Ketan Ruparelia | Cancer Research | Research Excellence Award

Research Excellence Award

Ketan Ruparelia — De Montfort University, United Kingdom

Ketan Ruparelia
Affiliation De Montfort University
Country United Kingdom
Scopus ID 6506888701
Documents 39
Citations 1,939
h-index 20
Subject Area Cancer Research
Event International Top Pharmaceutical Awards
ORCID 0000-0002-4091-2878

Ketan Ruparelia is a researcher affiliated with De Montfort University in Leicester, United Kingdom. His documented research works include studies spanning pharmaceutical and cancer-related research, including drug-delivery systems, anticancer compounds, phytochemical analysis, and medicinal chemistry. The available research record provides evidence of publications involving chemotherapy-related nanocarriers, synthetic resveratrol analogues, plant secondary metabolism, and flavone-based enzyme inhibition. These works provide a scholarly basis for considering his profile within pharmaceutical research and cancer-focused scientific activity. [1]

Abstract

Ketan Ruparelia’s documented research profile is associated with pharmaceutical and biomedical research, with particular relevance to cancer research, drug delivery, phytochemical investigation, and anticancer compound development. The available ORCID record lists five research works and identifies De Montfort University as his employment affiliation. [1]

Keywords

Ketan Ruparelia, pharmaceutical research, cancer research, drug delivery, nanomedicine, siRNA delivery, multidrug-resistant cancer, chemotherapy, mesoporous silica nanoparticles, anticancer compounds, resveratrol analogues, medicinal chemistry, phytochemical analysis, plant secondary metabolism, flavones, tyrosinase inhibitors, pharmaceutical biotechnology, International Top Pharmaceutical Awards.

Introduction

Pharmaceutical research increasingly combines medicinal chemistry, drug-delivery engineering, molecular biology, and natural-product investigation to address complex therapeutic challenges. Ruparelia’s documented works intersect several of these areas, particularly through research involving anticancer compounds and pharmaceutical delivery technologies. [1][3]

Research Profile

The ORCID record identifies Ketan Ruparelia and associates the profile with De Montfort University in Leicester, Leicestershire, United Kingdom. The employment entry specifies the position of Senior Technician in Health & Life Sciences, while the record also lists five works with Crossref-linked publication information. The supplied bibliometric profile reports 39 documents, 1,939 citations, and an h-index of 20, with Cancer Research identified as the principal subject area. [1]

Research Contributions

A central contribution documented in the available record concerns pharmaceutical nanotechnology and targeted nucleic-acid delivery. The 2025 European Journal of Pharmaceutics and Biopharmaceutics article examines electrosprayed core-shell polyethyleneimine and phospholipid-coated mesoporous silica nanoparticles for co-delivery of KAZ3 and MDR-1 siRNA. [1]

Publications

Ketan Ruparelia’s publications span pharmaceutical nanotechnology, cancer research, medicinal chemistry, and phytochemical analysis. His 2025 article on electrosprayed core-shell nanoparticles investigated KAZ3 and MDR-1 siRNA co-delivery for chemotherapy in multidrug-resistant colon cancer. [1] His other works examine synthetic resveratrol analogues, indanone-based chalcone analogues, plant secondary metabolism, and flavone tyrosinase inhibition. [2]

Research Impact

The reported bibliometric profile indicates 39 documents, 1,939 citations, and an h-index of 20. These figures provide quantitative indicators of scholarly visibility within the supplied profile, while the underlying publication record demonstrates activity across pharmaceutical delivery, cancer research, medicinal chemistry, and phytochemical investigation. In particular, nanoparticle-mediated siRNA delivery connects pharmaceutical formulation with cancer biology, whereas resveratrol analogue research links synthetic chemistry with anticancer investigation. [1][3]

Award Suitability

The documented research profile is relevant to a Research Excellence Award within a pharmaceutical research context because it encompasses multiple areas directly connected with drug development and cancer-oriented pharmaceutical science. The evidence includes peer-reviewed journal articles, DOI-indexed works, and research involving drug-delivery systems and anticancer compounds. [1][3]

Conclusion

Ketan Ruparelia’s documented research profile reflects interdisciplinary activity relevant to pharmaceutical and cancer research. His recorded works encompass nanocarrier-based siRNA delivery, anticancer resveratrol analogues, synthetic chemistry, phytochemical analysis, and enzyme-inhibitor research. The combination of these research areas provides a substantive scholarly basis for recognition under a pharmaceutical research excellence category.[1][3]

References

  1. Sayed, E., Ruparelia, K., Zafar, S., Faheem, A., Fatouros, D., Arshad, M. S., Singh, N., & Ahmad, Z. (2025). Novel electrosprayed core-shell polyethyleneimine and phospholipid coated MSNs for Co-delivery of KAZ3 and MDR-1 siRNA for efficient chemotherapy in multidrug-resistant colon cancer. European Journal of Pharmaceutics and Biopharmaceutics. https://doi.org/10.1016/j.ejpb.2025.114838
  2. Pal, P., Ruparelia, K. C., Arroo, R. R. J., & Brucoli, F. C. (2025). A Green Chemistry Approach for the Synthesis of Indanones as Fixed Ring Chalcone Analogues. Preprints. https://www.preprints.org/manuscript/202504.1089
  3. Ruparelia, K. C., Zeka, K., Beresford, K. J. M., Wilsher, N. E., Potter, G. A., Androutsopoulos, V. P., Brucoli, F., & Arroo, R. R. J. (2024). CYP1-Activation and Anticancer Properties of Synthetic Methoxylated Resveratrol Analogues. Molecules, 29(2). https://doi.org/10.3390/molecules29020423
  4. Arroo, R. R. J., Bhambra, A. S., Hano, C., Renda, G., Ruparelia, K. C., & Wang, M. F. (2021). Analysis of plant secondary metabolism using stable isotope-labelled precursors. Phytochemical Analysis. https://doi.org/10.1002/pca.2955
  5. Arroo, R. R. J., Sari, S., Barut, B., Özel, A., Ruparelia, K. C., & Şöhretoğlu, D. (2020). Flavones as tyrosinase inhibitors: kinetic studies in vitro and in silico. Phytochemical Analysis. https://doi.org/10.1002/pca.2897

Dr. Elisabeth Daguenet|Cancer research|Best Researcher Award

Dr. Elisabeth Daguenet | Cancer research|Best Researcher Award

Dr. Elisabeth Daguenet at CHU de Saint-Etienne,France

PROFILE  

scopus

 

Early Academic Pursuits 🎓

The journey into chronic myeloid leukemia (CML) research for many esteemed researchers began with a strong foundation in biomedical sciences, often pursued at prominent universities worldwide. Individuals drawn to this field typically engage in intensive studies in molecular biology, genetics, and oncology. By acquiring a strong academic base, they develop a passion for understanding cancer biology and molecular pathways, which ultimately leads to a specialization in CML, a type of blood cancer that has evolved significantly in terms of treatment and patient prognosis.

Early on, these researchers often excel in various scientific competitions, securing scholarships or internships, which provide invaluable laboratory experience. Many join research teams focusing on leukemia, gaining insights into molecular dynamics, cellular responses, and how early molecular response (EMR) can predict deeper responses in CML patients.

Professional Endeavors in Chronic Myeloid Leukemia 🧬

As they advance in their careers, these scientists and oncologists become affiliated with medical institutions, research hospitals, and pharmaceutical companies dedicated to advancing leukemia treatment. Their work emphasizes real-world data collection, the accuracy of clinical trials, and translating laboratory findings into practical treatment solutions for CML patients.

In professional settings, they may lead trials to evaluate tyrosine kinase inhibitors (TKIs)—a cornerstone treatment for CML—and examine patients’ responses to these drugs. These trials often reveal trends, such as the role of the initial molecular response in predicting a deep molecular response, which can influence treatment protocols. However, these studies also underscore that EMR alone may not guarantee treatment-free remission (TFR) maintenance, particularly in real-world settings. Through these roles, they often mentor young scientists and clinicians, fostering a new generation of leukemia researchers.

Contributions and Research Focus 🧫

The contributions of researchers in this field are substantial, especially in the exploration of CML treatment responses. Their research often focuses on identifying biomarkers that predict EMR, deep molecular response (DMR), and the viability of treatment-free remission (TFR). This research is crucial as it helps clinicians understand which patients are more likely to maintain remission after stopping treatment, potentially enhancing their quality of life by reducing dependency on medications.

Their work also explores the impact of various TKIs on the molecular response, aiming to discover why some patients maintain remission without treatment while others do not. The analysis of “real-world” cohorts—patients outside of clinical trial settings—adds a vital dimension to this research, providing a more practical perspective on how different factors impact TFR. Additionally, these studies often examine the psychological and social aspects of remission in leukemia patients, ensuring a holistic approach to cancer care.

Accolades and Recognition 🏅

Researchers who make strides in understanding CML are often recognized by prestigious oncology and hematology organizations worldwide. They may receive awards such as “Young Investigator Awards” or “Lifetime Achievement” distinctions from organizations like the European Hematology Association (EHA), American Society of Hematology (ASH), or similar bodies. These awards celebrate their commitment to advancing leukemia treatment and improving patient outcomes.

Publications in high-impact journals, invitations to speak at global conferences, and editorial roles in scientific publications also bring recognition. Through these platforms, they share their findings with a wider audience, spreading knowledge that shapes the future of CML treatment.

Impact and Influence 🌟

The impact of this work extends far beyond individual patient outcomes, transforming the landscape of CML treatment globally. Researchers studying the initial molecular response in CML patients play a significant role in refining the approach to personalized medicine. By highlighting the nuances of TFR maintenance, they guide oncologists in creating treatment plans tailored to each patient’s molecular profile, fostering a more effective and patient-centered treatment protocol.

Furthermore, this research influences medical guidelines, ensuring that healthcare providers have the most current information on EMR and DMR in real-world settings. This influence translates into better decision-making for oncologists worldwide, who can offer more accurate prognoses and support to CML patients.

Legacy and Future Contributions 🌱

The legacy of these researchers is one of resilience, innovation, and dedication to improving lives. Their work has fundamentally shifted the understanding of CML and has inspired a focus on achieving TFR, a dream outcome for many cancer patients. By shedding light on the predictors of TFR and the limitations of relying solely on EMR for treatment decisions, they encourage ongoing research that pushes the boundaries of cancer treatment.

In the future, the work may inspire genetic and pharmacological advancements, enabling scientists to uncover new biomarkers or develop novel TKIs with fewer side effects. Their research also lays a foundation for upcoming generations of cancer researchers, fostering a continuous cycle of inquiry, discovery, and refinement in leukemia treatment.

Conclusion 📝

In summary, the pursuit of understanding the molecular response in CML patients represents an extraordinary commitment to scientific advancement and patient care. These researchers build a legacy that impacts lives on a personal and global scale, contributing to the evolution of oncology and the prospect of a world where CML remission and ultimately cure become a widespread reality. Through their efforts, CML patients around the world can hope for not only better treatments but a pathway toward sustained remission and a life free from cancer treatment.

🎓Publication 

The initial molecular response predicts the deep molecular response but not treatment-free remission maintenance in a real-world chronic myeloid leukemia cohort

  • Authors   :Saugues, S., Lambert, C., Daguenet, E., Pereira, B., Berger, M.G.
  • Journal    : Haematologica
  • Year         :2024

Baseline DSB repair prediction of chronic rare Grade ≥ 3 toxicities induced by radiotherapy using classification algorithms

  • Authors   : Muggiolu, G., Sauvaigo, S., Libert, S., Deutsch, E., Magné, N.
  • Journal    : Radiation Research
  • Year         :2024

Low non-relapse mortality and good haematological and renal responses after autologous haematopoietic stem cell transplantation in multiple myeloma patients with renal insufficiency at transplant: A prospective Société Francophone de Greffe de Moelle-Thérapie Cellulaire observational study

  • Authors   :Garderet, L., Ouldjeriouat, H., Bekadja, M.-A., Lambert, J., Cornillon, J.
  • Journal    : British Journal of Haematology
  • Year         :2024

Differential Formation of Stress Granules in Radiosensitive and Radioresistant Head and Neck Squamous Cell Carcinoma Cells

  • Authors   : Louati, S., Wozny, A.-S., Malesys, C., Magné, N., Rodriguez-Lafrasse, C.
  • Journal    :International Journal of Radiation Oncology Biology Physics
  • Year         :2024

Correction to: ECP versus ruxolitinib in steroid-refractory chronic GVHD – a retrospective study by the EBMT transplant complications working party (Bone Marrow Transplantation

  • Authors   :Penack, O., Peczynski, C., Boreland, W., Moiseev, I., Peric, Z.
  • Journal    :Bone Marrow Transplantation
  • Year         :2024