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Biomedical subjects

R McCaffrey

Publications and source records attributed to R McCaffrey.

At least 19 recordsLinked to original sources

Isolation and characterization of NUC70, a cytoplasmic, hematopoietic apoptotic endonuclease.

Endonucleolytic DNA fragmentation is the common end point and the prevailing indicator of apoptosis. We have identified a 70-kDa endonuclease (NUC70) that is activated in drug-induced apoptosis of human hematopoietic cells. We purified NUC70 to homogeneity and generated a rabbit polyclonal antibody to distinguish it from previously identified nucleases. Biochemical characterization of isolated NUC70 demonstrates that it is Ca2+/Mg2+-dependent and active over a pH range of 6-8. When incubated with isolated HeLa nuclei, NUC70 was capable of generating internucleosomal DNA fragmentation. This endonucleolytic activity was inhibited by Zn2+, aurintricarboxylic acid, N-ethylmaleimide, spermine, and iodoacetamide. Western immunoblots using the anti-NUC70 antibody and DNA-SDS-polyacrylamide gel electrophoresis assays indicate that NUC70 expression and activity is restricted to human hematopoietic cells. No such activity was detected in human epithelial cell lines or murine hematopoietic cells. We also observed no difference in levels of NUC70 expression between apoptotic and nonapoptotic cells, suggesting that activation of NUC70 may be by posttranslational modification. We demonstrate that NUC70 activity is diminished in cells pretreated with the caspase inhibitors z-DEVD-fmk, z-VAD-fmk, and Z-CH2-Asp-DCB. Time course studies of cytoplasmic and nuclear endonuclease activities during apoptosis show that NUC70 is a cytoplasmic endonuclease that is translocated to the nucleus after the initiation of apoptosis. We confirmed this with immunostaining studies using anti-NUC70 antibody. These results demonstrate that NUC70 is an endogenous cytoplasmic endonuclease that is activated during apoptosis in a caspase-dependent mechanism.

Animals↗

Augmentation of vincristine cytotoxicity by megestrol acetate.

PURPOSE: To determine the effect of a semisynthetic progesterone, megestrol acetate (MA), on the cytotoxicity of various chemotherapeutic agents including vincristine, doxorubicin, actinomycin-D, taxol, vinblastine and colchicine in cell lines with or without P-gp expression. METHODS: Three cell lines with high P-gp expression (two colon cancer and one leukemia), and a control cell line with no P-gp expression were exposed to chemotherapeutic agents in the presence or absence of MA and drug sensitivity was determined using the MTT colorimetric assay. P-gp-170 expression was detected by flow cytometry using JSB-1 monoclonal antibody and the functionality of MDR expression was tested by rhodamine-123 uptake studies. In vitro drug accumulation studies were performed using [3H]-vincristine. The results were subjected to paired t-test analysis and 95% confidence intervals were determined in cytotoxicity tests. RESULTS: MA augmented the cytotoxicity of vincristine, but not doxorubicin, actinomycin-D, taxol, vinblastine or colchicine in the three P-gp-expressing cell lines, whereas verapamil augmented the cytotoxicity of doxorubicin and vincristine. MA did not augment the cytotoxicity of vincristine in the P-gp-negative HUT-102 cell line. CONCLUSION: MA augmented vincristine cytotoxicity in P-gp-expressing cell lines. However, this phenomenon did not occur with the other classic MDR drugs. Therefore, the augmentation of vincristine cytotoxicity by MA can be explained either by involvement of a different mechanism that coexists with the mdr-1 phenotype or by the presence of a different affinity or binding site on the P-gp molecule for MA compared to that for the other classic MDR drugs and verapamil.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Ovarian steroid cell tumors: sonographic characteristics.

The goal of the gynecologist is to detect ovarian tumors in their earliest stages. Small virilizing tumors, which barely affect the size of the ovaries, are such lesions. Since the introduction of transvaginal sonography it is technically possible to detect small intraovarian neoplasms. Three cases of virilizing steroid cell tumors in postmenopausal women with ovarian volumes just exceeding the normal sizes for age are presented. High-frequency transvaginal ultrasound and color Doppler studies to measure flow parameters were used. These small tumors had different echogenicity from the surrounding ovarian tissue and two had low impedance-to-flow values. Gray-scale transvaginal sonography combined with color Doppler studies can make the diagnosis of small steroid cell tumors easier and, at times, better than other, more costly imaging modalities.

Aged↗

Induction of apoptosis by cordycepin in ADA-inhibited TdT-positive leukemia cells.

The nucleoside analogue cordycepin (3'-deoxyadenosine), when protected against ADA deamination, is specifically cytotoxic for TdT-positive leukemia cells. Cordycepin-treated, ADA-inhibited, TdT-positive cells undergo the classic changes associated with drug-induced apoptosis: reduction in cell volume, chromatin clumping, membrane blebbing, and 180-bp multimer DNA laddering on agarose gels. In common with the apoptosis seen in normal TdT-positive thymocytes, following exposure to various agents, apoptosis induced by cordycepin in TdT-positive leukemia cells was associated with increased protein kinase A (PK-A) activity. Unlike thymocyte apoptosis however, no elevation in cAMP levels was seen preceding the rise in PK-A activity. Ex vivo we show that cordycepin monophosphate can activate PK-A as efficiently as cAMP. On this basis we speculate that cordycepin monophosphate in TdT-positive cells may be able to activate PK-A in place of cAMP, and that PK-A may phosphorylate TdT, augmenting its activity as an endonuclease. In cell-free experiments, the activity of recombinant TdT as an endonuclease digesting supercoiled plasmid DNA into linear fragments was dramatically increased following phosphorylation of TdT by PK-A. A role for TdT as an apoptotic endonuclease in TdT-positive leukemia cells following cordycepin exposure is now the subject of on-going work.

Adenosine Deaminase Inhibitors↗

Development of HIV-1 resistance to (-)2'-deoxy-3'-thiacytidine in patients with AIDS or advanced AIDS-related complex.

OBJECTIVE: To determine the rate of development of in vitro HIV resistance to (-)2'-deoxy-3'-thiacytidine (3TC) and relate the effect of dose to emergence of resistance. METHODS: HIV-infected men and non-pregnant women, aged > or = 18 years, with a CD4 count < or = 300 x 10(6)/l cells were followed in a Phase I/II study, in which they were evaluated for tolerance to 3TC and effect of this agent with regard to viral susceptibility. Peripheral blood and plasma samples were collected at regular intervals for analysis. HIV was isolated using umbilical cord blood mononuclear cells as targets. These cells were also used in determinations of median inhibitory drug concentration. Specific amplification of the 184 mutation site, associated with HIV resistance to 3TC, was performed by polymerase chain reaction, using specific primer pairs, on DNA harvested from infected peripheral blood mononuclear cells (PBMC) of donors or, alternatively, on DNA that had been reverse transcribed from plasma-associated HIV RNA. RESULTS: Phenotypic resistance was detected in approximately one-third of individuals studied, who were followed between 8 and 56 weeks. Development of 3TC resistance occurred independently of dose, although time of first appearance of resistant HIV-1 variants appeared reduced at high 3TC doses. Amino-acid changes at codon 184 in HIV-1 reverse transcriptase were associated with, and preceded, the development of phenotypic 3TC resistance. Most commonly, a Met to Ile substitution appeared transiently before being superceded by a Val substitution at codon 184. CONCLUSIONS: In vitro resistance to 3TC developed in a high proportion of subjects who received prolonged monotherapy with this drug. The development of resistance to 3TC was associated with appearance of mutated viral forms and the disappearance of wild-type virus, with regard to codon 184, in both patient plasma and PBMC.

AIDS-Related Complex↗

2',3'-Dideoxyadenosine killing of TdT-positive cells is due to a trace contaminant.

We have previously reported that the chain-terminating nucleoside analogue 2',3'-dideoxyadenosine (ddA) is specifically cytotoxic for TdT-positive cells in the co-presence of the adenosine deaminase (ADA) inhibitor coformycin (CF). Further studies with ddA/CF revealed that cytotoxicity occurs only if ddA is supplied from the Calbiochem or Fluka companies. ddA supplied from other commercial sources (Pharmacia, Sigma) or the NCI Pharmaceutical Resources Branch is non-cytotoxic. To explore the basis for this difference, ddA from various sources was subjected to reverse-phase high-pressure liquid chromatography (HPLC) analysis. The Calbiochem and Fluka ddA had a unique HPLC peak, with a retention time of 12.8 min, representing a contaminant of less than 0.1% of the bulk material applied to the C-18 HPLC column. Study of all HPLC peaks resolved from the bulk material showed cytotoxic activity in only the 12.8 min peak. To identify the nature of the unknown compound, we compared HPLC characteristics of the synthetic intermediates and byproducts of ddA synthesis to the peak eluting at 12.8 min. Of these, only 3'-deoxyadenosine (cordycepin) had similar HPLC characteristics. In addition, in the co-presence of CF, cordycepin was specifically cytotoxic (IC50 < 0.5 microM) for all TdT-positive cell lines tested. Cytotoxicity was seen in TdT-negative cells only at concentrations 10-100-fold higher. We conclude that our previous report on ddA/CF as a TdT-specific cytotoxic combination was due to contamination of the ddA supplied by Calbiochem by cordycepin. ddA itself is non-cytotoxic for TdT-positive cells. Cordycepin in the co-presence of an ADA inhibitor may be effective in the treatment of TdT-positive hematological malignancies.

Cell Survival↗

Peripheral blood hairy cell leukemia cells express only low affinity IL-2 receptors.

Purified leukemia cells from three patients with hairy cell leukemia were studied for IL-2 receptor status. All samples expressed the p55IL-2 receptor subunit. However, none demonstrated sensitivity to the IL-2-diphtheria toxin conjugate, DAB486IL-2, which shows selective cytotoxicity for high affinity IL-2 receptor-bearing cells. In the one case studied with 125I-IL-2 binding, only low affinity IL-2 receptors were noted. These data suggest that hairy cell leukemia cells express only low affinity IL-2 receptors and are insensitive to DAB486IL-2.

Diphtheria Toxin↗

PHA induces IL-2 receptors on B-CLL cells and is a potential biological response modifier for the LIL-2-diphtheria toxin, DAB486IL-2.

DAB486IL-2 is an IL-2-diphtheria toxin conjugate which was developed to be specifically cytotoxic to cells bearing high affinity IL-2 receptors. The high affinity IL-2 receptor is a heterodimer comprising p55 and p75 subunits. While the p75 subunit appears to be ubiquitously expressed among the common North American leukemias and lymphomas, the p55 subunit is more restricted in its expression. To broaden the therapeutic relevance of the DAB486IL-2 we have sought physiologically feasible inducers of the p55 IL-2 receptor subunit. This report describes that PHA, in vitro, induces the p55 IL-2 receptor subunit on initially p55-negative B-CLL cells and converts toxin-insensitive leukemia cells to a toxin-sensitive state.

Diphtheria Toxin↗

Clinical activity of a cytotoxic fusion protein in the treatment of cutaneous T-cell lymphoma.

PURPOSE: A phase I trial in patients with refractory hematologic malignancies was performed at our institution to test the clinical relevance of the selective cytotoxic activity of the interleukin-2 (IL-2)-diphtheria toxin fusion protein, DAB486IL-2. A subset of five patients from this trial, all with cutaneous T-cell lymphomas (CTCL), forms the basis of this report. PATIENTS AND METHODS: Two treatment schedules were used. One patient received DAB486IL-2 at a dose of 0.075 mg/kg/d intravenous (i.v.) bolus over 15 minutes daily for 5 consecutive days. The other four patients received DAB486IL-2 at a dose of 0.1 mg/kg as an i.v. infusion over 180 minutes weekly for 5 consecutive weeks. RESULTS: Three of the five CTCL patients achieved significant tumor responses. One patient attained a complete clinical and pathologic response (CR), which has been sustained without any interval treatment for 33+ months. Two other patients achieved partial responses (PRs) of 17+ and 4 months' duration, respectively. Treatment was well tolerated. The most common adverse effect was a transient increase in hepatic transaminases experienced by all five patients. CONCLUSION: The growth factor-cytotoxin fusion protein DAB486IL-2 demonstrated significant clinical activity with acceptable toxicity in a group of heavily pretreated patients with CTCL.

Diphtheria Toxin↗

Postpartum osteomyelitis caused by group B streptococcus.

Postpartum infections caused by group B streptococci are generally limited in scope. We report a case of vaginal colonization with group B streptococcus that progressed in the postpartum period to osteomyelitis that necessitated total hip replacement. The patient had no risk factors predisposing to streptococcal osteomyelitis. An altered immune status in pregnancy and intrapartum bacteremia may be involved in the pathogenesis of this infection.

Adult↗

2',3'-Dideoxyadenosine is selectively toxic for TdT-positive cells.

The 2',3'-dideoxynucleosides (ddNs) are currently undergoing clinical evaluation as antiretroviral agents in HIV-infected individuals. When phosphorylated, the ddNs (ddNTPs) function as chain-terminating substrate analogues with reverse transcriptase, thereby inhibiting HIV replication. These nucleoside analogues can also inhibit, by chain-terminating additions, the primitive lymphoid DNA polymerase, terminal deoxynucleotidyl transferase (TdT). To determine the effect of possible intracellular chain-terminating additions of ddNMPs by TdT, we exposed a series of TdT-positive and TdT-negative cell lines to 2',3'-dideoxyadenosine (ddA), a representative ddN. At ddA concentrations 25-fold higher than required for inhibition of HIV replication, progressive dose-related cytotoxicity was observed in the TdT-positive cell lines. This was accentuated by the adenosine deaminase inhibitor Coformycin (CF), presumably by enhancing the intracellular generation of ddATP from ddA. A central role of TdT in mediating the ddA/CF cytotoxicity was suggested by studies in a pre-B-cell line rendered TdT positive by infection with a TdT cDNA-containing retroviral vector. After a 48-hour continuous exposure period to 250 mumol/L ddA and 30 mumol/L CF, 30% cell death was observed in the TdT-negative parental line, whereas 90% cell death was observed in the TdT-positive daughter line. Exposure of fresh TdT-positive leukemic cells to ddA/CF for 72 hours ex vivo resulted in cytotoxicity (six cases of acute lymphocytic leukemia [ALL]) while not affecting TdT-negative acute leukemic cells (six cases). We conclude that ddA/CF selectively damages TdT-positive cells, presumably by chain-terminating additions of ddAMP, and that this may have therapeutic relevance in TdT-positive malignant disease.

Cell Division↗

Antiproliferative effects of suramin on lymphoid cells.

Suramin, a polyanionic drug used in the treatment of Rhodesian and Gambian trypanosomiasis and more recently in the acquired immune deficiency syndrome, is a potent inhibitor of the constitutive mammalian DNA polymerases alpha, beta, and gamma and the lymphoid-specific polymerase terminal deoxynucleotidyl transferase. To define the effect of this inhibition on cell proliferation, we studied the effect of suramin on several cell lines in culture and in mice in vivo. Suramin, at 200 micrograms/ml (which is regularly achieved in the plasma of patients), had no effect on the proliferation of 4 of 5 nonlymphoid cell lines. In contrast, exposure of 10 lymphoid cell lines to 200 micrograms/ml suramin for 4 days caused significant growth inhibition in 8 of these 10 lines. Suramin given i.p. to BALB/cBYJ mice at clinically relevant doses (15-60 mg/kg) caused profound and prolonged thymic atrophy within 5-7 days of drug administration (greater than a 90% weight loss in mice treated with 60 mg/kg). Thymic sections revealed severe cortical loss, prominence of dendritic cells, and vacuolated macrophages. Liver, peripheral blood, spleen, kidney, and total body weights were not affected. The apparent selective lymphocytotoxicity of suramin may represent an important property of this drug. We speculate that this may account for the persistent immune suppression reported in suramin-treated acquired immune deficiency syndrome patients.

Animals↗

The effect of the plant cell inhibitor propachlor (alpha-chloro-N-isopropyl-acetanilide) on the cell cycle of L1210 cells as evaluated by flow cytometry.

Previously it was reported that the herbicide propachlor (alpha-chloro-N-isopropyl-acetanilide) has a strong inhibitory effect on the proliferation of L1210 mouse leukemia cells. It is now demonstrated that propachlor treatment causes L1210 cells to accumulate in the G1 phase as determined by flow cytometric analysis. This effect of propachlor is dose-dependent with more than 90% of G1 cells accumulating at 10 microM. Kinetic experiments demonstrated that the accumulation of cells in G1 starts in about 10 hours, and increased for up to about 44 hours of incubation with 10 microM propachlor. Treated cells can be revised to a normal DNA distribution by removing propachlor.

Acetanilides↗