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Taking Control of Castleman Disease: Leveraging Precision Medicine Technologies to Accelerate Rare Disease Research
Samantha Kass Newman1, Raj K Jayanthan2, Grant W Mitchell3
1Department of Medicine, NYU Langone Medical Center, New York, New York ; Castleman Disease Collaborative Network, Philadelphia, Pennsylvania.
Insights
Castleman disease (CD) is a rare lymph node disorder. The Castleman Disease Collaborative Network (CDCN) uses precision medicine to understand idiopathic MCD and find new therapies.
Area of Science:
- Rare disease research
- Hematology
- Oncology
- Immunology
Background:
- Castleman disease (CD) presents as unicentric or multicentric lymphadenopathy.
- Multicentric Castleman disease (MCD) is linked to hypercytokinemia.
- Idiopathic MCD (iMCD) lacks a known cause, presenting a challenge for treatment.
Purpose of the Study:
- To leverage precision medicine for understanding idiopathic MCD (iMCD) pathogenesis.
- To identify novel therapeutic strategies for iMCD.
- To establish a collaborative model for rare disease research and patient care.
Main Methods:
- Established the Castleman Disease Collaborative Network (CDCN) in 2012.
- Initiated and funded genomics and proteomics research.
- United international experts to foster collaboration.
Main Results:
- Transformed understanding of CD pathogenesis.
- Advanced precision medicine approaches for rare diseases.
- Created a collaborative framework accelerating research and patient care.
Conclusions:
- The CDCN model effectively addresses challenges in rare disease research.
- Precision medicine holds promise for elucidating iMCD pathogenesis.
- Collaborative efforts are crucial for advancing iMCD diagnosis and treatment.
Abstract:
Castleman disease (CD) is a rare and heterogeneous disorder characterized by lymphadenopathy that may occur in a single lymph node (unicentric) or multiple lymph nodes (multicentric), the latter typically occurring secondary to excessive proinflammatory hypercytokinemia. While a cohort of multicentric Castleman disease (MCD) cases are caused by Human Herpes Virus-8 (HHV-8), the etiology of HHV-8 negative, idiopathic MCD (iMCD), remains unknown. Breakthroughs in "omics" technologies that have facilitated the development of precision medicine hold promise for elucidating disease pathogenesis and identifying novel therapies for iMCD. However, in order to leverage precision medicine approaches in rare diseases like CD, stakeholders need to overcome several challenges. To address these challenges, the Castleman Disease Collaborative Network (CDCN) was founded in 2012. In the past 3 years, the CDCN has worked to transform the understanding of the pathogenesis of CD, funded and initiated genomics and proteomics research, and united international experts in a collaborative effort to accelerate progress for CD patients. The CDCN's collaborative structure leverages the tools of precision medicine and serves as a model for both scientific discovery and advancing patient care.
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