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Biomedical subjects

R Gorlick

Publications and source records attributed to R Gorlick.

30 records · Page 2Linked to original sources

Increased methotrexate polyglutamylation in acute megakaryocytic leukemia (M7) compared to other subtypes of acute myelocytic leukemia.

Acute myelocytic leukemia (AML) is a malignancy that is intrinsically resistant to methotrexate (MTX). AML blasts, when incubated with radiolabeled MTX, form lower amounts of long chain polyglutamates compared to acute lymphocytic leukemia (ALL) blasts, thus providing an explanation for their lack of responsiveness to MTX. Leukemic blasts obtained from two children with acute megakaryocytic leukemia (M7 subtype) when incubated with radiolabeled MTX showed increased accumulation of total as well as long chain MTX polyglutamates, comparable to levels previously demonstrated in another subtype of AML, acute monocytic leukemia (M5), as well as in blasts from patients with pre-B ALL. We suggest that M7-AML patients with blasts showing increased MTX polyglutamylation might benefit from treatment with MTX.

Adolescent↗

gamma-Glutamyl hydrolase and folylpolyglutamate synthetase activities predict polyglutamylation of methotrexate in acute leukemias.

Decreased methotrexate (MTX) long-chain polyglutamate formation is associated with MTX resistance whereas high levels of MTX polyglutamate accumulation are found in the blasts of leukemia patients who respond to therapy and have improved outcome. The steady-state level of long-chain MTX polyglutamates depends on the balance of activities of two enzymes: folylpolyglutamate synthetase (FPGS), which adds glutamates to MTX in a gamma-carboxyl linkage, and gamma-glutamyl hydrolase (GGH) or conjugase, which sequentially removes the terminal glutamate residue of MTX polyglutamates. FPGS and GGH activities as well as the formation of total and long-chain MTX polyglutamates were measured after incubation with [3H]MTX in 15 blast samples from patients with acute leukemias (myeloid and lymphoid). The ratio between GGH and FPGS activities was better at predicting the amount of polyglutamate accumulated in the 24-h [3H]MTX assay compared to the determination of either activity alone. The linear regression curve relating the relative levels of long-chain polyglutamates/total polyglutamates with the ratio of GGH/FPGS showed an r value of 0.81 (P < 0.001). These data suggest that the evaluation of both these enzymes at diagnosis may be used as a predictor of MTX polyglutamylation and therefore for response to MTX therapy and outcome.

Acute Disease↗

Effect of cyclin D1 overexpression on drug sensitivity in a human fibrosarcoma cell line.

BACKGROUND: Alterations in the expression of genes that control the cell cycle may be of critical importance in determining the sensitivity of cells and tumors to drugs (chemosensitivity) and radiation. Mutations and deletions of the p53 tumor suppressor gene in cell lines and tumors are associated with resistance to a variety of DNA-damaging agents. The effects of alterations in the cyclin genes and their products on drug action have not been studied. One of these genes, cyclin D1, is expressed in early G1 phase, and its protein product, together with the cyclin-dependent kinases CDK4 and CDK6, mediates the phosphorylation and functional inactivation of the retinoblastoma protein (pRb). Elevated levels of expression of cyclin D1 protein have been found in a variety of cancers, including breast cancer, head and neck cancer, non-small-cell lung cancer, and mantle cell lymphomas. PURPOSE: This study was conducted to investigate the effect of increased expression of cyclin D1 protein on the chemosensitivity profile of a human fibrosarcoma cell line. METHODS: Expression plasmids containing either the neomycin-resistance gene and the complementary DNA sequence encoding human cyclin D1 or the neomycin-resistance gene only (control) were transfected by lipofection into the human HT1080 fibrosarcoma cell line, and cell colonies resistant to the antibiotic neomycin (G418) were isolated. Cyclin D1 messenger RNA (mRNA) and protein levels were measured by ribonuclease protection and western blot analyses, respectively. Dihydrofolate reductase (DHFR) mRNA and protein levels were measured by northern blot and western blot analyses, respectively. The phosphorylation status of pRb was assessed by western blot analysis. Cell cycle analysis was performed by use of the technique of fluorescence-activated cell sorting. Cytotoxicity assays were carried out by use of the sulforhodamine blue assay. RESULTS: Of the 16 cyclin D1-transfected cell clones that were isolated, four were randomly selected for further study. Two cell clones expressed high levels of cyclin D1 mRNA and protein as compared with control cells transfected with plasmids containing the neomycin-resistance gene only. A relative increase in the phosphorylated form of pRb in cells expressing high versus low levels of cyclin D1 was also revealed by western blot analysis. There was an increased fraction of cells in the S and G2 phases of the cell cycle among cells expressing higher levels of cyclin D1. Transfectants with increased cyclin D1 expression also had increased DHFR mRNA and protein expression. Cytotoxicity assays revealed a statistically significant (P < .01) increase in resistance to methotrexate in cells expressing high levels of cyclin D1 compared with cells expressing lower levels. There was no difference in resistance to doxorubicin, paclitaxel (Taxol), and cytarabine. CONCLUSION: Alterations in the expression of cyclin D1 led to altered cell cycle distribution in a human sarcoma cell line. The associated increase in DHFR expression resulted in increased resistance to methotrexate but had no effect on other classes of anticancer agents. IMPLICATIONS: These results indicate that alterations in cell cycle genes may differ in their effects on cytotoxicity. It will be important to determine the effects of alterations of other cell cycle regulatory genes on the responses of cells to specific classes of drugs. Tumors with overexpression of cyclin D1 may be relatively refractory to methotrexate treatment.

Antimetabolites, Antineoplastic↗

Resistance mechanisms to methotrexate in tumors.

The mechanisms of intrinsic and acquired resistance to methotrexate (MTX) in human tumors are reviewed herein. In blasts from patients with acute lymphocytic leukemia, resistance mechanisms found are decreased uptake and increased dihydrofolate reductase (DHFR) activity. A major cause of intrinsic resistance to MTX in soft tissue sarcoma cells and in acute myelocytic leukemia appears to be a lack of drug retention, due mainly to low levels of polyglutamylation. A novel association between lack of the retinoblastoma protein and intrinsic MTX resistance has been found. This has been attributed to an increase in DHFR activity, due to an increased rate of transcription of this gene, stimulated by an increase in levels of free E2F, not sequestered by hypophosphorylated retinoblastoma protein.

Antimetabolites, Antineoplastic↗

Resistance Mechanisms to Methotrexate in Tumors.

The mechanisms of intrinsic and acquired resistance to methotrexate (MTX) in human tumors are reviewed herein. In blasts from patients with acute lymphocytic leukemia, resistance mechanisms found are decreased uptake and increased dihydrofolate reductase (DHFR) activity. A major cause of intrinsic resistance to MTX in soft tissue sarcoma cells and in acute myelocytic leukemia appears to be a lack of drug retention, due mainly to low levels of polyglutamylation. A novel association between lack of the retinoblastoma protein and intrinsic MTX resistance has been found. This has been attributed to an increase in DHFR activity, due to an increased rate of transcription of this gene, stimulated by an increase in levels of free E2F, not sequestered by hypophosphorylated retinoblastoma protein.

Journal Article↗

Molecular mechanisms of resistance to antifolates, a review.

Methotrexate (MTX) is a clinically important antifolate that has been used in combination with other chemotherapeutic agents in the treatment of malignancies including acute lymphocytic leukemia, osteosarcoma, carcinomas of the breast, head and neck, choriocarcinoma and non-Hodgkin's lymphoma. The primary target of MTX is the enzyme dihydrofolate reductase (DHFR) which catalyzes the reduction of folate and 7,8-dihydrofolate to 5,6,7,8-tetrahydrofolate. Understanding of MTX action has revealed how cells acquire resistance to this drug. The four known mechanisms of MTX resistance are a decrease in the uptake of the drug, a decrease in the retention of the drug due to defective polyglutamylation or an increase in polyglutamate breakdown, an increase in the enzyme activity and a decrease in the binding of MTX to DHFR. The molecular basis for some of these mechanisms has been elucidated in MTX resistant cell lines; in particular the occurrence of gene amplification resulting in increased DHFR and point mutations resulting in altered DHFR with reduced affinity for MTX. Cloning of the human folylpolyglutamate synthase gene and the reduced folate transport gene have been reported recently and should facilitate the identification of the molecular basis of these resistant phenotypes. DHFR protein has been shown to regulate its synthesis by exerting an inhibitory influence on its own translation. Addition of MTX relieves this inhibition thus providing a possible molecular explanation for the rapid rise in DHFR activity noted in some cells after MTX administration. Alterations in genes involved in regulating the cell cycle such as cyclin D1 and the retinoblastoma (Rb) gene have also been shown to influence cellular response to MTX. Overexpression of cyclin D1 in HT1080, a human fibrosarcoma cell line, results in decreased MTX sensitivity. The molecular basis of this observation is under investigation. Abnormalities in the Rb gene may also have profound effects on MTX sensitivity. Rb interacts with the family of transcription factors called E2F reducing transcription of genes that contain E2F binding sites in the promoter regions e.g. DHFR. When Rb is deleted or rendered nonfunctional levels of "free" or unbound E2F are high resulting in enhanced transcription of genes such as DHFR. This results in increased DHFR protein and may lead to MTX resistance. As the knowledge regarding mechanisms of resistance increases newer approaches to circumvent such resistance or to target resistant cells can be undertaken.

Antineoplastic Agents↗

Multicentric osteosarcoma, Rothmund-Thomson syndrome, and secondary nasopharyngeal non-Hodgkin's lymphoma: a case report and review of the literature.

PURPOSE: Rothmund-Thomson syndrome (RTS) is an autosomal recessive disease characterized by poikiloderma, photosensitivity, skeletal deformities, and other changes. It is also associated with an increased risk of malignancies, including osteosarcoma. Sixteen previous cases of RTS and osteosarcoma have been reported. PATIENT: A patient with RTS in whom multicentric osteosarcoma developed is described. After surgery and chemotherapy, a secondary malignant neoplasm (SMN) developed consistent with nasopharyngeal non-Hodgkin's lymphoma. RESULTS: The patient was treated with anti-CD20 monoclonal antibody and is in complete remission. CONCLUSION: This is the first report of a patient with RTS treated for osteosarcoma in whom a SMN developed. Potential factors involved in this SMN include genetic predisposition and previous chemotherapy.

Adult↗

Osteosarcoma associated with absent thumbs: a report of two cases.

An 8-year-old Hispanic boy with a hypoplastic left thumb, absent right thumb, and short stature experienced right leg pain and limp. A right tibial lesion was imaged and found to be osteosarcoma on biopsy. A 6-year-old Hispanic girl with congenitally absent thumbs experienced a pathologic fracture of her left femur after a minor sports injury. The radiologic abnormality seen was diagnosed as osteosarcoma on biopsy. Both patients continue to do well after intensive preoperative and postoperative high-dose chemotherapy and definitive reconstructive limb surgery. Osteosarcoma has been linked to several congenital syndromes in which absent thumbs are a feature. These two patients with absent thumbs and no definable syndrome experiencing osteosarcoma suggest that congenitally absent thumbs might be a risk factor for osteosarcoma in the absence of a syndrome.

Bone Neoplasms↗

Numb chin syndrome in Ewing sarcoma.

The numb chin syndrome consists of unilateral hypesthesia of the chin and lower lip. In adults, it is often associated with metastatic disease to the mandible, base of the skull, or leptomeninges. In children, it has been associated with infiltration of the inferior alveolar nerve by leukemic cells. We describe two cases of numb chin syndrome in children with Ewing sarcoma. In a child with a solid tumor, this symptom seems to have an ominous meaning and should lead to the investigation of progressive skeletal involvement.

Adolescent↗

Ewing's sarcoma in a patient with congenital optic atrophy.

PURPOSE: The authors report Ewing's sarcoma in a patient with congenital optic atrophy. Congenital optic atrophy is an autosomal dominant disorder with variable expression. It manifests itself within the first decade of life and is accompanied by changes in visual acuity. This condition has not been known to cause a predisposition toward malignancy. PATIENT AND METHODS: In this article, a 16-year-old girl with dominant optic atrophy and Ewing's sarcoma is described. RESULTS: After tumor resection, the patient was successfully treated for Ewing's sarcoma with chemotherapy and radiation therapy. Today she has no evidence of malignancy. However, she continues to have deterioration of her visual acuity. CONCLUSION: This report of cancer in a child with dominant optic atrophy suggests the possible need for a higher degree of suspicion of malignancy in these patients.

Adolescent↗