Lucas Lesego Mashiane | Serology, parasitology and molecular biology | Best Researcher Award

Best Researcher Award

Lucas Lesego Mashiane
Researcher Lucas Lesego Mashiane
Affiliation North West University
Country South Africa
Subject Area Serology, parasitology and molecular biology
Event World Life Science Awards
ORCID 0000-0002-7866-3993

Lucas Lesego Mashiane is affiliated with North West University in South Africa and is associated with the academic field of serology, parasitology and molecular biology. These interconnected disciplines contribute to the study of host–pathogen interactions, infectious diseases, diagnostic methodologies, parasite biology and molecular mechanisms underlying biological processes. The Best Researcher Award recognizes research activity within this broader life-science context while providing a structured academic framework for documenting research contributions. [1]

Abstract

This academic recognition profile presents Lucas Lesego Mashiane of North West University, South Africa, in connection with the Best Researcher Award at the World Life Science Awards. The identified subject area is serology, parasitology and molecular biology, a multidisciplinary domain encompassing laboratory-based investigation of immune responses, parasites, infectious agents and molecular mechanisms.

Keywords

  • Serology
  • Parasitology
  • Molecular Biology
  • Infectious Disease Research
  • Host–Pathogen Interactions
  • Molecular Diagnostics
  • Immunology
  • Parasite Biology
  • Life Sciences
  • Biomedical Research

Introduction

Serology, parasitology and molecular biology represent complementary areas of biomedical and life-science research. Serology focuses on measurable components of the immune response in biological specimens, including antibodies and antigens, whereas parasitology addresses parasites, their life cycles, host relationships and associated diseases. Molecular biology provides experimental and analytical approaches for studying nucleic acids, proteins, gene expression and other molecular processes.

Research Profile

Lucas Lesego Mashiane is identified in the supplied award information as a researcher affiliated with North West University in South Africa. The stated research subject area is serology, parasitology and molecular biology. The combination indicates an interdisciplinary research orientation involving laboratory science, infectious disease biology and molecular investigation.ORCID describes its identifier as a persistent identifier for researchers and contributors. [2]

Research Contributions

Research within serology, parasitology and molecular biology can contribute to several interconnected areas of life-science investigation. Depending on the specific research program, potential contribution areas include the characterization of infectious agents, investigation of host immune responses, parasite detection, molecular identification and development or assessment of laboratory methodologies. [2]

Publications

A complete publication list was not included in the supplied researcher information. Accordingly, individual publication titles, journal names, publication dates, citation counts and DOI identifiers are not attributed to the researcher in this profile without verification. DOI can provide a persistent route to the corresponding scholarly record. DOI registration and metadata are commonly used to identify and connect scholarly publications across research systems. [3]

Research Impact

Research impact in serology, parasitology and molecular biology may be assessed through multiple dimensions rather than a single metric. These can include scholarly dissemination, reproducibility, methodological contribution, collaboration, relevance to infectious-disease research, contribution to diagnostic science and application of findings in subsequent research.

Award Suitability

The supplied award information associates Lucas Lesego Mashiane with the Best Researcher Award under the World Life Science Awards and identifies serology, parasitology and molecular biology as the relevant subject area. The disciplinary scope is consistent with the broader life-science and biomedical research domains represented by the event. [1]

Conclusion

Lucas Lesego Mashiane is identified as a researcher affiliated with North West University, South Africa, with a stated subject area encompassing serology, parasitology and molecular biology. These fields intersect in the investigation of infectious diseases, immune responses, parasites and molecular mechanisms and provide a multidisciplinary foundation for life-science research. [2]

References

  1. World Life Science Awards. Official Award Website.
    https://lifescienceaward.com/
  2. ORCID. ORCID: Connecting Research and Researchers. ORCID.
    https://orcid.org/0000-0002-7866-3993
  3. Prevalence and risk associated factors of Toxoplasma gondii in cattle from Limpopo province, South Africa. Preventive Veterinary Medicine: Regional Studies and Reports, 1(2), 100011.
    https://doi.org/10.1016/j.pvmrsr.2026.100011

Rongpeng Li | Molecular Biology | Research Excellence Award

Dr. Rongpeng Li | Molecular Biology | Research Excellence Award

Nantong University | China

Dr. Rongpeng Li is a highly productive researcher whose scientific contributions span molecular microbiology, innate immunity, tumor biology, and therapeutic drug discovery. With a publication record of 60 Scopus-indexed documents, an h-index of 20, and 1541 citations, his work demonstrates sustained impact across both fundamental life science and translational biomedical research. He has led 7 completed or ongoing research projects, in addition to 6 industry-linked consultancy projects, highlighting his strong engagement with applied science. His research focuses on the molecular mechanisms by which the innate immune system recognizes pathogens, regulates virulence, and interacts with host defense pathways, contributing to new insights into immune regulation and pathogen evolution. He has also advanced the understanding of tumor proliferation, resistance mechanisms, CAR-T/CAR-M therapies, and the influence of the tumor and gut microbiome on cancer progression. His contributions to natural drug discovery include identifying new immune-modulating compounds and developing therapeutic vaccine strategies. Notably, his team discovered that TRIM7 promotes NAFLD/NASH progression through DUSP10 degradation, establishing a novel regulatory axis for metabolic liver disease and identifying a promising therapeutic target. With strong publication output, innovation in drug discovery, and leadership in interdisciplinary collaborations, Dr. Li stands as a significant contributor to contemporary life science research.

Profiles: Scopus | Orcid 

Featured Publications

Yan, F.-J., Ding, H., Zhang, N., Yan, S.-R., Huang, M.-X., Lu, J.-W., Wang, Y.-J., Yan, Y.-J., Li, R.-P., & Wang, Q. The E3 ligase tripartite motif 7 drives the progression of non-alcoholic fatty liver disease by targeting DUSP10 degradation in male mice.

Wang, Z., Zhao, J., He, S., Li, R., Wang, X., Yan, C., Zhao, J., & Wei, W.  Inorganic polyphosphate relieves ulcerative colitis by modulating the gut microbiota and metabolites.

Song, L., Wang, S., Zou, H., Yi, X., Jia, S., Li, R., & Song, J. Regulation of ergosterol biosynthesis in pathogenic fungi: Opportunities for therapeutic development. .

Song, J., Shi, L., Wang, S., Wang, Y., Zhu, Y., Jiang, J., & Li, R. Correction for Song et al., “Acidic/alkaline stress mediates responses to azole drugs and oxidative stress in Aspergillus fumigatus”.

Svetlana Soboleva | Molecular Biology | Best Researcher Award

Dr. Svetlana Soboleva | Molecular Biology | Best Researcher Award

Novosibirsk State University | Russia

Dr. Svetlana Soboleva, a Research Scientist at the Institute of Chemical Biology and Fundamental Medicine, Russian Academy of Sciences, has made significant contributions to the study of protein-nucleic interactions and enzymology. Her research focuses on the structural and functional characteristics of human milk lactoferrin, its complexes with other milk proteins, and the formation of highly stable multiprotein complexes from human milk and placenta. With a total of 25 published journal papers in SCI and Scopus-indexed publications and 9 citations, she has demonstrated consistent scholarly output in biochemical and molecular biology research. Her h-index, as reflected in her Scopus profile, highlights the impact and recognition of her scientific work within the global research community. She has completed three research projects with one ongoing, showing a sustained commitment to advancing enzymology and protein research. Additionally, she has contributed to academic literature through a book chapter and participated in international collaborations such as the U.S. Civilian Research & Development Foundation  Postdoctoral Fellowship Program. Her research excellence and international engagement underline her position as a deserving candidate for recognition under the Best Researcher Award category.

Profiles: Scopus | Orcid | Research Gate

Featured Publications

Soboleva, S. E., Maltseva, N. A., Kostrikina, I. A., Dmitrenok, P. S., & Nevinsky, G. A. Metal dependent glycosidases of sea cucumber Eupentacta fraudatrix and their properties.

Tupitsyna, A. V., Grigorieva, A. E., Soboleva, S. E., Maltseva, N. A., Sedykh, S. E., Poletaeva, J., Dmitrenok, P. S., Ryabchikova, E. I., & Nevinsky, G. A.  Isolation of extracellular vesicles of Holothuria (sea cucumber Eupentacta fraudatrix). International Journal of Molecular Sciences, 24(16), 12907.

Zaksas, N. P., Timofeeva, A. M., Dmitrenok, P. S., Soboleva, S. E., & Nevinsky, G. A. Comparison of the content of several elements in seawater, sea cucumber Eupentacta fraudatrix and its high-molecular-mass multiprotein complex. Molecules, 27(6), 1958.

Timofeeva, A. M., Kostrikina, I. A., Dmitrenok, P. S., Soboleva, S. E., & Nevinsky, G. A. Protease and DNase activities of a very stable high-molecular-mass multiprotein complex from sea cucumber Eupentacta fraudatrix. International Journal of Molecular Sciences, 23(12), 6677.

Timofeeva, A. M., Kostrikina, I. A., Dmitrenok, P. S., Soboleva, S. E., & Nevinsky, G. A.  Very stable two mega dalton high-molecular-mass multiprotein complex from sea cucumber Eupentacta fraudatrix.

Annamaria Biroccio | Molecular Biology | Best Researcher Award

Dr. Annamaria Biroccio | Molecular Biology | Best Researcher Award

IRCCS-Regina Elena National Cancer Institute | Italy

Dr. Annamaria Biroccio, PhD (Microbiology, University of Messina) is a Senior Investigator at the Regina Elena National Cancer Institute (IRE-IFO), Rome, with over two decades of experience in cancer molecular biology and telomere research. Her work focuses on elucidating the mechanisms regulating telomere function and their implications in cancer progression, alongside developing pharmacological strategies targeting telomeres for anticancer therapy. She has published extensively in high-impact journals, contributing over 115 peer-reviewed papers on telomere biology, DNA damage response, and targeted therapies. According to her CV, Dr. Biroccio holds an H-index of 44, reflecting substantial influence in the field, with more than 6124 citations across her publications. Her research leadership is underscored by principal investigator roles in major national and international grants, including AIRC, CNR, and EU FP7 programs. She is also co-owner of two patents related to telomere-targeting therapeutics for triple-negative breast cancer. In recognition of her contributions, she has received multiple awards such as the Mascia Brunelli Award and Young Investigator Award. Beyond research, Dr. Biroccio has significantly contributed to scientific training as a tutor for numerous national fellowship programs and serves on editorial boards of prominent cancer research journals

Featured Publications

Dinami, R., Petti, E., Ostano, P., Iachettini, S., Rizzo, A., Maresca, C., Zizza, P., Di Vito, S., Porru, M., D’Angelo, C., Sibilio, P., De Nicola, F., Russo, R., Di Benedetto, A., Palange, A., Fanciulli, M., Chambery, A., Gilson, E., & Biroccio, A. (2025). Multi-omics analyses integration reveals a novel TRF2–miR-181a-5p–S100A10 regulatory axis in colon cancer. Cellular and Molecular Biology Letters, 30(1), 121.

Petti, E., Di Vito, S., Dinami, R., Porru, M., Marchesi, S., Lohuis, J., Zizza, P., Iachettini, S., Salvati, E., D’Angelo, C., Rizzo, A., Maresca, C., Ascione, F., Di Benedetto, A., Buglioni, S., Sacconi, A., Ostano, P., Li, Q., Stoppacciaro, A., Leonetti, C., van Rheenen, J., Maiuri, P., Scita, G., & Biroccio, A. (2025). TRF2 interaction with nuclear envelope is required for cell polarization and metastasis in triple-negative breast cancer. Cell Death & Disease, 16(1), 224.

Pirota, V., Iachettini, S., Platella, C., Zizza, P., Fracchioni, G., Di Vito, S., Carachino, A., Battistini, F., Orozco, M., Freccero, M., Biroccio, A., & Doria, F. (2025). Naphthalene diimide–naphthalimide dyads promote telomere damage by selectively targeting multimeric G-quadruplexes. Nucleic Acids Research, 53(7), gkaf301.

Russomanno, P., Zizza, P., Cerofolini, L., D’Aria, F., Iachettini, S., Di Vito, S., Amato, J., Fragai, M., Pagano, B., & Biroccio, A. (2025). Expanding the functions of KHSRP protein: Insights into DNA G-quadruplex binding. Advanced Science, 12(8), e2410086.

Pirota, V., Salvati, E., Risoldi, C., Manoli, F., Rizzo, A., Zizza, P., Biroccio, A., Freccero, M., & Manet, I. (2025). Core-extended naphthalene diimide dyads as light-up probes with targeted cytotoxicity toward tumor cells. Biomolecules, 15(2), 311.