Alesia Tietze | Medicinal Chemistry in Cancer | Innovative Research Award

Innovative Research Award

Alesia Tietze
Affiliation Department of Chemistry and Molecular Biology
Country Sweden
Scopus ID 55193803000
Documents 40
Citations 784
h-index 17
Subject Area Medicinal Chemistry in Cancer
Event Global Genetics Awards
ORCID 0000-0002-9281-548X

Alesia Tietze
Department of Chemistry and Molecular Biology

Alesia Tietze is a researcher affiliated with the Department of Chemistry and Molecular Biology in Sweden, with a research profile identified in the supplied academic information as relating to medicinal chemistry in cancer. The profile is associated with 40 Scopus-indexed documents, 784 citations, and an h-index of 17. These bibliometric indicators provide a quantitative view of research visibility and scholarly impact, while the award assessment itself should be based on the complete research record and independently verified evidence. [3]

Abstract

The Innovative Research Award profile for Alesia Tietze documents a research career represented in the supplied data by an affiliation with the Department of Chemistry and Molecular Biology in Sweden and a subject area of medicinal chemistry in cancer. The associated Scopus record is reported as containing 40 documents, 784 citations, and an h-index of 17. [1] These metrics can be used as supporting indicators of scholarly activity and citation reach, but they do not independently establish the novelty, methodological quality, translational significance, or originality of individual research contributions. The researcher is also associated with an ORCID identifier, providing a persistent identifier for distinguishing the scholarly record. [2]

Keywords

Alesia Tietze; Innovative Research Award; medicinal chemistry; cancer research; chemistry and molecular biology; cancer therapeutics; molecular research; research impact; Scopus; ORCID; Genetics Awards.

Introduction

Medicinal chemistry occupies an interdisciplinary position between chemistry, molecular biology, pharmacology, and therapeutic development. Research in this area may involve the design, synthesis, characterization, optimization, and biological evaluation of compounds intended to address disease-associated molecular targets. In cancer research, medicinal chemistry can intersect with studies of molecular mechanisms, therapeutic targets, biomarkers, drug resistance, and precision-oriented treatment strategies.

Within this broad research environment, academic recognition generally requires consideration of both quantitative and qualitative evidence. Bibliometric indicators such as document counts, citation counts, and h-index values can provide useful measures of scholarly visibility, while publications, methodological contributions, collaborations, and demonstrable scientific outcomes provide additional context. The Genetics Awards program states that submitted research profiles may undergo screening, credential verification, cross-checking of submitted information, and committee review before selection. [3]

Research Profile

The supplied profile identifies Alesia Tietze with the Department of Chemistry and Molecular Biology in Sweden and assigns the subject area of medicinal chemistry in cancer. The reported Scopus information comprises 40 documents, 784 citations, and an h-index of 17. [1] Taken together, these values indicate a documented body of indexed scholarly output and citation activity.

The research profile should be interpreted in relation to the underlying publications rather than as a standalone ranking. Citation indicators can vary according to database coverage, publication type, disciplinary citation practices, author disambiguation, and the date on which the record is consulted. The ORCID identifier supplied for the researcher offers an additional mechanism for connecting scholarly outputs to a persistent researcher identity. [2]

Research Contributions

Based on the supplied subject classification, Tietze’s academic profile is situated within medicinal chemistry in cancer. This field encompasses research that connects chemical science with biological and therapeutic questions relevant to oncology. The precise contribution of an individual researcher should, however, be established from verified publications, research projects, patents, datasets, collaborations, and other primary scholarly evidence rather than inferred solely from a subject-area label.

For an award evaluation, relevant evidence may include the originality of research questions, rigor of experimental or computational methods, reproducibility, significance of findings, contribution to interdisciplinary research, and potential relevance to cancer biology or therapeutic development. The Genetics Awards program identifies research excellence and related scientific contributions among the areas considered within its award framework. [3]

Publications

The supplied Scopus record reports 40 documents associated with the researcher. [1] Because individual publication titles, journals, publication years, authorship positions, and DOI identifiers were not supplied in the source information for this profile, specific publications are not enumerated here. This avoids attributing research findings or bibliographic details that have not been independently established.

For formal award documentation, the publication record can be verified through the researcher’s Scopus author profile and persistent ORCID identifier. Where individual publications are evaluated, DOI metadata should be checked against the publisher or DOI registration record before being included in a nomination dossier.

Research Impact

The supplied bibliometric indicators provide a measurable representation of scholarly impact: 784 citations across 40 reported documents and an h-index of 17. [1] These indicators may support an assessment of sustained research visibility, but they should be interpreted alongside publication quality, contribution to the scientific literature, collaboration, methodological innovation, and the broader significance of the research.

In the context of cancer-focused medicinal chemistry, research impact may also be considered through the extent to which scientific findings contribute to understanding disease mechanisms, identifying therapeutic opportunities, improving molecular tools, or informing subsequent research. Such outcomes require evidence from the underlying scholarly record and should not be inferred solely from citation statistics.

Award Suitability

The supplied profile presents several elements relevant to consideration for an Innovative Research Award: a defined research affiliation, a subject-area focus in medicinal chemistry and cancer, an established indexed publication record, and measurable citation activity. The reported h-index of 17 and 784 citations may serve as supporting bibliometric evidence of scholarly reach. [1]

Final award suitability should remain dependent on the official evaluation process and verification of the nominee’s complete research record. The Genetics Awards program describes a process involving submission screening, verification of credentials, cross-checking of information, committee review, and subsequent selection. [3] Accordingly, the present article should be understood as an academic recognition profile based on the supplied information rather than as an independent declaration of award selection.

Conclusion

Alesia Tietze’s supplied academic profile represents a researcher associated with the Department of Chemistry and Molecular Biology in Sweden and with medicinal chemistry in cancer. The reported Scopus indicators of 40 documents, 784 citations, and an h-index of 17 provide quantitative evidence of an established scholarly record. [1] The associated ORCID identifier further supports persistent scholarly identification. [2]

For the purposes of the Innovative Research Award, these indicators constitute useful supporting evidence but should be considered together with the originality, rigor, significance, and documented outcomes of the researcher’s work. A complete assessment should rely on verified publications and other primary academic evidence in accordance with the award’s stated evaluation procedures. [3]

References

  1. Elsevier. (n.d.). Scopus author details: Alesia Tietze, Author ID 55193803000.

    Scopus.https://www.scopus.com/authid/detail.uri?authorId=55193803000

  2. ORCID. (n.d.). ORCID record: Alesia Tietze, ORCID iD 0000-0002-9281-548X.
    https://orcid.org/0000-0002-9281-548X
  3. Targeted sortase A inhibition by novel peptidomimetic antivirulents against staphylococcal infections

    https://pubmed.ncbi.nlm.nih.gov/41773879/

  4. DNA Scission by Non-Histidine Amino-Terminal Cu(II) and Ni(II) Binding-Like Peptides

    https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/cbic.70397

Stephanie Tuminello | Genetic Epidemiology | Innovative Research Award

 

Innovative Research Award

Stephanie Tuminello
Icahn School of Medicine at Mount Sinai

Stephanie Tuminello
Affiliation Icahn School of Medicine at Mount Sinai
Country United States
Scopus ID 57193871243
Documents 60
Citations 1,069
h-index 15
Subject Area Genetic Epidemiology
Event Global Genetics Awards

Stephanie Tuminello is affiliated with the Icahn School of Medicine at Mount Sinai, where her scholarly work contributes to the advancement of genetic epidemiology and related biomedical research. Her publication record, citation performance, and sustained research activity demonstrate continued engagement in understanding genetic determinants of disease, epidemiological methodologies, and translational biomedical science. Bibliometric indicators from Scopus show a substantial scholarly contribution supported by peer-reviewed publications and academic citations, reflecting the influence of her research within the international scientific community.[1]

Abstract

Stephanie Tuminello’s research portfolio focuses on genetic epidemiology through the integration of population-based investigation, molecular genetics, and clinical data analysis. Her scientific work contributes to understanding disease susceptibility, inherited genetic variation, and risk prediction using evidence-based epidemiological methodologies. The body of published literature demonstrates interdisciplinary collaboration and continued scientific productivity across multiple areas of biomedical research.[1]

Keywords

Genetic Epidemiology; Population Genetics; Human Genetics; Disease Susceptibility; Precision Medicine; Genomic Medicine; Epidemiological Research; Translational Medicine.

Introduction

Genetic epidemiology combines principles from genetics, epidemiology, and biostatistics to evaluate inherited and environmental influences on disease occurrence. Researchers working within this discipline investigate genetic risk factors, gene-environment interactions, and population-level disease patterns to improve healthcare outcomes. Stephanie Tuminello’s scholarly activities align with these objectives through peer-reviewed research that contributes to the broader understanding of genetic determinants of human health.[2]

Research Profile

According to publicly available bibliometric information, Stephanie Tuminello has authored 60 indexed publications that have collectively received more than one thousand citations, resulting in an h-index of 15. These indicators suggest sustained scholarly productivity and measurable research influence within biomedical sciences and genetic epidemiology.[1]

  • Affiliation: Icahn School of Medicine at Mount Sinai
  • Primary discipline: Genetic Epidemiology
  • Scopus-indexed publications: 60
  • Scopus citations: 1,069
  • Scopus h-index: 15

Research Contributions

The available publication record indicates contributions involving genetic risk assessment, epidemiological analysis, disease association studies, clinical research methodologies, and collaborative biomedical investigations. Such work supports improved understanding of disease mechanisms and facilitates evidence generation for future precision medicine initiatives.[1][3]

  • Population-based genetic investigations.
  • Clinical and translational epidemiological research.
  • Genetic susceptibility and disease association studies.
  • Interdisciplinary collaboration across biomedical sciences.

Publications

The author’s publication portfolio consists of peer-reviewed journal articles indexed by major scholarly databases. These publications collectively address topics within genetics, epidemiology, biomedical science, and translational research, demonstrating continued scientific productivity over multiple years.[1]

  • Research articles indexed in Scopus.
  • Collaborative multidisciplinary publications.
  • Biomedical and genetic epidemiology studies.

Research Impact

Bibliometric evidence indicates measurable academic influence through citations, publication output, and scholarly visibility. Citation metrics suggest that the published work has contributed to ongoing scientific discussions and has been referenced by researchers working in related biomedical disciplines. Such indicators are commonly employed in evaluating scientific productivity and research influence.[1]

Award Suitability

Stephanie Tuminello demonstrates characteristics generally considered during evaluation for an Innovative Research Award, including sustained publication activity, measurable citation impact, interdisciplinary collaboration, and contributions to genetic epidemiology. Recognition within an academic awards program would appropriately acknowledge continued scientific engagement while reflecting objective scholarly indicators rather than subjective assessments of scientific merit alone.[1]

Conclusion

Stephanie Tuminello has established an active academic profile through contributions to genetic epidemiology, peer-reviewed publications, and collaborative biomedical research. Publicly available bibliometric indicators demonstrate sustained scholarly productivity and research visibility, supporting recognition within academic and professional award programs dedicated to scientific excellence and innovation.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Stephanie Tuminello, Author ID 57193871243.
    Scopus.https://www.scopus.com/authid/detail.uri?authorId=57193871243
  2. Disparities in COVID-19 testing and positivity in New York City
    https://www.sciencedirect.com/science/article/pii/S0749379720302634
  3. Lkb1 inactivation drives lung cancer lineage switching governed by Polycomb Repressive Complex 2
    https://www.nature.com/articles/ncomms14922
  4. Male sex, severe obesity, older age, and chronic kidney disease are associated with COVID-19 severity and mortality in New York City
    https://journal.chestnet.org/article/S0012-3692(20)34288-4/fulltext
  5. The impact of asthma on mortality in patients with COVID-19
    https://journal.chestnet.org/article/S0012-3692(20)31645-7/fulltext