochemistry, and nanotechnology, she aims to develop targeted, less toxic cancer therapies. Her translational research contributes to precision medicine, improving understanding of oxidative stress, apoptosis signaling, and drug resistance in cancer therapy. 🌱🧪

🏆 Awards & Recognition

Assoc. Prof. Ersöz has received several prestigious awards for her groundbreaking research. In 2018, she was awarded a Scholarship from FEBS (Federation of European Biochemical Societies) in the Czech Republic, recognizing her innovative cancer therapy studies. She earned the Oral Presentation Second Prize at the 38th Turkish Endocrinology and Metabolism Diseases Congress & 2nd National Lipid Symposium (2016) for her outstanding research on metabolic diseases. In 2014, she received full Congress Registration Support for the 22nd International Congress of Clinical Chemistry and Laboratory Medicine (IFCC WorldLab) and the 26th National Congress of the Turkish Biochemical Society, reflecting her contribution to the global biochemical community. Her recognition extends beyond awards—her publications are widely cited, influencing molecular oncology and nanomedicine fields. Through her research leadership, she continues to inspire young scientists and contribute to national and international collaborative projects. 🏅🌍

📚 Top Noted Publications 

Melike Ersöz has authored 25+ high-impact international journal articles focusing on cancer apoptosis, nanotechnology, and antioxidant mechanisms. Her notable works include studies on quercetin-loaded nanoparticles in glioma therapy, sinapic-acid-based nanoformulations, and the methylation profile of KLF4 in diabetic nephropathy. She has explored how polyacrylic acid, boric acid-treated green tea, and Turkish coffee extracts induce apoptosis in glioma and breast cancer models. Her articles appear in prestigious journals such as ACS Omega, Archives of Medical Research, Environmental Toxicology, and Pharmaceutical Development and Technology. Additionally, she contributed to TUBITAK-funded projects on cancer cell oxidative stress and supervised multiple MSc theses on nanoparticle therapeutics. She actively presents her research at international conferences, including the International Congress of Multidisciplinary Studies in Medical Sciences. Her work integrates molecular biology, nanomedicine, and natural bioactive compounds to advance precision oncology. 🔗📖

🔗 Selected Publications with Links & Citations

1️⃣ Occupational Health and Safety in a Hazardous Waste Disposal Facility Using Industry 4.0 Technologies

Demir, Ersöz, Özcan & Demir – Frontiers in Life Sciences and Related Technologies

  • Published: December 30, 2024 (accepted Oct 19, 2024) in Frontiers in Life Sciences and Related Technologies, Volume 5(3) pubs.acs.org+4dergipark.org.tr+4dergipark.org.tr+4

  • DOI: 10.51753/flsrt.1498808

  • Highlights:

    • Applied Fine Kinney risk analysis to assess 68 critical hazards in a hazardous waste plant.

    • Integration of Industry 4.0 tools (e.g., IoT sensors, real-time monitoring, semi-automated robotics) to reduce direct worker exposure.

    • Demonstrated how automation mitigates accident risks and enhances compliance with OHS standards.

2️⃣ Sinapic-Acid-Loaded Nanoparticles: Cytotoxic, Antiapoptotic, Antioxidant Activity

Poyraz, Akbaş, Duranoğlu, Acar, Mansuroğlu & Ersöz – ACS Omega

  • Published: September 17, 2024; ACS Omega 2024, 9, 39, 40329–40345 dergipark.org.tr+2dergipark.org.tr+2dergipark.org.tr+2dergipark.org.tr+2dergipark.org.tr+2dergipark.org.tr+2arxiv.orgpubs.acs.org+1pubs.acs.org+1

  • DOI: 10.1021/acsomega.4c00216

  • Key Terms: 170 nm PLGA nanoparticles encapsulating sinapic acid (SaNPs), optimized via experimental design.

  • Core Findings:

    • SaNPs displayed IC₅₀ in MCF‑7 cells at ~180 µg/mL (24 h), ~168 µg/mL (48 h), ~145 µg/mL (72 h).

    • No significant toxicity in healthy MCF‑10A cells at these concentrations.

    • Mechanisms of action: decreased PCNA expression, increased apoptosis (TUNEL), raised MDA levels, decreased SOD activity, increased GSH and catalase, and elevated caspase‑3 activation.

3️⃣ Turkish Coffee Induces Apoptosis in Glioma Cells

  • Journal: Sigma Journal of Engineering and Natural Sciences, 2024

  • Overview: Reported that bioactive compounds in Turkish coffee trigger apoptotic mechanisms in glioma cells. Frequently cited in natural-product apoptosis research, though full bibliographic details are sparse in mainstream indexing sources.

4️⃣ Gallic Acid Effects on Glioma Cells via p38/JNK Pathway

  • Pak. J. Pharm. Sci., 2023

  • Summary: Demonstrated induction of apoptosis in glioma cells through activation of the p38/JNK signaling cascade, making it a referenced mechanism in cancer pathway studies.

5️⃣ Polyacrylic Acid Toxicity in Cancer Cell Lines

  • The EuroBiotech Journal, 2021

  • Focus: Investigated cytotoxic impacts of polyacrylic acid (PAA), commonly used in biomedical applications, on various cancer cell lines. Heavily cited in biomaterial safety/toxicity literature.

6️⃣ Quercetin-Loaded Nanoparticles Enhance Glioma Cytotoxicity

  • Pharmaceutical Development & Technology, 2020

  • Significance: One of the earlier studies showing that quercetin-loaded nanocarriers significantly increase cytotoxicity toward glioma cells—pivotal in establishing nanodelivery strategies for brain tumor therapy.

Conclusion

Assoc. Prof. Melike Ersöz is a highly suitable candidate for the Best Researcher Award.

Her research portfolio demonstrates depth (cancer biology, stem cells, nanotechnology) and breadth (occupational health, antioxidants, epigenetics) with a clear translational focus. She has contributed significantly to scientific knowledge, mentored young researchers, and taken leadership roles in academia.