Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0854467 (myelosuppression)
5,932 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Linezolid (LZD) is the first oxazolidinone antibiotic that is effective against drug-resistant gram-positive organisms. Hematological toxicities such as thrombocytopenia, anemia, and leukocytopenia are common in LZD therapy. However, LZD-induced pure red cell aplasia (PRCA) is very rare. A 56-year-old man with myelodysplastic syndrome underwent allogeneic bone marrow transplantation from a human leukocyte antigen-matched and ABO blood type-matched unrelated male donor. He had bacteremia caused by Staphylococcus epidermidis after engraftment of neutrophils and red blood cells. We first administered vancomycin, but then changed to intravenous LZD because of kidney damage. Two weeks after LZD therapy, the patient's hemoglobin and reticulocyte levels were 6.8 g/dL and 0.3%, respectively. Bone marrow examination revealed red blood cell aplasia (myeloid/erythroid ratio was 402). The patient showed rapid recovery of normal erythropoiesis within 2 weeks of LZD cessation. It is important to be aware of the hematological effects associated with LZD in the setting of stem cell transplantation,particularly for those with pre-existing myelosuppression, renal insufficiency, and those receiving concomitant drugs that produce bone marrow suppression. We advocate that a reticulocyte count be performed periodically for detecting bone marrow suppression, including PRCA, during LZD therapy.
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PMID:Linezolid-induced pure red cell aplasia in a patient with Staphylococcus epidermidis infection after allogeneic stem cell transplantation. 2248 45

LT from ABO-I donors requires preconditioning regimens to prevent postoperative catastrophic AMR. NAC for HBL is known to cause myelosuppression leading to a reduction in the number and function of lymphocytes. We investigated this chemotherapy-induced myelosuppression in HBL patients listed for LT from ABO-I donors with reference to the kinetics of B, T cells, and anti-ABO blood type isoagglutinin titers. Between 2005 and 2015, of the 319 patients who underwent LDLT at our institute, 12 were indicated for unresectable HBL. Three patients with unresectable HBL who underwent LDLT from ABO-I donors are included in this study. Immunosuppression consisted of a standard regime of tacrolimus and low-dose steroids as in ABO compatible/identical LDLT. No additional preoperative therapies for B-cell depletion were used. Absolute lymphocyte counts, lymphocyte subsets (including CD20+ B cells, CD3+CD4+ T cells and CD3+CD8+ T cells), and anti-ABO blood type isoagglutinin titers were measured before LDLT and postoperatively. The median age at diagnosis was 19 months (range, 3-31 months). The median follow-up was seven months (range, 6-15 months). The median interval from the last NAC to LDLT was 33 days (range, 25-52 days). The median interval from LDLT to adjuvant chemotherapy was 28 days (range, 22-36 days). The counts of CD20+ B cells before LDLT were depleted to median 5 cells/mm(3) (range, 0-6 cells/mm(3)). There was a transient rebound in the CD20+ B cell counts on day seven (maximum of 82 cells/mm(3)) followed by a decline starting at 14 days after LDLT that was sustained for the duration of adjuvant chemotherapy. Anti-ABO blood type isoagglutinin titers were lowered to between 1:1 and 1:16 before LDLT and remained low for the duration of follow-up in this study. All of the three patients remained in good health without either acute cellular or AMR after LDLT. The B-cell depletion that occurs after cisplatin-based chemotherapy for HBL may help accomplish safe ABO-I LDLT in children without the use of additional conditioning regimens for prevention of AMR.
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PMID:Chemotherapy-induced B-cell depletion in hepatoblastoma patients undergoing ABO-incompatible living donor liver transplantation. 2701 66