Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027947 (neutropenia)
17,527 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Neutropenia is a common and often dose limiting side effect of some chemotherapy regimens. The aim of this study was to investigate the ability of an immunomodulator, glycosaminylmuramyl dipeptide (GMDP, CAS 78113-36-7, romurtide) to reduce chemotherapy induced neutropenia. BALB/c mice were treated with 200 mg kg-1 cyclophosphamide (CY) to induce a reversible neutropenia lasting approximately 6-7 days. There was no change in the duration or depth of neutropenia in mice treated with GMDP for 3 consecutive days (2.5 or 25 mg kg-1) starting the day after CY injection. In addition, at the doses used, the time of administration of GMDP relative to CY did not alter this response. However, a marked neutrophilia compared to controls was consistently observed in all cases. Neutrophil counts of up to 14 times the baseline value were measured 6-7 days after the induction of neutropenia. GMDP had no effect in the absence of CY. Less variation was seen in white cell counts of older non-SPF mice treated with CY. When the activity of GMDP (5 mg kg-1) was compared with G-CSF (granulocyte colony stimulating factor, 100 micrograms kg-1) in these animals, GMDP showed a consistent trend to reduce the length of neutropenia, however, under the conditions tested only G-CSF treatment resulted in a significant reduction in the duration of neutropenia. In the 12-week-old mice, the neutrophilia seen with both G-CSF and GMDP was much smaller than in the 8-week-old mice, and was not significantly different from that in control mice treated with CY alone.
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PMID:Study on the reduction of chemotherapy induced neutropenia in mice using glucosaminylmuramyl dipeptide. 1048 20

Interleukin-11 (IL-11, CAS 145941-26-0) is a cytokine that ameliorates thrombocytopenia induced by chemotherapy. Granulocyte colony-stimulating factor (G-CSF) is frequently used clinically as an adjuvant therapy to ameliorate neutropenia. In this study, it has been investigated whether IL-11 influences the hematopoietic action of G-CSF in vitro. IL-11 alone did not stimulate CFU-Meg colony formation in the absence of interleukin-3 (IL-3), but did in the presence of IL-3. However, IL-11 alone stimulated the formation of CFU-E, BFU-E and CFU-GM colonies, which were further enhanced by IL-3. G-CSF alone stimulated in a concentration dependent manner colony formation of CFU-GM and CFU-E, but not BFU-E or CFU-Meg. The addition of IL-11 enhanced the stimulatory effect of G-CSF on CFU-GM colony formation, and enabled G-CSF to stimulate colony formation of BFU-E, but not CFU-E. The addition of IL-3 further enhanced the stimulatory effect of G-CSF on CFU-E, BFU-E, and CFU-GM colony formation. However, G-CSF was unable to stimulate CFU-Meg colony formation for any of the cytokine combinations tested. These studies demonstrate that IL-11 has significant stimulatory effects on G-CSF-induced CFU-GM colony formation, suggesting that the therapeutic combination of the two growth factors could be beneficial for the treatment of myelosuppression induced by chemotherapy.
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PMID:Effects of interleukin-11 on the hematopoietic action of granulocyte colony-stimulating factor. 1248 58