A little is known about the specific marker on the surface of acute leukemia cells, leading to the lack of the specific diagnosis method for acute leukemia. Therefore, in this study, cell-systematic evolution of ligands by exponential enrichment (cSELEX) was performed to screen the aptamers binding to CD33(+)/CD34(+) cells from the patients with acute myeloblastic leukemia (AML) of M(2) subtype (AML-M₂) so as to provide the basis for finding the specific marker on the surface of AML-M(2) CD33(+)/CD34(+) cells. Firstly, AML-M₂ CD33(+)/CD34(+) cells were sorted and used as targeted cells, and normal CD33(+)/CD34(+)cells were used as counter-targeted cells; the aptamers binding to CD33(+)/CD34(+) cells from patients with AML-M₂ were screened from the single strand deoxyribonucleic acid (ssDNA) library by cSELEX. Subsequently, each aptamer structure was analyzed after cloning and sequencing. The results indicated that after 13 round of screenings, the enrichment of aptamers in the ssDNA library was ranged from 0.7% to 52.9%, and reached steady state at 13th round screening. Sequence analysis for 30 aptamers showed that most of the aptamers born one of the three conserved sequences of CCCCT, CTCTC, and CTCAC. Secondary structure analysis indicated that three different secondary structures existed in these aptamers. It is concluded that the aptamers binding to the AML-M(2) CD33(+)/CD34(+) cells are successfully screened, which lay the basis for further looking for the specific marker on the surface of AML-M₂ CD33(+)/CD34(+) cells, and the molecular diagnosis of the AML-M₂ leukemia.
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Cureus
October 2024
Department of Hematology, Taizhou Central Hospital (Taizhou University Hospital), Taizhou, CHN.
Granulocytic sarcoma (GS), also known as extramedullary myeloid tumor, is a rare malignant neoplasm composed of immature myeloid cells. Although it is most commonly associated with acute myeloid leukemia (AML), a subset of GS cases can occur prior to the development of AML. GS can present in a variety of extramedullary locations, including bone, skin, lymph nodes, and the female reproductive system.
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October 2024
Department of Immunology, General Hospital of Athens "G. Gennimatas", Athens, Greece.
Mol Ther Methods Clin Dev
December 2024
University of Washington, Department of Medicine, Division of Medical Genetics, Seattle, WA 98195, USA.
We developed an HSC gene therapy approach that consists of HSC mobilization and intravenous injection of HSC-tropic HDAd vectors. To achieve therapeutically relevant numbers of corrected cells, we incorporated expansion of transduced cells. We used an HDAd vector for a multiplex adenine base editing approach to (1) remove the region within CD33 that is recognized by gemtuzumab ozogamicin (GO) (Mylotarg), and (2) create therapeutic edits within the HBG1/2 promoters to reactivate γ-globin/HbF.
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December 2024
Department of Pediatrics, Division of Hematology/Oncology, Vanderbilt-Meharry Sickle Cell Disease Center of Excellence, Vanderbilt University Medical Center, Nashville, TN.
Transpl Immunol
December 2024
Bone Marrow Transplantation Unit, Hematology Department "G.Papanicolaou" Hospital, Thessaloniki, Greece; Public Cord Blood Bank, Hematology Department, "G.Papanicolaou" Hospital, Thessaloniki, Greece.
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