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Frank Griesinger

Publications and source records attributed to Frank Griesinger.

21 records · Page 2Linked to original sources

Increased risk for therapy-associated hematologic malignancies in patients with carcinoma of the breast and combined homozygous gene deletions of glutathione transferases M1 and T1.

The most serious long-term complications of anti-tumor therapy are secondary malignancies. Parameters which might allow an estimation of the individual risk to develop a therapy-induced neoplasia are urgently needed. We examined whether the genotypes of the glutathione S-transferases (GST) M1 and T1, which metabolize various cytostatic drugs, as well as reactive oxygen species, influence the risk for secondary neoplasia. In a retrospective study, we analyzed peripheral blood lymphocyte or bone marrow DNA samples from 213 patients with acute myeloid leukemia (AML) and 128 with myelodysplastic syndromes (MDS) 44 of whom suffered from therapy-associated AML/MDS. The control group consisted of 239 healthy individuals with comparable composition as to race and sex. GSTM1 and GSTT1 were analyzed by multiplex PCR. Comparison between patients and control group revealed a significant (P=0.0003) overrepresentation of combined deletions of both GSTM1 and GSTT1 (double null genotype) in the group of patients with AML/MDS secondary to chemo- and/or radiotherapy of a carcinoma of the breast. In this group, 55% of the patients displayed the double null genotype as compared with 8.8% in the control group. We conclude that patients with carcinoma of the breast and inheritance of a combined gene deletion of GSTM1 and GSTT1 might bear an increased risk to develop a secondary therapy-induced hematologic neoplasia. An insufficient detoxification of cytostatic drugs such as cyclophosphamide is suggested to represent the underlying pathomechanism.

Adult↗

Identification of an ETV6-ABL2 fusion transcript in combination with an ETV6 point mutation in a T-cell acute lymphoblastic leukaemia cell line.

ETV6, a member of the Ets family of transcription factors, is frequently rearranged to various translocation partners in human leukaemias. We previously described a CD3+/TCRalpha/beta+ mature T-cell acute lymphoblastic leukaemia (T-ALL) cell line, MT-ALL, carrying a t(1;10;12)(q25; p13;p13) with cytokine-inducible lineage switch into the myeloid lineage. Using reverse transcription polymerase chain reaction with primers complementary to ETV6 and ABL2, two ETV6-ABL2 fusion transcripts were identified in MT-ALL which resulted from alternative splicing of an ABL2 exon. The fusion transcripts code for putative ETV6-ABL2 fusion proteins containing the pointed domain of ETV6 and almost the complete ABL2 protein, including the SH2, SH3 domains and the protein tyrosine kinase domain (PTK). Identical ETV6-ABL2 fusion transcripts have been reported in an acute myeloid leukaemia (AML) M3 cell line, carrying both a t(15;17)(q22;q21) and a t(1;12)(q25;p13) with unusual inducible differentiation to eosinophils, and in a patient with AML-M4eo. Interestingly, the non-rearranged allele of ETV6 in the MT-ALL cell line carries an arginine to histidine (R399H) mutation which affects a conserved amino acid in the ets DNA binding domain.

Amino Acid Sequence↗

Antitumor effects of the cytotoxic luteinizing hormone-releasing hormone analog AN-152 on human endometrial and ovarian cancers xenografted into nude mice.

OBJECTIVE: Most human endometrial and ovarian cancers express receptors for luteinizing hormone- releasing hormone. These receptors can be used for targeted chemotherapy with cytotoxic luteinizing hormone-releasing hormone analogs such as AN-152, in which doxorubicin is linked to [D-Lys(6)]luteinizing hormone-releasing hormone. STUDY DESIGN: The antitumor effects of doxorubicin and AN-152 were assessed in vivo in human luteinizing hormone-releasing hormone receptor-positive HEC-1B endometrial cancers and NIH:OVCAR-3 ovarian cancers and in the luteinizing hormone-releasing hormone receptor-negative SK-OV-3 ovarian line. Nude mice bearing these tumors subcutaneously were injected intravenously with saline solution (control), AN-152, or doxorubicin at equimolar doses. Luteinizing hormone-releasing hormone receptor expression in tumors and specimens of human reproductive (n = 5) and nonreproductive (n = 15) normal tissues and in hematopoietic stem cells were analyzed with reverse transcriptase-polymerase chain reaction and radioligand binding assay. RESULTS: The tumor volumes of luteinizing hormone-releasing hormone receptor-positive HEC-1B and NIH:OVCAR-3 cancers were reduced significantly (P <.001) 1 week after treatment with AN-152 at 700 nmol/20 g or at 300 nmol/20 g. No toxic side effects were observed. Treatment with doxorubicin arrested tumor growth but did not reduce tumor volume. Doxorubicin at 700 nmol/20 g caused a high mortality rate and at 300 nmol/20 g (8.7 mg/kg) caused a loss of body weight, but no deaths occurred. The growth of luteinizing hormone-releasing hormone receptor-negative SK-OV-3 cancers was not affected by AN-152. Normal human nonreproductive tissues, hematopoietic stem cells, and vaginal tissue did not express luteinizing hormone-releasing hormone receptors, but luteinizing hormone-releasing hormone receptors were found in the ovary, fallopian tube, cervix, endometrium, and myometrium. CONCLUSION: Targeted chemotherapeutic luteinizing hormone-releasing hormone analog AN-152 is more effective and less toxic than cytotoxic radical doxorubicin on luteinizing hormone-releasing hormone receptor-positive tumors. AN-152 could be considered for targeted chemotherapy in patients with ovarian or endometrial cancers.

Animals↗