GAITHERSBURG, Md., Sept. 1, 2020 /PRNewswire/ --Cartesian Therapeutics, a fully integrated, clinical-stage biopharmaceutical company developing cell and gene therapies for cancer, autoimmune diseases and respiratory diseases, today announced that it has initiated a Phase 1/2 clinical trial of its lead RNA-engineered mesenchymal stem cell (MSC) therapy, Descartes-30, in patients with moderate-to-severe acute respiratory distress syndrome (ARDS), including that caused by COVID-19. Based upon the company's research and analysis, this program is understood to be the first RNA-engineered cell therapy to enter clinical development for ARDS and COVID-19. It is also the first cell therapy to specifically degrade NETs, webs of extracellular DNA and histones that entrap inflammatory cells, block alveoli and vessels, and drive the pathogenesis of ARDS and COVID-19.
"Patients with ARDS, especially those with COVID-19 ARDS, generate copious amounts of NETs that physically obstruct alveoli and vessels, which leads to respiratory distress, immune-mediated thrombosis and a vicious cycle of inflammation," said Bruce Levy, MD, Chief of Pulmonary and Critical Care Medicine at Brigham and Women's Hospital and Parker B. Francis Professor at Harvard Medical School, and a clinical investigator in the Descartes-30 trial. "We would therefore expect that degrading NETs would improve oxygenation as well as resolve thrombi and quell inflammation in these patients. If successful, Descartes-30 would be a highly differentiated game-changer within our limited toolkit in managing this exceedingly difficult condition."
Descartes-30 is an off-the-shelf (allogeneic) MSC product engineered with Cartesian's RNA ArmorySM cell therapy platform. By expressing a unique combination of DNases that work synergistically, Descartes-30 can eliminate large, macroscopic amounts of NETs within minutes. MSCs are inherently immunomodulatory and naturally travel to the lungs, where they are expected to provide continuous, local delivery of DNases to NET-laden lung tissue.
"We engineered Descartes-30 without genomic modification, and therefore the production of DNases is expected to be time-limited to match the acute nature of ARDS," said Metin Kurtoglu, MD, PhD, Chief Medical Officer at Cartesian. "Given thatDescartes-30will produce DNases locally and transiently, we anticipate that it will have a favorable benefit-to-risk profile. We also anticipate that these properties will enable Descartes-30 to treat a wide array of NET-related autoimmune and cardiovascular diseases."
About the Phase 1/2a Clinical Trial
The "Phase 1/2a Study of Descartes-30 in Acute Respiratory Distress Syndrome" (NCT04524962) is enrolling patients with ARDS at multiple critical care units in the United States. Patients with ARDS due to COVID-19 are given enrollment priority. This first-in-human study aims to determine the safety and preliminary efficacy of Descartes-30 in patients with moderate to severe ARDS. The study, which is estimated to begin treatment in September, aims to enroll approximately 20 patients prior to initiation of a larger study. For more information visit http://www.cartesiantherapeutics.com/Descartes-30-ARDS.
About ARDS and NETs
ARDS is a severe inflammatory lung disease with a mortality of over 40%. Inflammation leads to injury of lung tissue and leakage of blood and plasma into air spaces, resulting in low oxygen levels and often requiring mechanical ventilation. Inflammation in the lung may lead to inflammation elsewhere, causing shock and injury or dysfunction in the kidneys, heart, and muscles. Some causes of ARDS include COVID-19, severe pneumonia (including influenza), sepsis, trauma, and smoke inhalation.
NETs are inflammatory webs of DNA and proteins produced by neutrophils. NETs are commonly found in ARDS and are thought to exacerbate the disease by physically occluding air spaces and vessels, leading to reduced oxygenation and increased risk of immune thrombi. NETs are implicated in a variety of conditions beyond ARDS, including autoimmune and cardiovascular diseases.
About the RNA ArmorySM
The RNA ArmorySM is Cartesian's proprietary RNA-based cell engineering platform that activates and arms cells with carefully selected, mRNA-based therapeutics. Unmodified donor cells enter the RNA ArmorySMin the millions; a battle-ready cell army leaves the RNA ArmorySMin the tens of billions. Each cell is equipped with a combination of therapeutics rationally chosen to have a synergistic effect on the disease. In the body, the cells deliver a precision-targeted treatment regimen directly to the site of disease. The cells express therapeutics with a defined half-life, enhancing their safety profile and making repeat dosing and outpatient administration possible. The platform is agnostic to cell type: we choose the best cell for the job, whether autologous or off-the shelf. For more information visithttps://www.cartesiantherapeutics.com/rna-armory/.
About Cartesian Therapeutics
Founded in 2016,Cartesianis a fully integrated, clinical-stage biopharmaceutical company developing potent yet safer cell and gene therapies designed to benefit the broadest range of patients with cancer, autoimmune and respiratory diseases. Cartesianhas three products in clinical development under four open investigational new drug application (INDs) with the U.S. Food & Drug Administration (FDA). All investigational therapies are manufactured at Cartesian's wholly owned, state-of-the-art cGMP manufacturing facility in Gaithersburg, MD.Cartesian's commanding IP position benefits in part from a broad, exclusive patent license from the National Cancer Institute. For more information visithttps://www.cartesiantherapeutics.com/clinical-trials/.
SOURCE Cartesian Therapeutics
Go here to read the rest:
- Exploring mesenchymal stem cells homing mechanisms and ... - PubMed - November 26th, 2024
- Macrophage tracking with USPIO imaging and T2 mapping predicts immune rejection of transplanted stem cells - Nature.com - November 26th, 2024
- IL-10RA governor the expression of IDO in the instruction of lymphocyte immunity - Nature.com - November 26th, 2024
- Mesenchymal Stem Cells: Time to Change the Name! - November 26th, 2024
- Researchers have brought the promise of stem cell therapies closer to reality - The Week - November 25th, 2024
- Engineering bone/cartilage organoids: strategy, progress, and application - Nature.com - November 25th, 2024
- Proteomic analysis of human Whartons jelly mesenchymal stem/stromal cells and human amniotic epithelial stem cells: a comparison of therapeutic... - November 20th, 2024
- Clinical outcomes of autologous adipose-derived mesenchymal stem cell combined with high tibial osteotomy for knee osteoarthritis are correlated with... - November 20th, 2024
- Mesenchymal stem cells lineage and their role in disease development - November 18th, 2024
- Mesenchymal Stem Cells - SpringerLink - November 18th, 2024
- Exosomes: The Insulin of Our Era? - University of Miami - November 18th, 2024
- Partner Perspectives: Mesenchymal Stromal Cells Could Serve as Preventive Therapy for Chronic Radiation-Induced Dry Mouth - OncLive - November 10th, 2024
- Skin-care founder Angela Caglia on the stem cell technology that created 437% sales growth: 'It's transformed the business' - Glossy - November 8th, 2024
- Substantial Overview on Mesenchymal Stem Cell Biological and Physical ... - November 8th, 2024
- Regenerative Medical Technology Group Announces the Opening of New Clinic in Dubai on November 23 - Newswire - November 8th, 2024
- BioRestorative Therapies Receives Expanded Tissue License from New York State Department of Health - StockTitan - November 8th, 2024
- Stem cell science is dominating the luxury skin-care market as human-derived ingredients become less taboo - Glossy - November 8th, 2024
- BioRestorative Therapies Receives Expanded Tissue License from New York State Department of Health - The Manila Times - November 8th, 2024
- SMART researchers develop a method to enhance effectiveness of cartilage repair therapy - MIT News - October 25th, 2024
- Biological functions of mesenchymal stem cells and clinical ... - October 24th, 2024
- Chemical-defined medium supporting the expansion of human mesenchymal ... - October 24th, 2024
- Mesenchymal Stem Cells: Time to Change the Name! - PMC - October 24th, 2024
- Insights into the molecular characteristics of embryonic cranial neural crest cells and their derived mesenchymal cell pools - Nature.com - October 20th, 2024
- Acquisition of durable insulin-producing cells from human adipose tissue-derived mesenchymal stem cells as a foundation for cell- based therapy of... - October 20th, 2024
- Sources and Clinical Applications of Mesenchymal Stem Cells - October 20th, 2024
- Effects of inorganic phosphate on stem cells isolated from human exfoliated deciduous teeth - Nature.com - October 18th, 2024
- Researchers pioneer novel method to enhance effectiveness of MSC therapy for cartilage repair - Medical Xpress - October 18th, 2024
- Healing begins with research: Promising development program on stem cells in rare diseases - Yahoo! Voices - October 15th, 2024
- Unveiling the Immunomodulatory and regenerative potential of iPSC-derived mesenchymal stromal cells and their extracellular vesicles - Nature.com - October 15th, 2024
- Manufactured stem cells could help to treat blood cancers in the future - Health Tech World - October 14th, 2024
- miR-16a-5p antagonizes FGF-2 in ligamentogenic differentiation of MSC: a new therapeutic perspective for tendon regeneration - Nature.com - October 11th, 2024
- Effects, methods and limits of the cryopreservation on mesenchymal stem ... - October 10th, 2024
- ALKBH5 regulates etoposide-induced cellular senescence and osteogenic differentiation in osteoporosis through mediating the m6A modification of VDAC3... - October 10th, 2024
- Mesenchymal stromal cells: Biology of adult mesenchymal stem cells ... - October 8th, 2024
- Clever Robotic clothing and manufactured stem cells to treat cancer among revolutionary healthcare tech projects - University of Strathclyde - October 8th, 2024
- Dr. Peisong Gao, MD, PhD - Hopkins Medicine - October 4th, 2024
- Research to Boost Bone Formation Informs Orthopaedic Treatments - October 4th, 2024
- Garza Laboratory - Johns Hopkins Medicine - October 4th, 2024
- Stem Cell Treatment Promises to Prevent Disease and Slow Aging - Newsweek - September 30th, 2024
- Survival advantage of native and engineered T cells is acquired by mitochondrial transfer from mesenchymal stem cells - Journal of Translational... - September 28th, 2024
- A mathematical insight to control the disease psoriasis using mesenchymal stem cell transplantation with a biologic inhibitor - Nature.com - September 20th, 2024
- Mesenchymal stem cells in tumor microenvironment: drivers of bladder cancer progression through mitochondrial dynamics and energy production -... - September 20th, 2024
- Implication of CXCR2-Src axis in the angiogenic and osteogenic effects of FP-TEB - Nature.com - September 20th, 2024
- Strategic targeting of miR-183 and -catenin to enhance BMSC stemness in age-related osteoporosis therapy - Nature.com - September 16th, 2024
- The order of green and red LEDs irradiation affects the neural differentiation of human umbilical cord matrix-derived mesenchymal cells - Nature.com - September 14th, 2024
- ENCell and Lucy Biotech Sign a Strategic Alliance and Licensing Agreement for the Next generation Mesenchymal Stem Cell Therapy (EN001) - PR Newswire - September 14th, 2024
- Japanese brand Eternam taps regenerative medicine to develop lip and skin care from umbilical cord-derived stem cell - CosmeticsDesign-Asia.com - September 10th, 2024
- Advances in Tissue Engineering and Its Future in Regenerative Medicine Compared to Traditional Reconstructive Techniques: A Comparative Analysis -... - September 8th, 2024
- Editorial: The future direction toward immunological issues of allo-and xeno-islet transplantation - Frontiers - September 8th, 2024
- Translational potential of mesenchymal stem cells in regenerative ... - September 4th, 2024
- Global microRNA profiling of bone marrow-MSC derived extracellular vesicles identifies miRNAs associated with hematopoietic dysfunction in aplastic... - August 24th, 2024
- A Comprehensive Review of the Role of Stem Cells in Neuroregeneration: Potential Therapies for Neurological Disorders - Cureus - August 22nd, 2024
- Efficacy of mesenchymal stem cell transplantation on major adverse cardiovascular events and cardiac function indices in patients with chronic heart... - August 22nd, 2024
- Infinite Health Integrative Medicine Center Revolutionizes Regenerative Medicine with Advanced Mesenchymal Signaling Cell Therapy - PR Newswire - August 22nd, 2024
- Stem Cell Therapy Market to Grow at 11.2% CAGR through 2031 - EIN News - August 22nd, 2024
- Immunomodulatory properties of nave and inflammation-informed dental pulp stem cell derived extracellular vesicles - Frontiers - August 20th, 2024
- Exciting advance in stem cell therapy - McGill Newsroom - August 16th, 2024
- Human umbilical cord-derived mesenchymal stromal cells for the treatment of steroid refractory grades III-IV acute graft-versus-host disease with... - August 16th, 2024
- Establishment of a stem cell administration imaging method in bleomycin-induced pulmonary fibrosis mouse models - Nature.com - August 16th, 2024
- Editorial: Bringing function to the forefront of cell therapy: how do we demonstrate potency? - Frontiers - August 12th, 2024
- Anti-aging enthusiasts are having stem cell injections in their knees at more than $16K a pop - New York Post - August 10th, 2024
- Exosomes and Equine Health - Horse Sport - August 10th, 2024
- Therapeutic application of mesenchymal stem cell-derived exosomes in skin wound healing - Frontiers - August 6th, 2024
- Zymeworks Provides Corporate Update and Reports Second Quarter 2024 Financial Results - August 2nd, 2024
- NextCure Provides Business Update and Reports Second Quarter 2024 Financial Results - August 2nd, 2024
- Cardiff Oncology to Report Second Quarter 2024 Results and Provide Business Update - August 2nd, 2024
- Terns Pharmaceuticals Reports Inducement Grant to New Employee Under Nasdaq Listing Rule 5635(C)(4) - August 2nd, 2024
- T2 Biosystems to Attend Upcoming Investor Conferences - August 2nd, 2024
- Myriad Genetics Advances International Reorganization and Completes Sale of EndoPredict Business to Eurobio Scientific - August 2nd, 2024
- Supernus Resubmits NDA for SPN-830 Apomorphine Infusion Device - August 2nd, 2024
- electroCore Announces Inducement Grant under NASDAQ Listing Rule 5635(c)(4) - August 2nd, 2024
- Fate Therapeutics Reports New Employee Inducement Awards Under Nasdaq Listing Rule 5635(c)(4) - August 2nd, 2024
- NewAmsterdam Pharma Reports Inducement Grants Under Nasdaq Listing Rule 5635(c)(4) - August 2nd, 2024
- Arcutis Biotherapeutics Reports Inducement Grants Under Nasdaq Listing Rule 5635(c)(4) - August 2nd, 2024
- ORIC Pharmaceuticals Reports Inducement Grants under Nasdaq Listing Rule 5635(c)(4) - August 2nd, 2024
- Stem cell therapy leads to short-term disability reduction in MS - Multiple Sclerosis News Today - July 22nd, 2024
- Re-establishing immune tolerance in multiple sclerosis: focusing on novel mechanisms of mesenchymal stem cell regulation of Th17/Treg balance -... - July 22nd, 2024
- Clene to Present at the Emerging Growth Conference - July 14th, 2024
- Voting Rights and Shares Capital of the Company - July 10th, 2024
- GENFIT: Half-Year Report of Liquidity Contract with Crédit Industriel et Commercial - July 10th, 2024
Recent Comments