Dr. Muhammad Shafiq | Authentic Leadership |Best Researcher Award

Dr. Muhammad Shafiq | Authentic Leadership |Best Researcher Award

Shantou University Medical College, China

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🎓Early Academic Pursuits 

Muhammad Shafiq embarked on his academic journey with a strong foundation in veterinary medicine. He earned his Doctor of Veterinary Medicine (D.V.M) degree from The University of Agriculture Peshawar, Pakistan, in 2014. His passion for animal sciences propelled him to pursue a Master’s degree at the same institution, which he completed in 2016. Muhammad’s drive for knowledge and research excellence led him to Nanjing Agricultural University in China, where he obtained his Ph.D. in Basic Veterinary Medicine in 2019. His doctoral studies focused on molecular pharmacology and antimicrobial resistance in bacteria, laying the groundwork for his future research endeavors.

🏢Professional Endeavors 

Muhammad Shafiq’s professional career is marked by significant roles in research and academia. His early experience as a Research Assistant at The University of Agriculture Peshawar involved investigating passive immunity transfer in neonatal calves and the seropositivity of brucellosis in humans and livestock. He further honed his skills during an internship at the Veterinary Research Institute Peshawar, where he conducted laboratory tests, diagnoses, and treatments for various animal diseases.

In 2020, Muhammad joined the National Agricultural Research Centre (NARC) in Islamabad, Pakistan, as a Researcher. He later moved to Shantou University Medical College in China, where he currently serves as a Senior Researcher at the Research Institute of Clinical Pharmacy. His postdoctoral fellowship at Shantou University Medical College under Prof. Dr. Xiaoyang Jiao focused on genomic and metagenomic characterization of antibiotic resistomes and the molecular epidemiology of antibiotic resistance in clinical isolates and environmental samples.

🔬Contributions and Research Focus 

Muhammad Shafiq’s research primarily revolves around Antimicrobial Resistance (AMR) in humans, animals, and the environment. He employs genomic and metagenomic approaches to identify resistant pathogens and understand the mechanisms driving antibiotic resistance. His notable research includes:

  • Investigating antibiotic resistomes from clinical isolates and urban sewages.
  • Studying molecular epidemiology and resistance mechanisms in Escherichia coli and Burkholderia pseudomallei.
  • Characterizing antibiotic resistance in gram-positive and gram-negative bacteria from various sources.
  • Exploring antimicrobial activities of novel plant extracts.

His research not only contributes to the scientific community but also aims to implement extensive surveillance networks to monitor and prevent future infectious disease outbreaks.

🏆Accolades and Recognition 

Muhammad Shafiq’s dedication to research and excellence has earned him several prestigious awards and honors. He was awarded the Shantou High-Level Talent Certificate by the Shantou Municipal Human Resources and Social Security Bureau in 2022. His projects have received significant funding, including a two-year project worth 400,000 yuan from Shantou University Medical College and a one-year project from the National Natural Science Foundation of China (NSFC) worth 200,000 yuan. His achievements during his doctoral studies include the Excellent Student Award at Nanjing Agricultural University and the Prime Minister Laptop Award from the Higher Education Commission of Pakistan.

🌟Impact and Influence 

Muhammad Shafiq’s impact extends beyond his research contributions. He has played an active role in academia by teaching courses on Veterinary Pharmacology and Toxicology at Nanjing Agricultural University and conducting English Scientific Writing courses at Shantou University Medical College. His mentorship has guided the academic journeys of several master’s and bachelor’s students, particularly in the field of antibiotic resistance in food-producing animals.

In addition to his teaching and research, Muhammad has made significant editorial contributions. He serves as a guest editor and review editor for various reputable journals, including Frontiers in Cellular Infection and Microbiology, Frontiers in Microbiology, and International Journal of Environmental Research and Public Health. His professional memberships include affiliations with the American Society of Microbiology and the Medical Microbiology & Infectious Diseases Society of Pakistan.

🔮Legacy and Future Contributions 

Muhammad Shafiq’s legacy in the field of antimicrobial resistance research is built on a foundation of rigorous academic pursuit, impactful research, and dedicated mentorship. His current research aims to address the occurrence and fate of antibiotics and antimicrobial-resistant pollutants in wastewater, with a focus on preventing future infectious disease outbreaks. By leveraging genomic and metagenomic technologies, he continues to push the boundaries of understanding in the field of AMR.

As he moves forward, Muhammad Shafiq is poised to make even greater contributions to global health and environmental safety. His work not only advances scientific knowledge but also has practical implications for public health policies and antibiotic stewardship programs. His vision for a comprehensive surveillance network highlights his commitment to mitigating the impact of antimicrobial resistance on a global scale.

Publications 

Integrative metagenomic dissection of last-resort antibiotic resistance genes and mobile genetic elements in hospital wastewaters

    • Authors: Muhammad Shafiq, Xiaoling Guo, Meimei Wang, Hazrat Bilal, Li Xin, Yumeng Yuan, Fen Yao, Taha Majid Mahmood Sheikh, Muhammad Nadeem Khan, Xiaoyang Jiao
    • Journal: Science of The Total Environment
    • Year: 2024

Distribution of Aspergillus species and risk factors for aspergillosis in mainland China: a systematic review

    • Authors: Sabir Khan, Hazrat Bilal, Muhammad Shafiq, Dongxing Zhang, Muhammad Awais, Canhua Chen, Muhammad Nadeem Khan, Qian Wang, Lin Cai, Rehmat Islam et al.
    • Journal: Therapeutic Advances in Infectious Disease
    • Year: 2024

The Pathogenesis of Foot-and-Mouth Disease Virus Infection: How the Virus Escapes from Immune Recognition and Elimination

    • Authors: Abdul Kabir, Kalim Ullah, Asghar Ali Kamboh, Muhammad Abubakar, Muhammad Shafiq, Li Wang
    • Journal: Archivum Immunologiae et Therapiae Experimentalis
    • Year: 2024

Epidemiology and antifungal susceptibilities of clinically isolated Aspergillus species in South China

    • Authors: Hazrat Bilal, Dongxing Zhang, Muhammad Shafiq, Muhammad Nadeem Khan, Canhua Chen, Sabir Khan, Lin Cai, Rahat Ullah Khan, Haibin Hu, Yuebin Zeng
    • Journal: Epidemiology and Infection
    • Year: 2023

Metagenomic evidence for antibiotics-driven co-evolution of microbial community, resistome and mobilome in hospital sewage

    • Authors: Sun, J., Yuan, Y., Cai, L., Zeng, M., Li, X., Yao, F., Chen, W., Huang, Y., Shafiq, M., Xie, Q. et al.
    • Journal: Environmental Pollution
    • Year: 2023

Dr. Aleksandra Kravtsova | Authentic Leadership | Best Scholar Award

Dr. Aleksandra Kravtsova | Authentic Leadership | Best Scholar Award

Kutateladze Institute of Thermophysics of the Siberian Branch of the Russian Academy of Sciences, Russia

🔗 Profile

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🎓Early Academic Pursuits

Aleksandra Yu. Kravtsova embarked on her academic journey with a strong foundation in mathematics and mechanics. She graduated from Novosibirsk State University in 2008, specializing in Mathematics (Mechanics). Her early education laid the groundwork for her future research in experimental fluid mechanics, focusing on the application of optical methods such as Particle Image Velocimetry (PIV) and Particle Trekking Velocimetry (PTV). These tools became essential in her subsequent work, providing critical insights into complex fluid dynamics phenomena.

🧪Professional Endeavors 🧪

Aleksandra’s professional career began at the Center of Virology and Biotechnology “Vector” in the Novosibirsk region, where she worked as an engineer from 2004 to 2008. Her transition to the Institute of Thermophysics, Russian Academy of Science (IT SB RAS), marked a significant shift towards research in fluid mechanics. From 2009 to 2010, she served as an engineer at IT SB RAS before progressing to a post-graduate student position from 2010 to 2013. Her dedication and passion for research culminated in her earning a Ph.D. in physicomathematical sciences in 2018, with a thesis titled “Experimental investigation of cavitation flow nearest two-dimensional hydrofoils.”

Following her Ph.D., Aleksandra continued her ascent in the research field, taking on roles of increasing responsibility at IT SB RAS. She worked as a Junior Research Scientist from 2013 to 2018, and then as a Research Scientist until 2022. Concurrently, she was appointed a Senior Research Scientist at Novosibirsk State University (NSU) in 2019, and in 2022, she assumed a similar role at IT SB RAS.

🔬Contributions and Research Focus 

Aleksandra’s research has primarily focused on experimental fluid mechanics, particularly using advanced optical methods. Her work includes the study of cavitation, hydrodynamics in micro- and macroscale flow channels, and the physical processes in vortex flows, including cavitation and polyphase flow. She has coordinated several significant research projects funded by the Russian Science Foundation (RSF) and the Russian Foundation for Basic Research (RFBR). Notable among these are:

  • RSF № 19-79-10217 (2019-2024): Investigation of problems of occurrence and control of hydrodynamic cavitation at mini- and microscale.
  • RFBR №16-31-00149 (2016-2017): The study of the flow turbulent structure under external perturbation influences using PIV and Laser-Induced Fluorescence.
  • Special Federal Programme №14.132.21.1725 (2012-2013): Investigation of the influence of the scale factor on the spatial structure and dynamics of cavitation.

Aleksandra has also been a researcher on several other projects, such as the RSF grants focusing on vortex phenomena in hydraulic turbines and the development of methods for controlling heat and mass transfer processes during phase transitions and chemical reactions.

🏆Accolades and Recognition 

Aleksandra’s work has not gone unnoticed. She has received numerous awards and honors, including:

  • Gratitude of the Novosibirsk Region Government (2018): For her contributions to science.
  • Scholarship of the Russian Federation Government in the field of science and energy (2013-2018).
  • Certificate of Top Science at the International Conference “Lomonosov Readings in Altai” (2017).
  • Scholarship of the Novosibirsk Region Government, Russian Federation in the power engineering area (2013).

🌍Impact and Influence 

Aleksandra’s research has significantly influenced the field of experimental fluid mechanics. Her investigations into cavitation and hydrodynamics have provided valuable insights into optimizing fluid flow in various engineering applications. Her publications in high-impact journals, such as Physics of Fluids, Scientific Reports, and Experimental Thermal and Fluid Science, underscore her contributions to the scientific community. Her work on cavitation and flow dynamics has practical implications in industries ranging from aerospace to renewable energy.

🚀Legacy and Future Contributions 🚀

With over 40 journal publications and more than 70 other publications, Aleksandra’s academic output is impressive. Her research has achieved an H-index of 7, reflecting the high citation rate and impact of her work. Moving forward, Aleksandra is poised to continue her pioneering research, particularly in the realm of fluid mechanics at the micro and macro scales. Her ongoing projects promise to yield further advancements in understanding and controlling complex fluid dynamics, ensuring her legacy as a leading researcher in her field.

Aleksandra Yu. Kravtsova’s career is a testament to her dedication, expertise, and impact on the scientific community. Her work not only advances theoretical understanding but also offers practical solutions to real-world engineering challenges, paving the way for future innovations in fluid mechanics and related disciplines.

📚 Publications