Research Projects

Explore Dr. Putterman's groundbreaking research in immunology and medicine.

Core Research Areas
Future Directions

Our laboratory remains at the forefront of lupus research, continuously expanding our understanding of disease mechanisms while maintaining a steadfast commitment to translating discoveries into meaningful improvements in patient care. We collaborate with clinical partners, pharmaceutical companies, and international research networks to accelerate the development of next-generation therapies that will transform the landscape of SLE treatment.

Through this integrated approach combining basic science discovery, translational research, and clinical application, we aim to fundamentally change the prognosis for individuals living with systemic lupus erythematosus.

In the laboratory, Dr. Putterman’s team investigates the complex mechanisms underlying autoimmunity, with a specific focus on the pathogenesis of kidney and neuropsychiatric manifestations associated with systemic lupus erythematosus (SLE). Our research examines critical components such as anti-DNA antibodies, macrophages, and cytokines, with the goal of developing novel and effective therapeutic approaches for lupus.

We are actively seeking new treatment agents and strategies that can effectively improve the condition of SLE patients and extend their lifespan. Regarding neuropsychiatric symptoms related to SLE, we are exploring innovative drug delivery methods to bypass the blood-brain barrier. Additionally, we are committed to identifying informative biomarkers that could enhance the diagnosis and monitoring of SLE, paving the way for future advancements in patient care.

Autoimmune Pathogenesis

Our team examines the fundamental mechanisms driving SLE pathogenesis, focusing on the intricate interplay between key molecular players:

  • Anti-DNA antibodies: Investigating their role in tissue damage and organ-specific manifestations

  • Macrophage dysfunction: Elucidating how altered macrophage polarization and clearance mechanisms contribute to chronic inflammation

  • Cytokine networks: Mapping dysregulated inflammatory cascades that perpetuate autoimmune responses

Renal and Neuropsychiatric Manifestations

We investigate two of the most severe and life-threatening complications of SLE:

Lupus Nephritis: Understanding the molecular mechanisms of kidney damage and identifying therapeutic targets to prevent progression to end-stage renal disease.

Neuropsychiatric SLE (NPSLE): Exploring how autoantibodies and inflammatory mediators breach the blood-brain barrier to cause cognitive dysfunction, mood disorders, and other neurological symptoms.

Therapeutic Innovation

Novel Treatment Development

Our laboratory is committed to translating mechanistic insights into clinical applications through:

  • Development of targeted immunomodulatory agents that address specific pathogenic pathways

  • Investigation of combination therapies to improve treatment efficacy while minimizing adverse effects

  • Exploration of precision medicine approaches tailored to individual patient profiles

Blood-Brain Barrier Drug Delivery

Recognizing the unique challenges of treating NPSLE, we are pioneering innovative drug delivery systems designed to:

  • Overcome blood-brain barrier restrictions through novel nanoparticle formulations

  • Develop targeted delivery mechanisms that concentrate therapeutic agents in affected brain regions

  • Create sustained-release platforms for continuous neuroprotection

Biomarker Discovery and Clinical Translation

Diagnostic and Prognostic Markers

Our biomarker research program aims to:

  • Identify novel serum and tissue-based markers for early SLE detection

  • Develop predictive biomarkers for organ-specific complications

  • Create monitoring tools to assess treatment response and disease progression

  • Establish personalized risk stratification models

Clinical Impact

Through rigorous biomarker validation studies, we strive to:

  • Reduce diagnostic delays that often plague SLE patients

  • Enable earlier intervention to prevent irreversible organ damage

  • Optimize treatment selection based on individual disease characteristics

Improve long-term outcomes and quality of life for patients

About Dr. Chaim Putterman

Dr. Putterman is a distinguished professor with extensive experience in medicine, microbiology, and immunology, leading innovative research at Galilee Medical Center and contributing to academic excellence at Bar-Ilan University.

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An elderly man wearing glasses and a white lab coat stands outdoors. He has short, receding hair and a warm smile. The background is blurred with hints of greenery, suggesting a natural setting. His tie is dark with a subtle pattern, and the coat features a badge on the pocket.
Our Mission Statement
Research and Development Focus

Dedicated to advancing medical science, Dr. Putterman influences healthcare through significant research in immunology and microbiology, enhancing understanding and treatment of various diseases affecting human health.

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A man is standing in front of a backdrop featuring various logos related to medical and dermatological organizations. He is wearing a brown shirt, light-colored pants, and sneakers, with a backpack on his shoulders.

Research

Explore Dr. Putterman's groundbreaking work in medicine and immunology.

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A person wearing a white lab coat and stethoscope stands outside in a sunny area. The individual is smiling and has short hair and glasses. The background features greenery, a building, and playground equipment.
A person in protective clothing, including a hood and face shield, is using a microscope. Their hands are covered with pale green gloves, and they are observing a sample enclosed in a rectangular transparent container with a reddish content.
A person in protective clothing, including a hood and face shield, is using a microscope. Their hands are covered with pale green gloves, and they are observing a sample enclosed in a rectangular transparent container with a reddish content.
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A person wearing a lab coat and gloves is handling a container filled with test tubes and ice. The surrounding area shows laboratory equipment, including racks filled with colorful test tubes and other scientific materials.