Mohamad-Reza Aghanoori | Neurodegenerative Disorders | Best Researcher Award

Dr. Mohamad-Reza Aghanoori | Neurodegenerative Disorders | Best Researcher Award

Dr. Mohamad-Reza Aghanoori, National Institute of Genetic Engineering and Biotechnology,  Iran.

Dr. Mohamad-Reza Aghanouri is a distinguished neuroscientist and molecular medicine expert whose academic journey spans Iran and Canada. Beginning with foundational training in genetics and human biology, he has advanced into a dynamic career focused on translational neuroscience, particularly the genetic regulation of neurodevelopmental and neurodegenerative disorders. His doctoral and postdoctoral research have contributed significant insights into insulin/IGF-1 signaling, mitochondrial function, and gene expression related to autism and diabetic neuropathy.

Profile

Google Scholar

🎓 Early Academic Pursuits

Mohamad-Reza Aghanouri embarked on his academic journey with a B.Sc. in Cellular and Molecular Biology–Genetics from Shahid Chamran University of Ahvaz, Iran, in 2009. His keen interest in the intricate mechanics of human biology led him to pursue an M.Sc. in Human Genetics at Shiraz University of Medical Sciences, where he explored non-invasive techniques for early sex determination through free fetal DNA analysis. His growing passion for neuroscience and genetics culminated in a Ph.D. from the University of Manitoba, Canada, where he studied at the Department of Pharmacology and Therapeutics and the Division of Neurodegenerative Disorders. His doctoral thesis, focused on insulin/IGF-1 regulation of mitochondrial function in diabetic neuropathy, laid a strong foundation for a dynamic career in translational neurogenetics.

🧬 Professional Endeavors in Translational Neuroscience

Dr. Aghanouri’s postdoctoral work reflects a robust engagement with translational neuroscience and molecular medicine. From 2019 to 2024, he served as a postdoctoral fellow at the Department of Medical Genetics, Cumming School of Medicine, University of Calgary, under the mentorship of Dr. Guang Yang. His research investigated translational regulation of genes implicated in brain development, especially in autism spectrum disorders and rare neurodevelopmental conditions. Prior to that, he worked with Prof. Paul Fernyhough in Winnipeg, Canada, where he examined the role of IGF-1 in ATP production in sensory neurons under diabetic stress conditions. His diverse experience also includes a pivotal R&D advisory role at Roya Bio Gene Company in Tehran, showcasing his versatility across both academic and industrial biosciences.

🔬 Contributions and Research Focus

Dr. Aghanouri’s research contributions bridge the realms of neurodevelopment, metabolism, and genetic regulation. He has delved into the complex interplay between growth factors like IGF-1 and mitochondrial dynamics, particularly in relation to diabetic neuropathy. At the University of Calgary, his postdoctoral investigations explored the molecular pathways influencing neurodevelopmental disorders, positioning his work at the intersection of genomics and neuroscience. His methodological expertise spans cellular models, gene expression analysis, and translational bioinformatics, underscoring a commitment to discovering mechanisms that translate molecular findings into therapeutic insights.

🏆 Accolades and Recognition

Over the course of his academic and research career, Dr. Aghanouri has amassed a commendable list of honors. He received the prestigious CIHR postdoctoral fellowship (CA$40,000 annually, plus research allowance), along with additional fellowships from the Alberta Children’s Hospital Research Institute and the Cumming School of Medicine. Notably, he clinched first place in the Striking Image Competition at the University of Calgary and was honored by the BoniadMelliNokhbegan Foundation for his exceptional research talent. He has also earned multiple research grants from Iranian institutions in 2023 and 2024, reflecting his cross-border research impact and trust among funding bodies.

📚 Institutional Leadership and Influence

In 2024, Dr. Aghanouri was appointed as the Head of the Library, Documentation, Scientometrics, and Publication Center at the National Institute of Genetic Engineering and Biotechnology (NIGEB) in Tehran. He also holds a faculty position in the Department of Molecular Medicine at NIGEB. These roles position him as a key academic leader in Iran’s scientific community, where he not only continues his research but also shapes institutional research strategies, publication ethics, and scientific communication infrastructures. His work contributes significantly to Iran’s national bioscience and health research priorities.

🌍 Impact and Global Engagement

With academic roots in Iran and a decade of research training in Canada, Dr. Aghanouri exemplifies international scientific collaboration. His work addresses global health concerns, such as diabetes-induced neuropathies and neurodevelopmental disorders like autism, thus resonating with both clinical and scientific audiences worldwide. Through his active participation in conferences, poster competitions, and collaborative projects, he serves as a bridge between Iranian biotechnology advancements and the international research community.

🔮 Legacy and Future Contributions

Looking ahead, Dr. Aghanouri is poised to further advance the fields of molecular neurogenetics and translational medicine. His ongoing research is expected to uncover novel genetic mechanisms underlying brain development and metabolic dysfunctions. As a faculty member and research leader, he is mentoring the next generation of Iranian scientists while enhancing the global understanding of complex neurological diseases. His integrated approach to research, policy, and education ensures that his legacy will be one of both scientific innovation and institutional transformation.

Publication

 

  • Betulin and its derivatives as novel compounds with different pharmacological effects
    S Amiri, S Dastghaib, M Ahmadi, P Mehrbod, F Khadem, H Behrouj, …
    2020

 

  • Oxidized phosphatidylcholines trigger ferroptosis in cardiomyocytes during ischemia-reperfusion injury
    A Stamenkovic, KA O’Hara, DC Nelson, TG Maddaford, AL Edel, …
    2021

 

  • Insulin-like growth factor-1 activates AMPK to augment mitochondrial function and correct neuronal metabolism in sensory neurons in type 1 diabetes
    MR Aghanoori, DR Smith, S Shariati-Ievari, A Ajisebutu, A Nguyen, …
    2019

 

  • The ER stress/UPR axis in chronic obstructive pulmonary disease and idiopathic pulmonary fibrosis
    M Aghaei, S Dastghaib, S Aftabi, MR Aghanoori, J Alizadeh, P Mokarram, …
    2020

 

  • MiRNA molecular profiles in human medical conditions: Connecting lung cancer and lung development phenomena
    MR Aghanoori, B Mirzaei, M Tavallaei
    2014

 

  • Mechanisms targeting the unfolded protein response in asthma
    S Dastghaib, PS Kumar, S Aftabi, G Damera, A Dalvand, A Sepanjnia, …
    2021

 

  • Nucleocytoplasmic transport of the RNA-binding protein CELF2 regulates neural stem cell fates
    MJ MacPherson, SL Erickson, D Kopp, P Wen, MR Aghanoori, S Kedia, …
    2021

 

  • CYP2E15B, CYP2E16, CYP2E17B, CYP2E12, and CYP2E1*3 Allele Frequencies in Iranian Populations
    GM Shahriary, H Galehdari, A Jalali, F Zanganeh, SMR Alavi, …
    2012

 

  • Insulin prevents aberrant mitochondrial phenotype in sensory neurons of type 1 diabetic rats
    MR Aghanoori, DR Smith, SR Chowdhury, MG Sabbir, NA Calcutt, …
    2017

 

  • CEBPβ regulation of endogenous IGF-1 in adult sensory neurons can be mobilized to overcome diabetes-induced deficits in bioenergetics and axonal outgrowth
    MR Aghanoori, P Agarwal, E Gauvin, RS Nagalingam, R Bonomo, …
    2022

✅ Conclusion

Dr. Aghanouri stands out as a versatile and impactful scientist whose contributions to neuroscience and genetic medicine hold promise for both understanding and treating complex neurological conditions. His career reflects a strong blend of academic excellence, international collaboration, and leadership in research development. As he continues to build bridges between Iranian and global biosciences, his future work is expected to leave a lasting legacy in molecular neuroscience and translational medicine.

 

stefano | Clinical Neuroscience | Innovative Research Award

Dr. Stefano | Clinical Neuroscience | Innovative Research Award

Dr. Stefano, Ospedale Santa Chiara Trento, Italy.

Dr. Stefano Branzoli is a highly accomplished cardiac surgeon with decades of experience spanning Italy, Belgium, and the United States. After completing his medical studies at the University of Pavia, he advanced through elite international training, including a fellowship at the Mayo Clinic. His career has focused on surgical innovation in cardiac electrophysiology, with particular emphasis on thoracoscopic ablation for atrial fibrillation, stroke prevention, and ventricular arrhythmias. Through his roles at Santa Chiara Hospital and Universitair Ziekenhuis Brussel, he has contributed extensively to both clinical practice and academic research.

Profile

Orcid

🧬 Early Academic Pursuits


Dr. Stefano Branzoli began his journey into medicine at the prestigious University of Pavia, where he earned his degree in Medicine and Surgery between 1992 and 1998. Driven by a deep curiosity for cardiovascular science, he embarked on rigorous postgraduate training, marking the start of an extraordinary career in cardiac surgery. His academic excellence soon opened international doors, including a coveted fellowship at the Mayo Clinic in Rochester, Minnesota.

🏥 Professional Endeavors


From 1999 to 2004, Dr. Branzoli honed his clinical expertise as a resident in cardiac surgery at the University of Pavia. He became board-certified after completing the USMLE in 2000, equipping him with transatlantic qualifications. Since 2005, he has served in the Cardiac Surgery Unit at Santa Chiara Hospital in Trento, Italy, while also expanding his reach as a specialist at the Universitair Ziekenhuis Brussel in Belgium since 2019. These dual roles reflect his commitment to advancing surgical standards across borders.Contributions to Cardiac ElectrophysiologyThroughout his career, Dr. Branzoli has been instrumental in the development and refinement of procedures targeting arrhythmias. His clinical and research contributions in thoracoscopic ablation for atrial fibrillation, stroke prevention, and epicardial ablation for ventricular arrhythmias have positioned him as a leading voice in electrophysiological cardiac surgery. He has been particularly focused on minimally invasive techniques that reduce patient recovery time while enhancing procedural efficacy.

🔬 Research Focus and Innovation


Dr. Branzoli’s research portfolio reflects his dedication to solving complex cardiovascular challenges. He has led and contributed to significant projects centered on atrial fibrillation, stroke prevention strategies, and novel ablative techniques. His work bridges the gap between traditional surgical approaches and cutting-edge electrophysiological interventions, helping shape the future of cardiac care through both clinical practice and investigative science.

🏅 Accolades and Recognition


Though modest in demeanor, Dr. Branzoli’s accomplishments have earned him respect in academic and clinical circles alike. His training at the Mayo Clinic—a global epicenter for cardiac research—along with his dual appointments in Italy and Belgium, speak volumes of his international reputation. His involvement in advanced cardiac rhythm management has earned recognition from peers and institutions aiming to elevate surgical excellence.

🌍 Impact and Influence


Beyond the operating theater, Dr. Branzoli’s influence is reflected in the widespread adoption of thoracoscopic ablation techniques and his mentorship of upcoming cardiac surgeons in Europe. By integrating cross-border expertise, he has played a vital role in aligning surgical standards and promoting collaborative research between institutions in Italy, Belgium, and beyond.

🔮 Legacy and Future Contributions


As medicine evolves toward personalized, minimally invasive therapies, Dr. Branzoli stands at the forefront of surgical innovation. His work continues to inspire new pathways in arrhythmia management and stroke prevention. With a career spanning continents and a mind open to continual learning, his legacy is defined not only by lives saved but also by knowledge passed on to future generations of cardiovascular specialists.

Publication

  • Title: Patients with Gastrointestinal Bleeding and Atrial Fibrillation: Potential Ideal Target for Epicardial Appendage Occlusion
    Authors: Stefano Branzoli, Massimiliano Marini, Domenico Catanzariti, Cecilia Pravadelli, Luigi Pannone, Giovanni D’Onghia, Mauro Fantinel, Fabrizio Guarracini, Gaia Franceschini, Mirco Zadro et al.
    Year: 2025

 

  • Title: Heart Team for Left Appendage Occlusion without the Use of Antithrombotic Therapy: The Epicardial Perspective
    Authors: Stefano Branzoli, Fabrizio Guarracini, Massimiliano Marini, Giovanni D’Onghia, Domenico Catanzariti, Elettra Merola, Luciano Annicchiarico, Giulia Casagranda, Chiara Stegagno, Mauro Fantinel et al.
    Year: 2022

 

✅ Conclusion


Dr. Branzoli’s enduring commitment to advancing cardiac surgery has had a meaningful impact on patient care, research, and education. With a legacy rooted in innovation, cross-cultural collaboration, and a passion for arrhythmia management, he continues to influence the evolving field of cardiovascular medicine. His work serves as a bridge between traditional surgical methods and modern electrophysiological therapies—ensuring that the future of heart care is not only safer and more effective but also profoundly human-centered.

Edyta GLOGOWSKA | Cell Metabolism | Best Researcher Award

Dr. Edyta Glogowska | Cell Metabolism | Best Researcher Award

Dr.  Edyta Glogowska, CNRS-IPMC-UniCA,  France.

Dr. Edyta Glogowska is a passionate and accomplished biomedical researcher with a strong academic background in biotechnology and life sciences. From her early beginnings in dental engineering to earning a PhD in red blood cell physiology from the University Pierre and Marie Curie, her academic journey reflects a deep commitment to advancing human health through science. Her postdoctoral research at the Institute of Molecular and Cellular Pharmacology (IPMC) highlights her expertise in cell physiology, electrophysiology, and molecular biology, with a special focus on macrophage Piezo1 channels and their role in atherosclerosis. She is a skilled communicator and team collaborator, recognized for her academic excellence and contributions to hematology and immunopathology.

Profile

Scopus

🎓 Early Academic Pursuits

Dr. Edyta Glogowska’s journey into the world of life sciences began with a strong foundation in biotechnology and medical sciences. She earned her Master of Engineering in Biotechnology Processing from Wroclaw University of Science and Technology, where she graduated with highest honors. Even earlier, she had already laid a unique cornerstone for her biomedical interests through specialized training as a Dental Engineer at the Marie Curie Medical Vocational School. Her pursuit of deeper scientific knowledge led her to France, where she undertook her PhD in Biological and Life Sciences at the University Pierre and Marie Curie, Paris VI. Conducted at the prestigious Station Biologique in Roscoff, her doctoral research focused on red blood cell physiology and was awarded with the highest honors—a testament to her early dedication and scientific promise.

🔬 Professional Endeavors

Dr. Glogowska’s professional career has been marked by a steadfast commitment to cell and molecular biology, electrophysiology, and the biochemistry of proteins. Her postdoctoral research at the Institute of Molecular and Cellular Pharmacology (IPMC) in Sophia Antipolis (2021–2024) showcases her hands-on expertise with mice experimentation and patch-clamp techniques, placing her at the cutting edge of biomedical research. Working under the guidance of Dr. Eric Honoré, she explored the role of macrophage Piezo1 channels regulated by lipids, a study with far-reaching implications in understanding and potentially treating atherosclerosis.

🧬 Contributions and Research Focus

Throughout her academic and postdoctoral years, Dr. Glogowska has focused her research on the physiology and pathophysiology of cells, particularly red blood cells and immune cells like macrophages. Her interest lies in understanding how cellular mechanisms contribute to broader medical conditions, such as cardiovascular diseases. By integrating electrophysiology with molecular biology, she brings a comprehensive approach to biomedical questions, bridging the gap between basic research and therapeutic application. Her work on Piezo1 not only contributes to our understanding of mechanotransduction in macrophages but also holds promise for future translational research.

🏅 Accolades and Recognition

Dr. Glogowska’s scholarly excellence has been consistently recognized. She graduated with highest honors both for her Master’s and PhD degrees, a rare academic distinction that underscores her dedication and intellectual rigor. She has also been an active member of the French Society of Hematology, aligning herself with leading experts in her field and staying abreast of the latest developments in blood cell research. These accolades reflect her respected standing within the scientific community.

🌍 Impact and Influence

Beyond technical expertise, Dr. Glogowska is praised for her team coordination and communication skills, qualities that have enabled her to contribute meaningfully to collaborative research environments. Her scientific efforts in understanding lipid–ion channel interactions in macrophages directly influence the broader field of cardiovascular immunology. By elucidating the role of Piezo1 channels in inflammatory processes, her research provides foundational knowledge that can inspire novel pharmacological interventions.

🔎 Legacy and Future Contributions

Dr. Glogowska continues to strive toward a future where her research leads to medical breakthroughs in inflammation and cardiovascular disease. She is particularly interested in translational science, where laboratory discoveries transition into clinical applications. Her strong background in biotechnology, dentistry, and molecular biology uniquely equips her to explore cross-disciplinary challenges in human health. As she advances, she aims to bridge research with clinical solutions, contributing to a legacy of innovation in life sciences.

Publication

Title: Potentiation of macrophage Piezo1 by atherogenic 7-ketocholesterol
Authors: Edyta Glogowska, Gregor P. Jose, Ana Rita Dias Araújo, Laurent Yvan-Charvet, Éric R. Honoré
Year: 2025

Title: Piezo1 in PASMCs: Critical for Hypoxia-Induced Pulmonary Hypertension Development
Authors: Fenja Knoepp, Shariq Abid, Amal Houssaïni, Éric R. Honoré, Serge Adnot
Year: 2025

Title: Pharmacological activation of PIEZO1 in human red blood cells prevents Plasmodium falciparum invasion
Authors: Rakhee Lohia, Benoit Allegrini, Laurence Berry, Éric R. Honoré, Kai Wengelnik
Year: 2023

Title: A machine-learning algorithm integrating baseline serum proteomic signatures predicts exercise responsiveness in overweight males with prediabetes
Authors: Candela Diaz-Canestro, Jiarui Chen, Yan Liu, Michael Andrew Tse, Aimin Xu
Year: 2023

Title: Adipose-targeted triiodothyronine therapy counteracts obesity-related metabolic complications and atherosclerosis with negligible side effects
Authors: Kang Chen, Lai Yee Cheong, Yuan Gao, Hannah Xiaoyan Hui, Aimin Xu
Year: 2022

Title: Author Correction: Adipocyte Piezo1 mediates obesogenic adipogenesis through the FGF1/FGFR1 signaling pathway in mice
Authors: Shengpeng Wang, Shuang Cao, Malika Arhatte, Éric R. Honoré, Stefan Offermanns
Year: (Correction Published) — Likely 2021 or 2022

Title: Piezo1 and Piezo2 foster mechanical gating of K2P channels
Authors: Edyta Glogowska, Malika Arhatte, Franck C. Chatelain, Amanda Jane Patel, Éric R. Honoré
Year: 2021

Title: Adipocyte Piezo1 mediates obesogenic adipogenesis through the FGF1/FGFR1 signaling pathway in mice
Authors: Shengpeng Wang, Shuang Cao, Malika Arhatte, Éric R. Honoré, Stefan Offermanns
Year: 2020

Title: Piezo Ion Channels in Cardiovascular Mechanobiology
Authors: Dominique Douguet, Amanda Jane Patel, Aimin Xu, Paul Michel Vanhoutte, Éric R. Honoré
Year: (Not explicitly stated, likely ~2020 based on context)

Title: TMEM33 regulates intracellular calcium homeostasis in renal tubular epithelial cells
Authors: Malika Arhatte, Gihan S. Gunaratne, Charbel El Boustany, Éric R. Honoré, Amanda Jane Patel
Year: 2019

 

 

✅ Conclusion

Driven by curiosity and guided by precision, Dr. Glogowska continues to make meaningful strides in biomedical research. Her work stands at the intersection of basic science and medical application, with the potential to influence future therapeutic strategies for cardiovascular and inflammatory diseases. With her versatile skill set and visionary approach, she is well-positioned to leave a lasting impact on the scientific and medical communities. As she moves forward, Dr. Glogowska aspires to further bridge laboratory discoveries with clinical innovations, fostering a legacy of scientific excellence and translational breakthroughs.

 

Mohammed Hammad Jaber Amin | Cognitive Neuroscience | Best Researcher Award

Dr. Mohammed Hammad Jaber Amin | Cognitive Neuroscience | Best Researcher Award

Dr. Mohammed Hammad Jaber Amin, Alzaiem Alazhari University, Sudan.

Driven by an unwavering passion for surgery and a deep-rooted interest in radiology and interventional radiology, I am a resilient medical student committed to academic excellence, research innovation, and compassionate service. With hands-on clinical experiences in prestigious institutions and an active role in mentoring students, I blend academic rigor with real-world engagement. My involvement in social initiatives and international exchange programs reflects my holistic approach to medicine—one that bridges science with empathy, and research with community impact. I strive to contribute meaningfully to advancements in medical imaging and minimally invasive techniques, all while fostering a culture of continuous learning and global collaboration.

Profile

Orcid

🎓 Early Academic Pursuits

From the very beginning of my academic journey, I have been guided by an insatiable curiosity and a steadfast determination to explore the depths of human anatomy and healing. My acceptance into medical school was not just an achievement but a defining milestone that symbolized years of perseverance, discipline, and an unyielding resolve to serve humanity. Immersed in the rigorous demands of medical education, I quickly gravitated toward the intricate world of surgery, where precision, empathy, and knowledge converge. My fascination with the ever-evolving realm of radiology and interventional radiology took root early on, driven by a passion to decode the human body through advanced imaging and minimally invasive techniques.

🩺 Professional Endeavors

As a medical student deeply engrossed in surgical sciences, I actively pursue clinical exposure in prestigious institutions like the Mayo Clinic and Hamad Institute. These experiences, under the mentorship of distinguished surgeons and radiologists, are pivotal in refining my practical skills and theoretical knowledge. I am currently seeking international electives and clinical rotations to broaden my medical horizon, embrace diverse healthcare systems, and strengthen my expertise in interventional radiology. These endeavors are not just about technical training but about understanding the holistic patient experience in global contexts.

🧠 Contributions and Research Focus

My immersion in medical research stems from a belief that innovation is born at the intersection of inquiry and compassion. With a special focus on radiology and interventional techniques, I strive to contribute meaningfully to cutting-edge studies that have the potential to revolutionize diagnostics and patient care. My research interests delve into image-guided interventions and the integration of emerging technologies within surgical frameworks. Through dedicated collaboration with peers and mentors, I envision contributing to discoveries that not only enhance procedural efficacy but also reduce patient recovery time and complications.

🏅 Accolades and Recognition

While formal accolades are cherished milestones, I consider the trust and guidance of esteemed mentors and the academic progress of my students as my most valued achievements. Tutoring A-level and O-level students brings me profound joy, especially when I witness their growth in mastering complex concepts and developing crucial time management skills. My active involvement in mentoring is recognized not only within academic circles but also among community organizations, affirming my commitment to empowering the next generation of learners.

🌍 Impact and Influence

Medicine, for me, is not confined to the sterile walls of a hospital—it extends into communities, transcending cultural and geographic boundaries. My active participation in social service programs and international medical exchanges has allowed me to cultivate a deep empathy for underserved populations. Collaborating with initiatives led by the Lions Club and Rotary International has been instrumental in strengthening my social conscience, fostering global medical solidarity, and enhancing the quality of care provided to marginalized communities. These experiences shape my understanding of healthcare as a universal right, not a privilege.

🔬 Legacy and Future Contributions

Looking forward, I envision a future where my contributions to radiology and interventional surgery can catalyze transformative changes in how diseases are diagnosed and treated. I am dedicated to harnessing the power of interdisciplinary research to bridge existing gaps in global health equity. My goal is to pioneer minimally invasive diagnostic techniques that are both accessible and effective, especially in low-resource settings. Beyond the laboratory and clinic, I aspire to mentor aspiring physicians, sharing not just knowledge but a vision of medicine rooted in compassion, ethics, and relentless innovation.

Publication

  • Title: Prevalence of cognitive dysfunction and associated behavioral changes, lactational failure, and their determinants among postpartum women in South India: A community‐based study
    Authors: Sakshi Kumari; Raghavendraswamy Koppad; Arashdeep Singh; Boentika Singh; Muhammad Saeed Qazi; Mohammed Hammad Jaber Amin
    Year: 2025

 

  • Title: Risk Factors and Pharmacological Interventions Impacting Cerebrovascular Ischemic Events in Giant Cell Arteritis: A Narrative Review
    Authors: Muhammad Osama Siddiqui; Mohammad Ali Syed; Ayaan Ahmed Qureshi; Mustafa Hussain Imam; Jatin Motwani; Verkha Kumari; Arooba Siddiqui; Noor Ul Ain; Mohammed Hammad Jaber
    Year: 2025

 

  • Title: Advancements in PNH treatment: crovalimab’s clinical efficacy
    Authors: Eisha Shoaib; Filzah Imam; Mahnoor Khan; Mohammed H. Jaber Amin
    Year: 2024

 

  • Title: Lenmeldy (OTL-200) in MLD: FDA’s validation of advanced therapy
    Authors: Ayaan Ahmed Qureshi; Bakhtawar Shaikh; Aishath Sadha Aswad; Ahmed Hisaan Saeed; Hanfaa Tabassum; Muhammad Fawad Tahir; Muhammed Hammad Jaber
    Year: 2024

 

  • Title: Tarlatamab’s FDA approval: shaping the future of cancer therapy
    Authors: Iqra Alamgir; Unsa Alamgir; Eman Alamgir; Ayaan Ahmed Qureshi; Muhammad Osama Siddiqui; Mohammed Hammad Jaber; Jatin Motwani
    Year: 2024

 

  • Title: Knowledge, attitude, and practice of artificial intelligence among medical students in Sudan: a cross-sectional study
    Authors: Mohammed Hammad Jaber Amin et al.
    Year: 2024

 

  • Title: Risk Factors and Pharmacological Interventions Impacting Cerebrovascular Ischemic Events in Giant Cell Arteritis: A Narrative Review (Preprint)
    Authors: Muhammad Siddiqui; Mohammad Syed; Ayaan Qureshi; Mustafa Imam; Jatin Motwani; Verkha Kumari; Arooba Siddiqui; Noor Ul Ain; Mohammed Hammad Jaber
    Year: 2024

 

  • Title: Assessment of the importance of sleep quality and the effects of deprivation on Sudanese healthcare professionals amidst conflict in Sudan
    Authors: Mohammed Hammad Jaber Amin et al.
    Year: 2024

 

  • Title: Understanding Enterococcus Biofilm: A Path to Targeted Therapy (Preprint)
    Authors: Muhammad Fawad Tahir; Mugdha Tendulkar; Abdul Shah Syed; Laveeza Fatima; Sania Riaz; Fatima Raza; Iqra Haseeb; Reshma Tendulkar; Mohammed Hammad Jaber
    Year: 2024

 

  • Title: Breaking Ground: Lenmeldy’s Approval and the Future of MLD Treatment (Preprint)
    Authors: Ayaan Ahmed Qureshi; Aishath Sadha Aswad; Bakhtawar Shaikh; Ahmed Hisaan Saeed; Hanfaa Tabassum; Muhammad Fawad Tahir; Mohammed Hammad Jaber
    Year: 2024

 

Conclusion

Medicine is not just a career for me—it is a lifelong calling fueled by curiosity, compassion, and commitment. As I continue this journey, I aim to not only excel in my chosen specialties but also to be a catalyst for positive change in the global healthcare landscape. Through dedicated research, international exposure, and social service, I aspire to leave a legacy rooted in innovation, integrity, and impact. The journey is ongoing, and each new day offers a step closer to transforming both individual lives and the broader future of medicine.