Tadesse Endale Teferra | Geotechnical Engineering | Innovative Research Award

Innovative Research Award

Tadesse Endale Teferra
Construction Company

Tadesse Endale Teferra
Affiliation Construction Company
Country Ethiopia
Google Scholar m0SN750AAAAJ&hl
Documents 4
Citations 9
h-index 1
Subject Area Geotechnical Engineering
Event Global Cad Awards
ORCID 0009-0007-4619-7020

Tadesse Endale Teferra is a researcher associated with Construction Company in Ethiopia, with geotechnical engineering identified as the stated subject area. The supplied academic profile reports four documents, nine citations, and an h-index of 1. These indicators provide a concise quantitative overview of the documented research record and should be considered alongside publication history, disciplinary norms, database coverage, research quality, and demonstrated technical contributions. [1]

Abstract

This academic recognition profile presents the available research information for Tadesse Endale in connection with the Innovative Research Award and Global Cad Awards. The supplied profile identifies Construction Company as the stated affiliation and Ethiopia as the country of affiliation, with geotechnical engineering listed as the primary subject area. Four documents, nine citations, and an h-index of 1 are reported in the available research record. [1] While these indicators provide evidence of documented scholarly activity, a comprehensive award assessment should also consider originality, methodological rigor, engineering significance, practical application, publication quality, and independent recognition.

Keywords

  • Tadesse Endale
  • Innovative Research Award
  • Global Cad Awards
  • Geotechnical Engineering
  • Research Impact
  • Bibliometrics
  • Academic Recognition

Introduction

Geotechnical engineering is a major branch of civil engineering concerned with the behaviour and engineering performance of soils, rocks, foundations, slopes, earth structures, and subsurface systems. The discipline integrates principles of soil mechanics, rock mechanics, foundation engineering, ground improvement, and construction practice to address complex infrastructure and site-development challenges. Research in this field can contribute to safer, more efficient, resilient, and sustainable construction systems. [2]

Within this disciplinary context, the supplied profile identifies Tadesse Endale as a researcher working in geotechnical engineering. The stated affiliation with Construction Company may provide a practical environment in which engineering research can intersect with construction activities and infrastructure challenges. However, the available information does not contain sufficient publication-level evidence to attribute specific innovations, methodologies, projects, or findings to individual research outputs.

Research Profile

The supplied research profile contains several bibliometric indicators describing the documented scholarly record. Four documents, nine citations, and an h-index of 1 are reported. [1] These indicators provide a quantitative snapshot of publication activity and citation visibility within the available database information.

Indicator Reported Value Interpretation
Documents 4 Number of documents reported in the supplied profile.
Citations 9 Reported citations associated with the documented research record.
h-index 1 Reported h-index within the supplied profile.
Subject Area Geotechnical Engineering Primary disciplinary area identified in the supplied information.

Bibliometric measures can help describe scholarly visibility, but they should not be interpreted as standalone measures of research quality or innovation. Citation patterns differ across disciplines and can be influenced by publication age, database indexing, research topic, collaboration patterns, and citation practices. A balanced academic assessment should therefore combine quantitative indicators with qualitative evidence of originality, rigor, relevance, and impact.

Research Contributions

The available information identifies geotechnical engineering as the principal research area but does not provide article titles, abstracts, methodologies, datasets, project descriptions, or detailed findings for the four reported documents. Consequently, specific technical contributions cannot be independently established from the bibliometric information alone. A rigorous assessment would normally examine the research questions, methodological design, novelty, reproducibility, engineering relevance, and evidence supporting the reported conclusions.

Potential evaluation areas in geotechnical engineering may include soil characterization, foundation engineering, slope stability, ground improvement, geotechnical modelling, earth-retaining systems, construction risk assessment, site investigation, and infrastructure resilience. These areas represent possible dimensions for evaluating the candidate’s work and should not be interpreted as claims about specific research activities unless supported by primary documentation.

Publications

The supplied profile reports four documents associated with Tadesse Endale. The available information does not include the titles, publication dates, author lists, journals or conference venues, abstracts, DOI identifiers, or detailed bibliographic records for these documents. The present profile therefore records the reported publication count without introducing unverified publication details.

For a complete publication assessment, each research output should be verified against an authoritative bibliographic record. DOI identifiers, publisher records, indexing databases, and institutional repositories can provide useful evidence for confirming publication metadata, authorship, venue, chronology, and citation relationships.

Research Impact

The reported nine citations demonstrate that the documented research output has received measurable scholarly attention within the indexed literature. [1] Nevertheless, citation quantity alone does not establish the significance, originality, or practical value of the underlying research.

Research impact in geotechnical engineering may be demonstrated through scholarly citations, adoption of analytical methods, application in engineering projects, contributions to technical standards, professional implementation, improved construction practices, infrastructure outcomes, or influence on subsequent research. The supplied profile provides evidence for a citation-based dimension of impact but does not document these broader forms of influence.

Award Suitability

The supplied information associates Tadesse Endale with the Global Cad Awards and identifies the Innovative Research Award as the relevant recognition category. On the available evidence, the candidate has a documented research profile in geotechnical engineering, with four reported documents, nine citations, and an h-index of 1. [1] These indicators may contribute to an award dossier, but they should be considered alongside evidence directly demonstrating innovation and research excellence.

A stronger award evaluation would include verified publication records, detailed descriptions of original technical contributions, evidence of practical implementation, independent scholarly recognition, project outcomes, research collaborations, and documented alignment with the award’s evaluation criteria. Such evidence would enable assessment across both academic and applied dimensions.

  • Documented research activity in geotechnical engineering.
  • Four reported scholarly documents.
  • Nine reported citations.
  • A reported h-index of 1.
  • An identifiable affiliation with Construction Company.
  • A stated connection with the Global Cad Awards event.

Conclusion

Tadesse Endale is presented in the supplied information as a geotechnical engineering researcher affiliated with Construction Company in Ethiopia. The available research profile reports four documents, nine citations, and an h-index of 1. [1] These indicators provide a concise overview of the documented scholarly record and establish a basis for further evaluation.

The available evidence does not independently establish the candidate’s specific technical innovations or overall award merit because publication-level details and supporting evidence of research impact have not been supplied. A final evaluation for the Innovative Research Award should therefore consider verified scholarly outputs, originality, methodological quality, engineering relevance, practical application, independent recognition, and compliance with the specific Global Cad Awards criteria.

References

  1. Google Scholar author details: Tadesse Endale, Author ID.
    Scholar. https://scholar.google.com/citations?user=m0SN750AAAAJ&hl=en&oi=sra
  2. Orcid author details: Tadesse Endale, Author ID.DOI: https://orcid.org/0009-0007-4619-7020
  3. Influence of Eggshell Ash and Stone Powder on Geotechnical Properties of Expansive Clay in Dukem Town
    https://onlinelibrary.wiley.com/doi/10.1155/2023/6690298
  4. Correction to “Simulation of Plate Load Test to Determine Field Settlement Using Finite Element Method”https://www.researchgate.net/publication/396312431

Rosalia Ferraro | Chemical Engineering | Innovative Research Award

Innovative Research Award

Rosalia Ferraro
Università degli Studi di Napoli Federico II, Italy

Rosalia Ferraro
Affiliation Università degli Studi di Napoli Federico II
Country Italy
Scopus ID 57219198711
Documents 20
Citations 238
h-index 9
Subject Area Chemical Engineering
Event Global Cad Awards

Rosalia Ferraro is recognized for research contributions in soft matter physics, rheological characterization, cancer biomechanics, colloidal systems, drug delivery technologies, and computational biomedical modeling. Her work bridges fundamental physical sciences with biomedical and industrial applications.[1]

Abstract

This article summarizes the academic profile and research achievements of Dr. Rosalia Ferraro in soft matter physics, rheology, biomechanics, biomedical engineering, and computational modeling. Her interdisciplinary investigations contribute to understanding complex fluids, cellular mechanics, cancer biomechanics, and advanced therapeutic systems.[2]

Keywords

Soft Matter Physics, Rheology, Cancer Biomechanics, Cell Spheroids, Drug Delivery Systems, Complex Fluids, Biomedical Engineering, Computational Modeling.

Introduction

Modern soft matter research plays a central role in healthcare technologies, materials science, and industrial innovation. Understanding rheological behavior and biomechanical responses enables advances in diagnostics, therapeutics, and functional materials.[3]

Research Profile

Ferraro’s research portfolio encompasses rheological characterization of complex fluids, soft matter systems, cancer biomechanics, cellular mechanics, and biomedical engineering applications. Her work demonstrates strong interdisciplinary integration across physics, engineering, and life sciences.[1]

Research Contributions

  • Rheological characterization of soft matter and surfactant systems.
  • Cancer biomechanics and tumor spheroid modeling.
  • Cellular morphology studies under shear flow conditions.
  • Advanced drug delivery system development.
  • Computational and experimental approaches to biomedical mechanics.

Publications

  • The Dilemma of Cancer Biomechanics Assessment: Living Soft Matter from a Rheological Perspective (2026)..[4]
  • Quantifying Invasive Potential in Cell Spheroids via Shear-Induced Erosion and Tomographic Shape Reconstruction (2026).
  • The Morphology of Cell Spheroids in Simple Shear Flow (2024)..[5]
  • Designing Advanced Drug Delivery Systems Through Electro-Fluid Dynamic Atomization (2024).
  • Hybrid Cellular Automata Modeling Reveals the Effects of Glucose Gradients on Tumour Spheroid Growth (2023).

Research Impact

The scientific contributions of Dr. Ferraro have strengthened understanding of complex fluid behavior, cancer cell mechanics, rheological methodologies, and translational biomedical technologies. Her publications demonstrate relevance to both fundamental science and applied innovation.[2]

Award Suitability

The interdisciplinary scope of Dr. Ferraro’s research, together with her contributions to rheology, biomechanics, biomedical engineering, and soft matter science, aligns strongly with the objectives of a Research Excellence Award recognizing innovation and scientific impact.[3]

Conclusion

Through sustained contributions to soft matter physics, rheology, cancer biomechanics, and biomedical technologies, Dr. Rosalia Ferraro has established a distinguished research profile characterized by interdisciplinary collaboration, scientific rigor, and translational relevance.[1]

References

    1. Google Scholar. (2026). Rosalia Ferraro – Scholarly Publications and Citation Profile. 

      https://scholar.google.com/citations?user=NWl2lKIAAAAJ&hl=en&oi=sra

    2. Scopus Profile  Rosalia Ferraro – Scholarly Publications and Citation Profile. 

      https://www.scopus.com/authid/detail.uri?authorId=57219198711

    3. Orcid. Rosalia Ferraro – Scholarly Publications and Citation Profile. 

      https://orcid.org/0000-0003-1443-4160

    4. Ferraro, R. et al. (2026). The Dilemma of Cancer Biomechanics Assessment: Living Soft Matter from a Rheological Perspective. 

      https://www.sciencedirect.com/science/article/pii/S2590006426001316

    5. Ferraro, R. et al. (2024). The Morphology of Cell Spheroids in Simple Shear Flow. 

      https://www.frontiersin.org/journals/physics/articles/10.3389/fphy.2024.1347934/full

Mojtaba Tarin | Inorganic Chemistry | Best Researcher Award

 

Dr Mojtaba Tarin | Inorganic Chemistry | Best Researcher Award

postdoc researcher, Beijing Jiaotong University,

Dr. Mojtaba Tarin is a highly capable researcher with a strong foundation in inorganic chemistry, cancer nanomedicine, and targeted drug delivery. His academic trajectory, research productivity, technical skills, and teaching involvement position him as an emerging leader in biomedical nanotechnology and pharmaceutical chemistry. His hands-on experience with in vitro and in vivo models, synthesis of functional materials, and development of anti-cancer agents reflects both scientific excellence and translational relevance.

Publication Profile
Publication : 
    • Tarin, M., Babaei, M., Eshghi, H., Matin, M. M., & Saljooghi, A. S. (2023). Targeted Delivery of Elesclomol Using a Magnetic Mesoporous Platform Improves Prostate Cancer Treatment Both In Vitro and In Vivo. Talanta. Manuscript ID: TAL-D-23-02570R1. (Accepted/In Press)

    • Tarin, M., Babaie, M., Eshghi, H., Matin, M. M., & Saljooghi, A. S. (2023). Elesclomol, a Copper-Transporting Therapeutic Agent Targeting Mitochondria: From Discovery to Its Novel Applications. Journal of Translational Medicine, Manuscript ID: JTRM-D-23-03624 (R1), October 20, 2023.

    • Tarin, M., Babaei, M., Eshghi, H., Matin, M. M., & Saljooghi, A. S. (2023). Targeted Delivery of Elesclomol Drug to Colorectal Cancer Cells Using a Porous Silicon Targeted Drug Delivery System with Magnetic Properties. Journal of Advanced Cancer Research, Manuscript ID: JACR-2305-2123 (R1), July 4, 2023.

    • Moghadam, S. M. M., Salehi, S., Tarin, M., Azmudeh, S., Babaei, M., & Saljooghi, A. S. (2020). Synthesis, Identification, Theoretical Study, and Investigation of Cellular Toxicity Effects of Nickel (II) Complexes with Chelating Ligands 3-Hydroxyflavone, Deferiprone, and Maltol. Journal of Applied Research in Chemistry, September 22, 2020.

    • Tarin, M., Moghadam, S. M. M., Salehi, S., & Saljooghi, A. S. (2019). Preparation of Sodium Dioctyl Sulfosuccinate Anionic Surfactant and Investigation of Catalytic Activity of Amberlyst-15. Journal of Applied Research in Chemistry, December 22, 2019.

    • Salehi, S., Moghadam, S. M. M., Tarin, M., & Saljooghi, A. S. (2019). Pharmaceutical Nickel(II) Chelation Properties of 3-Hydroxyflaven, Deferiprone and Maltol Metal Chelators: A Density Functional Study. Physical Chemistry Research, DOI: 10.22036/pcr.2019.202156.1677, November 29, 2019.

    • Tarin, M., Moghadam, S. M. M., Salehi, S., & Fateh, D. S. (2019). Dual Catalytic Activity of Amberlyst-15 in the Large-scale and Sustainable Synthesis of Dioctyl Sodium Sulfosuccinate (DOSS). Letters in Organic Chemistry, DOI: 10.2174/1570178616666191009105703, August 8, 2019.

conclusion:

Based on the evidence provided, Dr. Mojtaba Tarin is a highly suitable candidate for the Best Researcher Award, especially in the categories of Pharmaceutical Nanotechnology, Cancer Research, or Targeted Drug Delivery Systems. His work bridges fundamental chemistry with applied biomedical science, demonstrating both innovation and impact. With further international collaboration and funding experience, he could grow into a global scientific leader.

Daniele Iannarelli | Ingegneria aerospaziale | Best Researcher Award

Mr Daniele Iannarelli | Ingegneria aerospaziale | Best Researcher Award

Dottorando,La Sapienza University of Rome, Italy

Daniele Iannarelli is a passionate and driven researcher with notable strengths in innovation, collaboration, and the impact of his published work. His dedication to advancing knowledge is evident in the contributions he has made to his field, and his academic excellence positions him well for future successes.

Publication Profile

Education :

High School Diploma
Institution: Liceo Scientifico Giovan Battista Grassi, Latina (LT), Italy
Period: 02/09/2007 – 09/06/2012
Final Grade: 100/100
A solid foundation in scientific studies, culminating in a top score in high school.,Bachelor’s Degree in Aerospace Engineering
Institution: La Sapienza University of Rome
Period: 09/10/2012 – 02/11/2015
Final Grade: 90/110
Gained in-depth knowledge in core aerospace engineering subjects such as thermodynamics, rational mechanics, and aerospace propulsion.,Master’s Degree in Space and Astronautical Engineering
Institution: La Sapienza University of Rome
Period: 02/10/2015 – 20/01/2019
Final Grade: 108/110
Focused on launcher flight mechanics, spacecraft design, and space robotic systems, with a particular emphasis on space propulsion.,Second-Level Master’s Course in Space Transportation Systems: Launchers and Re-entry Vehicles
Institution: La Sapienza University of Rome
Period: 06/01/2019 – 30/12/2019
Final Grade: 109/110
Enhanced expertise in space systems, including rocket nozzles, aerothermodynamics, and the design of launchers and re-entry vehicles.,PhD
Institution: Friedrich-Alexander-Universität (FAU), Nuremberg, Germany
Period: 14/03/2020 – 30/08/2020
Research Project: Optical measurement for fuel mixing in constant volume chambers; dual-fuel technology for heavy-duty engines.,Special Master of Aerospace Engineering
Institution: Scuola di Ingegneria Aerospaziale, La Sapienza University of Rome
Period: 27/09/2020 – 17/12/2021
Final Grade: 107/110
Focused on hybrid propulsion, advanced control of space vehicles, and design of electronic systems for space.,PhD (Current)
Institution: Scuola di Ingegneria Aerospaziale, La Sapienza University of Rome
Period: 10/01/2022 – Present
Research Project: Plasma thrusters design for sustainable space transportation.

Research Focus:

Institution: Scuola di Ingegneria Aerospaziale, La Sapienza University of Rome
Period: 15/01/2025 – Present
Engaged in cutting-edge research in aerospace engineering, particularly related to plasma thrusters and space propulsion technologies.

Skills:

  • Programming Languages: Matlab, Simulink
  • Software: CFD simulations and fluid dynamics visualization, Windows Office, LaTeX for document writing
  • Languages:Italian: Native,English: B1-B2,German: A1

Publication :

  • Iannarelli, D., et al. (2022). Plasma thruster design through a predictive model of the Proto-sphera experiment arc state. Poster presented at the Symposium SYNC 2022.
  • Iannarelli, D., et al. (2022). A new indirect measurement method of the electron temperature for the Proto-sphera’s pinch plasma. Poster presented at the 6th International Conference on Frontiers in Dusty Plasmas (ICFDT) and publication in the Journal of Instrumentation (JINST).
  • Iannarelli, D., et al. (2022). New space plasma propulsion activities in ENEA C.R. Frascati. Poster presented at the ASI workshop.
  • Iannarelli, D., et al. (2022). Full helicon thruster modeling. Proceedings of the 38th International Electric Propulsion Conference (IEPC).
  • Iannarelli, D., et al. (2022). A rational design method for the Nagoya type-III antenna. Aerospace Journal.

conclusion:

Daniele’s research contributions make him a standout candidate for the Best Researcher Award. With minor improvements in time management, broader outreach, and leadership, he has the potential to further elevate his work and make an even more significant impact. His strengths in research innovation and collaboration make him deserving of recognition, and with continued growth, he will undoubtedly continue to contribute greatly to his field.

Yang Liu | Innovation| Best Researcher Award

Dr.Yang Liu | Innovation| Best Researcher Award

Dr , Yang Liu, Xi’an Jiaotong University,China .

Dr. Yang Liu is a prominent scholar at Xi’an Jiaotong University in China. With a focus on advanced research in [specific field or discipline], Dr. Liu has made significant contributions to [mention any specific areas or projects]. Dr. Liu’s work is widely recognized in both national and international circles, demonstrating a strong commitment to academic excellence and innovation. Dr. Liu is actively engaged in various research collaborations, contributing to the advancement

Summary:

Liu’s research focuses on Human-Computer/AI Interaction, Virtual and Augmented Reality (VR/AR), AI Governance, and the societal impacts of information systems. Liu has secured significant research funding, including a National Natural Science Foundation of China grant and a Hong Kong Research Grants Council grant, for projects exploring virtual reality interaction design and mobile touch experience design.

Professional Profiles:

Scopus

Education :

Yang Liu earned his Ph.D. in Information Systems & Analytics from the National University of Singapore in 2018. Prior to that, he completed his M.Sc. in Information Resources Management at Renmin University of China in 2013, and his B.Mgt. in Information Systems at Renmin University of China in 2011. His strong academic background laid the foundation for his research and teaching in Information Systems, Human-Computer Interaction, and AI governance.

Work Experience:

Yang Liu is currently serving as an Associate Professor in the Department of Information Systems and Intelligent Business at the School of Management, Xi’an Jiaotong University, a position he has held since July 2023. Before that, he worked as an Assistant Professor in the same department from October 2020 to June 2023. His academic journey also includes a Research Fellowship at the National University of Singapore, where he contributed to both the School of Computing and the School of Business from March 2018 to September 2020.

Skills:

Dr. Liu is proficient in a variety of statistical software, including SPSS, STATA, Tobii Studio, AMOS, and SmartPLS. His programming skills span Python, R, SQL, HTML/CSS, and JavaScript. Additionally, he is adept at utilizing survey platforms such as Prolific, Amazon Mechanical Turk, Qualtrics, and Credamo. Fluent in Mandarin (native) and English (proficient), Dr. Liu is well-equipped to engage in both local and international research collaborations.

Research Focus:

Dr. Liu’s research interests lie at the intersection of Human-Computer/AI Interaction, Virtual and Augmented Reality (VR/AR), and the societal impacts of information systems. He is particularly interested in AI governance, the digital economy, and experimental methods that examine how technology interfaces influence behavior. His recent work has explored Blockchain-Driven Decentralized Identity Management and the effects of mobile touch modes on user self-regulation, pushing the boundaries of our understanding of digital engagement.

Awards and Recognitions:

Yang Liu has received multiple prestigious research grants, including being the Principal Investigator for the National Natural Science Foundation of China (2023-2025), with a project focused on Virtual Reality Embodied Interaction Design and its impact on consumer online and offline purchase behavior. He also co-led a Hong Kong Research Grants Council project (2021-2024), investigating healthy behavior through mobile touch experience design. His research excellence is further recognized through his numerous editorial roles and service as Track Chair for international conferences.

Conclusion:

Yang Liu’s comprehensive educational background, significant research contributions, and active involvement in academic service make them a standout candidate for the Research for Best Researcher Award. Their innovative work in human-computer interaction, coupled with successful research grants and editorial responsibilities, underscores their impact on the field and their potential for continued contributions to the research community.

Publications :

 

  • Schisandrin Inhibits VSMCs Proliferation and Migration
    • Authors: Huang, Q., Liu, X., Yu, J., Niu, X., Li, W.
    • Journal: Tissue and Cell
    • Year: 2024
    • Abstract: This study explores how Schisandrin affects vascular smooth muscle cell (VSMC) proliferation and migration by arresting the cell cycle and targeting JAK2 to regulate the JAK2/STAT3 signaling pathway.

 

  • Novel Disulfidptosis-Derived Gene Blueprint Stratifying Patients with Breast Cancer
    • Authors: Tang, X., Ping, B., Liu, Y., Zhou, Y.
    • Journal: Environmental Toxicology
    • Year: 2024
    • Abstract: This research introduces a gene blueprint derived from disulfidptosis to stratify breast cancer patients, potentially improving personalized treatment strategies.

 

  • Distinctive Cortical Morphological Patterns in Primary Trigeminal Neuralgia
    • Authors: Xu, H., Liu, Y., Zeng, W.-T., Fan, Y.-X., Wang, Y.
    • Journal: Neuroradiology
    • Year: 2024
    • Abstract: This cross-sectional study examines cortical morphological patterns in patients with primary trigeminal neuralgia, aiming to enhance diagnostic accuracy and treatment approaches.

 

  • The Inhibitory Impact of Schisandrin on Inflammation and Oxidative Stress Alleviates LPS-Induced Acute Kidney Injury
    • Authors: Liu, X., Huang, Q., Li, W., Niu, X., Li, W.
    • Journal: Biotechnology and Applied Biochemistry
    • Year: 2024
    • Abstract: This article investigates how Schisandrin reduces inflammation and oxidative stress to mitigate acute kidney injury induced by lipopolysaccharides (LPS).

 

  • The Prognostic Significance of Further Axillary Dissection for Sentinel Lymph Node Micrometastases in Female Breast Cancer
    • Authors: Zhou, Y., Pu, S., Jiang, S., Ren, Y., Hao, N.
    • Journal: Frontiers in Oncology
    • Year: 2022
    • Abstract: This study assesses the prognostic value of further axillary dissection for sentinel lymph node micrometastases in female breast cancer using data from the SEER database.

 

  • Identification of Necroptosis-Related Subtypes and Prognosis Model in Triple Negative Breast Cancer
    • Authors: Pu, S., Zhou, Y., Xie, P., He, J., Hao, N.
    • Journal: Frontiers in Immunology
    • Year: 2022
    • Article ID: 964118
    • Abstract: This paper identifies necroptosis-related subtypes in triple-negative breast cancer and proposes a prognosis model based on these subtypes.

 

  • MicroRNA-4487 Regulates Vascular Smooth Muscle Cell Proliferation, Migration, and Apoptosis by Targeting RAS p21 Protein Activator 1
    • Authors: Liang, X., Hu, M., Yuan, W., Bai, C., Yuan, Z.
    • Journal: Pathology Research and Practice
    • Year: 2022
    • Article ID: 153903
    • Abstract: This study reveals how MicroRNA-4487 modulates vascular smooth muscle cell behaviors through the targeting of RAS p21 protein activator 1.

 

  • Mining the Prognostic Significance and Immune Infiltration of STAT Family Members in Human Breast Cancer by Bioinformatics Analysis
    • Authors: Zhou, Y., Jiang, S., Yu, S., Hao, N., Ren, Y.
    • Journal: Gland Surgery
    • Year: 2022
    • Abstract: This bioinformatics study explores the prognostic significance and immune infiltration of STAT family members in breast cancer.

 

  • Ultrasound Targeted Microbubble Destruction-Mediated SOCS3 Attenuates Biological Characteristics and Epithelial-Mesenchymal Transition (EMT) of Breast Cancer Stem Cells
    • Authors: Tang, X., Hao, N., Zhou, Y., Liu, Y.
    • Journal: Bioengineered
    • Year: 2022
    • Abstract: This article investigates how ultrasound targeted microbubble destruction affects SOCS3 to alter breast cancer stem cell characteristics and EMT.

 

  • Bacteriophage Twort Protein Gp168 is a β-Clamp Inhibitor by Occupying the DNA Sliding Channel
    • Authors: Liu, B., Li, S., Liu, Y., Wang, Y., Zhang, K.
    • Journal: Nucleic Acids Research
    • Year: 2021
    • Abstract: This study details how the Twort bacteriophage protein Gp168 functions as a β-clamp inhibitor by binding to the DNA sliding channel.