Laila Darwich Soliva | WGS AMR transmission| Innovative Research Award

Innovative Research Award

Laila Darwich Soliva
Affiliation Universitat Autònoma de Barcelona
Country Spain
Scopus ID 8514531300
Documents 101
Citations 3,917
h-index 37
Subject Area WGS AMR transmission
Event Global Genetics Awards
ORCID 0000-0001-9027-9452

Laila Darwich Soliva
 Universitat Autònoma de Barcelona

Laila Darwich Soliva is a researcher and academic at the Universitat Autònoma de Barcelona (UAB), Spain, working in animal health, infectious diseases, antimicrobial resistance and One Health research. Her institutional research profile identifies her within the Department of Animal Health and Anatomy and the research group TRANSMISAN. The profile records a substantial body of peer-reviewed research and an h-index of 37. [1]

Abstract

The Innovative Research Award profile recognizes the research activities of Laila Darwich Soliva in the fields of animal health, infectious diseases, antimicrobial resistance and One Health. Her academic work is associated with the Universitat Autònoma de Barcelona, where she is affiliated with the Department of Animal Health and Anatomy and the TRANSMISAN research group. Institutional records describe research outputs addressing bacterial pathogens, antimicrobial-resistance determinants, zoonotic disease and genomic surveillance. [1]

Her research trajectory combines veterinary science with microbiological, epidemiological and genomic approaches. This interdisciplinary orientation is particularly relevant to contemporary surveillance of antimicrobial resistance, where understanding transmission across animal, environmental and human populations requires integrated One Health methodologies. Her publication record and citation indicators provide quantitative evidence of sustained scholarly activity. [1]

Keywords

Laila Darwich Soliva; Innovative Research Award; Universitat Autònoma de Barcelona; antimicrobial resistance; whole-genome sequencing; WGS; AMR transmission; infectious diseases; veterinary medicine; One Health; zoonoses; bacterial genomics; antimicrobial-resistance genes; genomic surveillance; animal health.

Introduction

Darwich Soliva’s research profile is situated within this interdisciplinary environment. UAB records identify her academic activities with the Department of Animal Health and Anatomy and the TRANSMISAN group, while her institutional profile documents research outputs spanning animal infectious diseases, antimicrobial resistance and related One Health topics. [1]

Her academic career also includes formal training in veterinary medicine and postgraduate research experience. The UAB research portal records a PhD in Veterinary Medicine awarded in 2004 and previous postdoctoral research activity at the Germans Trias i Pujol Health Sciences Research Institute. [1]

Research Profile

The research profile of Laila Darwich Soliva reflects an interdisciplinary approach to infectious diseases and animal health. Her institutional affiliation places her within the scientific area of Animal Health, with research activities connected to transmissible diseases and One Health. [1]

  • Veterinary medicine and animal health research.
  • Antimicrobial resistance and antimicrobial-resistance determinants.
  • Whole-genome sequencing and bacterial genomic characterization.
  • Zoonoses and infectious diseases at the animal–human interface.
  • One Health approaches to infectious-disease surveillance.
  • Epidemiological investigation of pathogens in animal and wildlife populations.

The UAB research portal currently lists more than one hundred research outputs associated with her profile, including articles, reviews, book chapters and other scholarly contributions. Recent examples include research on antimicrobial-resistance genes in wildlife and livestock-associated bacteria and genomic characterization of Klebsiella strains. [1]

Research Contributions

A central contribution of Darwich Soliva’s research is the application of genomic and microbiological methods to questions of antimicrobial resistance and infectious-disease transmission. Research listed by UAB includes work examining the global distribution of antimicrobial-resistance genes in Escherichia coli isolated from wild animals, as well as studies of antibiotic determinants and heavy-metal resistance genes in E. coli from pigs in Catalonia. [1]

Her recent research record also includes whole-genome characterization of Klebsiella strains identified in European hedgehogs and human nosocomial settings, with attention to shared sequence types, antimicrobial-resistance genes and plasmids. Such work illustrates the value of genomic comparison for understanding bacterial populations across ecological and clinical contexts. [1]

Additional research activities address antimicrobial resistance in companion-animal and wildlife contexts, including studies of canine otitis pathogens and resistant bacterial populations. These research directions contribute to a broader evidence base for antimicrobial stewardship and surveillance within veterinary and One Health frameworks. [1]

Publications

The institutional research portal lists a substantial publication record for Laila Darwich Soliva. Examples of recent research outputs include peer-reviewed studies addressing antimicrobial resistance, bacterial genomics and wildlife-associated pathogens. [1]

  • Detection of Extended-Spectrum β-Lactamase–Producing Bacteria and CMY-2 Genes in Coypu (Myocastor coypus) in Catalan Wetlands, Northeast Spain, published in the Journal of Wildlife Diseases in 2026. [1]
  • Whole Genome Characterization of Klebsiella Strains in European Hedgehogs and Human Nosocomial Settings Identified Shared Sequence Types, Antimicrobial Resistance Genes and Plasmids, published in Zoonoses and Public Health in 2026. [1]
  • Characterization of antibiotic determinants and heavy metal resistance genes in Escherichia coli from pigs in Catalonia, published in Microbial Genomics in 2025. [1]
  • Global distribution of antimicrobial resistance genes in Escherichia coli isolated from wild animals using genomes available in public databases, published in Science of the Total Environment in 2025. [1]
  • Trends in Antimicrobial Resistance of Canine Otitis Pathogens in the Iberian Peninsula (2010–2021), published in Antibiotics in 2025. [1]

Publication-specific DOI information should be verified against the publisher or DOI registry before being used as a bibliographic identifier. No DOI is asserted here where the supplied researcher profile does not provide a verified DOI value.

Research Impact

The supplied research metrics identify 101 documents, approximately 3,917 citations and an h-index of 37. The UAB research portal independently reports an h-index of 37 and a citation count displayed at approximately 3,931 at the time of its indexed profile, illustrating that citation totals can vary according to database update timing and indexing coverage. [1]

Beyond bibliometric indicators, the research profile has relevance to infectious-disease surveillance, veterinary public health and antimicrobial-resistance monitoring. Studies involving wildlife, livestock, companion animals and bacterial genomic data demonstrate the potential value of integrated surveillance approaches for identifying resistance determinants and understanding pathogen circulation across populations. [1]

Her academic activities also extend into postgraduate and multidisciplinary education. The UAB Master’s Degree in Zoonoses and One Health identifies Laila Darwich Soliva as coordinator and teaching staff member, reflecting an educational role connected with multidisciplinary approaches to zoonotic disease and One Health. [2]

Award Suitability

The research record provides a substantive basis for consideration under an Innovative Research Award framework. Relevant factors include sustained scholarly output, a documented research focus on infectious diseases and antimicrobial resistance, application of genomic approaches to bacterial surveillance, and participation in multidisciplinary One Health education and research. [1] [2]

  • Research relevance: Her work addresses antimicrobial resistance, infectious diseases and animal health, areas of continuing scientific and public-health importance.
  • Methodological scope: Her research includes genomic characterization and whole-genome sequencing approaches relevant to bacterial surveillance.
  • Interdisciplinary contribution: The research connects veterinary medicine, microbiology, epidemiology, genomics and One Health.
  • Scholarly record: The institutional profile documents a substantial body of research output and established citation impact. [1]
  • Educational contribution: Her involvement in the UAB Zoonoses and One Health master’s programme demonstrates engagement with multidisciplinary scientific education. [2]

Award suitability remains subject to the formal evaluation criteria, documentation requirements and independent review procedures established by the Genetics Awards programme. The information presented here should therefore be regarded as an academic recognition profile rather than a determination of award outcome.

Conclusion

Laila Darwich Soliva’s academic profile represents sustained research activity in animal health, infectious diseases, antimicrobial resistance and One Health. Her work incorporates genomic and epidemiological perspectives that are increasingly important for understanding antimicrobial-resistance patterns and pathogen transmission across animal and human environments. [1]

The combination of research productivity, citation impact, interdisciplinary investigation and academic engagement provides a strong scholarly context for consideration for an Innovative Research Award. Her institutional record further demonstrates involvement in postgraduate education and multidisciplinary One Health training. [1] [2]

References

  1. Universitat Autònoma de Barcelona. (n.d.). Laila Darwich Soliva — Research Portal. Department of Animal Health and Anatomy; Grup de Recerca en Malalties Transmissibles en Sanitat Animal (TRANSMISAN).

    https://portalrecerca.uab.cat/en/persons/laila-darwich-soliva-7/

  2. Evolution and Antimicrobial Resistance Profiles of Klebsiella spp. Infections in Companion Animals in the Iberian Peninsula

    https://www.mdpi.com/2079-6382/15/7/678

  3. Detection of Extended-Spectrum β-Lactamase–Producing Bacteria and CMY-2 Genes in Coypu (Myocastor coypus) in Catalan Wetlands, Northeast Spain
    https://pubmed.ncbi.nlm.nih.gov/41698668/

  4. Elsevier. (n.d.). Scopus author details: Laila Darwich Soliva, Author ID 8514531300.

    Scopus.https://www.scopus.com/pages/authors/8514531300

Qing Liu | Crop Wild Relative | Best Researcher Award

Assoc Prof Dr. Qing Liu | Crop Wild Relative | Best Researcher Award

South China Botanical Garden, Chinese Academy of Sciences | China

Author Profile

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Orcid ID

🌾 Biography of Dr. Qing Liu: Pioneering the Origins of Crop Genomes

Dr. Qing Liu is a distinguished researcher whose expertise bridges evolutionary botany, molecular genetics, and bioinformatics. With a focus on the genomic origins of vital crops, her career is a testament to dedication, scholarly excellence, and impactful contributions to plant science.

🌱 EARLY ACADEMIC PURSUITS

Dr. Liu’s academic journey began at Harbin Normal University, where she earned her Bachelor of Science in Biology Education (1997). Her undergraduate research delved into the micromorphology of gland hairs and secretion in Labiatae plants, showcasing her early interest in plant anatomy and taxonomy.

She furthered her studies at the South China Botanical Garden, Chinese Academy of Sciences (SCBG, CAS), completing a Master’s degree in Botany (2001) with a dissertation focusing on the taxonomy and phytogeography of the Chloridoideae subfamily in South China. Her passion for systematic and evolutionary botany culminated in a Ph.D. in Botany (2005), where she explored evolutionary aspects of the Chloridoideae subfamily.

🧪 PROFESSIONAL ENDEAVORS

Dr. Liu's professional journey is deeply intertwined with her affiliation to the South China Botanical Garden, CAS, where she has held progressive roles:

  • Huanyong Chen Professor (2014–Present)
  • Associate Professor (2005–2013)
  • Assistant Professor and Research Technician (2001–2005)

Dr. Liu's international engagements have further enriched her expertise:

  • Visiting Scholar Fellow at Smithsonian Institution, NMNH (2006, 2009–2010, 2012–2013): Collaborating on evolutionary studies of Eleusine, Sorghum, and other key grass genera.
  • Visiting Scholar Fellow at the University of Leicester (2016–2017): Investigating the repetitive DNA landscape in Avena species.

📚 CONTRIBUTIONS AND RESEARCH FOCUS ON CROP WILD RELATIVE

Dr. Liu’s research embodies a multidisciplinary approach to unraveling the origins and evolutionary pathways of crop genomes. Her focal areas include:

  • Phylogeny and Genomic Origins of Eleusine, Sorghum, Panicum, and Avena.
  • Polyploidy and Chromosomal Dynamics in crop species.
  • Advanced methods such as microscopy, bioinformatics, and in situ hybridization to decipher evolutionary relationships.

Her work on the Chloridoideae subfamily contributes significantly to our understanding of grass systematics and phylogeny, providing critical insights into crop evolution and biodiversity conservation.

🌍 IMPACT AND INFLUENCE

Dr. Liu’s research has influenced both theoretical and applied plant sciences:

  • Enhanced understanding of crop wild relatives as resources for improving agricultural resilience.
  • Contributions to global scientific collaborations, notably with the Smithsonian Institution and the University of Leicester, bridging Chinese and international botanical research.
  • Recognition as an Excellent Supervisor (CAS, 2018), underscoring her mentorship and commitment to nurturing the next generation of scientists.

📝 ACADEMIC CITES AND RECOGNITIONS

Dr. Liu’s work is widely recognized in the scientific community, as evident from her roles as:

  • Grant Proposal Referee for the National Science Foundation of China and Guangdong Natural Science Fund.
  • Journal Reviewer, shaping the discourse in evolutionary botany and crop genomics.
    Her excellence in research and peer contributions has made her a trusted expert adviser to the China Association for the Promotion of International Agricultural Cooperation.

🌟 LEGACY AND FUTURE CONTRIBUTIONS

Dr. Qing Liu's dedication to unraveling the evolutionary histories of vital crops ensures her enduring influence in botany and agricultural science. Her ongoing work on phylogeny, bioinformatics, and crop genome origins positions her to address global challenges like food security and biodiversity conservation.

Through her mentorship and groundbreaking research, Dr. Liu’s legacy will continue to inspire scientific advancements in crop science and evolution for years to come.

📑NOTABLE PUBLICATIONS 

"Chromosome-level genome assembly of the diploid oat species Avena longiglumis

  • Authors: Liu, Q. , Xiong, G. , Wang, Z. , Schwarzacher, T. , Heslop-Harrison, J.S.
  • Journal: Scientific Data
  • Year: 2024

"Genome-wide analysis of flavonoid biosynthetic genes in Musaceae (Ensete, Musella, and Musa species) reveals amplification of flavonoid 3,-hydroxylase

  • Authors: Cui, D. , Xiong, G. , Ye, L. , Heslop-Harrison, P. , Liu, Q.
  • Journal: AoB PLANTS
  • Year: 2024

"High throughput RNA sequencing discovers symptomatic and latent viruses: an example from ornamental hibiscus

  • Authors: Zhou, S. , Richert-Pöggeler, K.R. , Wang, Z. , Heslop-Harrison, J.S. , Liu, Q.
  • Journal: Acta Horticulturae
  • Year: 2024

"Genome-wide expansion and reorganization during grass evolution: from 30 Mb chromosomes in rice and Brachypodium to 550 Mb in Avena

  • Authors: Liu, Q. , Ye, L. , Li, M. , Schwarzacher, T. , Heslop-Harrison, J.S.P.
  • Journal: BMC Plant Biology
  • Year: 2023

"The mitochondrial genome of the diploid oat Avena longiglumis

  • Authors: Liu, Q. , Yuan, H. , Xu, J. , Schwarzacher, T. , Heslop-Harrison, J.S.
  • Journal: BMC Plant Biology
  • Year: 2023

Ralph Scully | Homologous Recombination | Best Researcher Award

Dr. Ralph Scully | Homologous Recombination | Best Researcher Award

Harvard Medical School | United States

Author Profile

Scopus

Google Scholar

RALPH SCULLY: PIONEER IN GENOMIC STABILITY AND DNA REPAIR 🧬

Dr. Ralph Scully is a globally recognized leader in cancer biology, genomic stability, and DNA repair mechanisms. His illustrious academic career spans decades, marked by groundbreaking research and influential leadership in the biomedical sciences.

EARLY ACADEMIC PURSUITS 🎓

Dr. Scully began his academic journey with a B.A. (Hons) in Medical Sciences and English from the University of Cambridge in 1983, followed by an M.B., B.S. in Clinical Sciences from University College London in 1986. He later earned an M.A. in Medical Sciences and English in 1990 and culminated his academic studies with a Ph.D. in Immunology under the mentorship of Herman Waldmann, F.R.S., at Cambridge in 1994. This interdisciplinary foundation laid the groundwork for his innovative approach to medical research.

PROFESSIONAL ENDEAVORS 🏥

Dr. Scully’s professional trajectory showcases his dedication to both clinical and academic excellence:

  • Postdoctoral Training (1994-1997): Focused on neoplastic disease mechanisms at the Dana-Farber Cancer Institute under Dr. David M. Livingston.
  • Harvard Medical School Faculty: Starting as an Instructor in 1997, he progressed through the ranks to become a Professor of Medicine in 2017. He has also served as faculty for the Ph.D. Program in Biological and Biomedical Sciences.
  • Administrative Leadership: Co-Director of the Program in DNA Repair and Genomic Instability at Beth Israel Deaconess Medical Center since 2018.

CONTRIBUTIONS AND RESEARCH FOCUS ON HOMOLOGOUS RECOMBINATION🔬

Dr. Scully's research explores the molecular mechanisms of DNA repair, genomic instability, and cancer biology, particularly in relation to BRCA genes. His work has illuminated pathways critical to understanding cancer development and therapy resistance. Highlights include:

  • Leading efforts in understanding genomic rearrangements and mutational signatures in cancer.
  • Driving advancements in genome editing technologies and their implications for cancer prevention and treatment.
  • Collaborative projects on BRCA-linked cancer prevention, including international coalitions.

IMPACT AND INFLUENCE 🌍

Dr. Scully has profoundly influenced the field through:

  • Organizing major scientific conferences such as the Keystone Symposium on Genomic Instability and DNA Repair (2023) and the FASEB Conference on Genetic Recombination (2026, 2028).
  • Serving as a chair and advisory member for numerous academic committees, fostering collaborations across global institutions.
  • His mentorship of emerging scientists, equipping the next generation with critical insights into genomic medicine.

ACADEMIC CITATIONS AND RECOGNITION 📚

Dr. Scully's publications are extensively cited, reflecting the high impact of his research in genomics and cancer biology. As a thought leader, he has contributed to the editorial boards and review committees of prestigious journals and funding agencies, ensuring the dissemination of transformative research.

LEGACY AND FUTURE CONTRIBUTIONS 🌟

Dr. Scully’s ongoing commitment to tackling genomic instability has positioned him as a pioneer whose work continues to inform cancer prevention and treatment strategies. His leadership in upcoming conferences and collaborative projects signifies a lasting legacy in the biomedical field.

OTHER NOTABLE ACHIEVEMENTS 🏅

  • Professional Societies: Member of esteemed organizations such as the American Association for Cancer Research and the Association of American Physicians.
  • Consultancy Roles: Provided expert guidance to biotech companies like Editas, Cyteir, and MoMa Therapeutics.
  • Grant Reviews and Committees: Regularly contributes to panels for the NIH, ACS, and Charles A. King Trust Fellowship Program.

NOTABLE PUBLICATIONS 📑

"One-ended and two-ended breaks at nickase-broken replication forks

  • Authors: Scully, R. , Walter, J.C. , Nussenzweig, A.
  • Journal: DNA Repair
  • Year: 2024

"Exploiting CRISPR/Cas9 to engineer precise segmental deletions in mouse embryonic stem cells

  • Authors: Elango, R. , Panday, A. , Willis, N.A. , Scully, R.
  • Journal: STAR Protocols
  • Year: 2022

"A modified CUT&RUN-seq technique for qPCR analysis of chromatin-protein interactions

  • Authors: Panday, A. , Elango, R. , Willis, N.A. , Scully, R.
  • Journal: STAR Protocols
  • Year: 2022

"The structure-specific endonuclease complex SLX4–XPF regulates Tus–Ter-induced homologous recombination

  • Authors: Elango, R. , Panday, A. , Lach, F.P. , Smogorzewska, A. , Scully, R.
  • Journal: Nature Structural and Molecular Biology
  • Year: 2022

"Recombination and restart at blocked replication forks

  • Authors: Scully, R. , Elango, R. , Panday, A. , Willis, N.A.
  • Journal: Current Opinion in Genetics and Development
  • Year: 2021

Siyang Liu | Bioinformatics | Best Researcher Award

Dr. Siyang Liu | Bioinformatics | Best Researcher Award

Sun Yat-Sen University | China

Author Profile

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📊 Dr. Siyang Liu: A Leader in Human Statistical Genetics and Bioinformatics

EARLY ACADEMIC PURSUITS 🎓

Dr. Siyang Liu began her academic journey with a Bachelor's in Ecology from Sun Yat-sen University’s Department of Life Science (2007-2011), where she received a China National Governmental Scholarship for her academic performance. Her interest in bioinformatics led her to pursue an MSc and subsequently a Ph.D. in Bioinformatics at the Bioinformatics Center, University of Copenhagen. Supervised by esteemed Professors Anders Krogh and Anders Albrechtsen, she developed a robust foundation in bioinformatics, further supported by the Danish Government Scholarship.

PROFESSIONAL ENDEAVORS 👩‍🔬

Dr. Liu is a tenured Associate Professor at the School of Public Health (Shenzhen), Sun Yat-sen University. She also holds concurrent posts as a Professor in Genomics at BGI-Shenzhen Life-Science Institute and a Professor in Bioinformatics at the Center of Excellence for Omics Research, Beijing Tiantan Hospital. Before her current role, she was a Senior Research Scientist at BGI-Shenzhen Life-Science Institute (2018–2021).

CONTRIBUTIONS AND RESEARCH FOCUS ON BIOINFORMATICS🔬

Dr. Liu's research group primarily investigates human statistical genetics and bioinformatics. Her expertise lies in analyzing genetic, environmental, and molecular factors that contribute to human diseases and traits. She uses a combination of bioinformatics, statistical, and machine learning techniques to study the molecular and systemic etiology of complex diseases. Her goal is to develop predictive and intervention models for these diseases, benefiting individuals and populations alike.

IMPACT AND INFLUENCE 🌎

Dr. Liu’s research has contributed significantly to the understanding of complex diseases through the development of genomic and bioinformatics models. Her work is widely recognized in high-impact journals, with over 20 publications as (co-)first or (co-)corresponding author in journals such as Cell, Nature, Blood, and Nature Communications. Her findings have provided insights into both the predictive modeling of disease and the influence of various genetic and environmental factors on human health.

ACADEMIC CITES 📚

Her body of work is extensively cited in the fields of genomics, bioinformatics, and statistical genetics. This academic impact underscores the relevance and influence of her contributions to scientific knowledge, with her publications helping to advance both the understanding and practical application of complex bioinformatics models.

LEGACY AND FUTURE CONTRIBUTIONS 🌟

With her innovative research, teaching roles, and mentorship, Dr. Liu is shaping the next generation of scientists in the field of bioinformatics and public health. Her leadership in multi-omics projects, especially in the areas of cerebrovascular disease and respiratory virus research, demonstrates her commitment to advancing medical genomics and bioinformatics. Her work in population genetics and epidemiology has already made a lasting impact, and her ongoing projects promise to deepen our understanding of the genetic and environmental factors impacting public health.

KEY PROJECTS, GRANTS, AND TEACHING CONTRIBUTIONS💡

Dr. Liu has secured significant funding from national and provincial sources, including the National Key Research and Development Program Project and the Guangdong Provincial Basic and Applied Basic Research Fund, among others. Dr. Liu teaches a range of subjects, including Medical Informatics, Bioinformatics, and Epidemiological Methods. Her courses prepare students for practical applications in computational biology and medical statistics.

OTHER NOTABLE ACHIEVEMENTS 🏆

  • Grants: Dr. Liu has secured several substantial research grants, including the National Key Research and Development Program Project on ischemic cerebrovascular disease and respiratory viruses, underscoring her expertise in multi-omics approaches.
  • Teaching: She is an active educator, teaching courses such as Fundamentals and Experiments in Medical Informatics, Python and Computational Biology, and Epidemiological Methods, shaping the next generation of bioinformatics and medical statistics experts.
  • Honors and Awards: Dr. Liu’s accolades include the Important Scientific Research Achievement Award at BGI-Shenzhen and recognition as a Shenzhen High-level Overseas Talent, highlighting her achievements and influence within the academic and research communities.

NOTABLE PUBLICATIONS 📑

"Genome-wide association studies of thyroid-related hormones, dysfunction, and autoimmunity among 85,421 Chinese pregnancies" 

  • Authors: Wei, Y. , Zhen, J. , Hu, L. , Xiong, L. , Liu, S
  • Journal: Nature Communications
  • Year: 2024

"Efforts made, challenges faced, and recommendations provided by stakeholders involved in mpox prevention and control in China: a qualitative study" 

  • Authors: Zhang, W. , Qi, X. , Han, B. , Meng, X. , Zou, H
  • Journal: Public Health
  • Year: 2024

"Genome-wide association study of maternal plasma metabolites during pregnancy" 

  • Authors: Liu, S. , Yao, J. , Lin, L. , Jin, X. , Liu, S.
  • Journal: Cell Genomics
  • Year: 2024

"Advances in using non-invasive prenatal testing to study genomics related to maternity" 

  • Authors: Jin, X. , Xu, X. , Zhou, A. , Wang, T. , Liu, H.
  • Journal: Cell Genomics
  • Year: 2024

"Utilizing non-invasive prenatal test sequencing data for human genetic investigation" 

  • Authors: Liu, S. , Liu, Y. , Gu, Y. , Jin, X. , Huang, S.
  • Journal: Cell Genomics
  • Year: 2024