Immune thrombocytopenia purpura (ITP) is characterized by the production of pathological autoantibodies that cause reduction in platelet counts. The disease can have serious medical consequences, leading to uncontrolled bleeding that can be fatal. Current widely used therapies for the treatment of ITP are non-specific and can, at times, result in complications that are more burdensome than the disease itself. In the present study, the use of platelet membrane-coated nanoparticles (PNPs) as a platform for the specific clearance of anti-platelet antibodies is explored. The nanoparticles, whose outer layer displays the full complement of native platelet surface proteins, act as decoys that strongly bind pathological anti-platelet antibodies in order to minimize disease burden. Here, we study the antibody binding properties of PNPs and assess the ability of the nanoparticles to neutralize antibody activity both in vitro and in vivo. Ultimately, we leverage the neutralization capacity of PNPs to therapeutically treat a murine model of antibody-induced thrombocytopenia and demonstrate considerable efficacy as shown in a bleeding time assay. PNPs represent a promising platform for the specific treatment of antibody-mediated immune thrombocytopenia by acting as an alternative target for anti-platelet antibodies, thus preserving circulating platelets with the potential of leaving broader immune function intact.
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http://dx.doi.org/10.1016/j.biomaterials.2016.10.003 | DOI Listing |
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Department of Pathology and Laboratory Medicine, University of California Irvine (UCI) Medical Center, Orange, USA.
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Department of Medicine, Mercyhealth Graduate Medical Education (GME) Consortium, Rockford, USA.
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State Institution «National Research Center for Radiation Medicine, Hematology and Oncology of the National Academy of Medical Sciences of Ukraine», 53 Yuriia Illienka Str., Kyiv, 04050, Ukraine.
We present а rare clinical case of successful surgical treatment - combined left-sided hemicolectomy and cecal resection for colon cancer of two locations in a patient with idiopathic thrombocytopenic purpura, which, in our opinion, is due to radiation exposure is presented. It is shown that the biological effects of long-term ionizing radiation on critical organs can have a diverse nature both in terms of the time of occurrence and in their structure, which requires an individual approach, the involvement of related specialists and the necessary medical preoperative preparation for precise planning of surgical intervention taking into account all possible risks.
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Hematology, Cheikh Khalifa International University Hospital, Mohammed VI University of Sciences and Health, Casablanca, MAR.
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View Article and Find Full Text PDFJ Family Med Prim Care
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Department of Community Medicine, Shri MP Shah Medical College, Jamnagar, Gujarat, India.
Systemic lupus erythematosus (SLE) is an autoimmune disease characterized by damage to organs and cells, initially mediated by tissue-binding autoantibodies and immune complexes. Lymphomas have been frequently reported, but the association of SLE with acute leukemia is rare and likely coincidental. We report a case of a 40-year-old female admitted for an etiological diagnosis of fever and dyspnea with peripheral edema.
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