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Biomedical subjects

L J Goldstein

Publications and source records attributed to L J Goldstein.

At least 19 recordsLinked to original sources

Transplantation of bone marrow cells from transgenic mice expressing the human MDR1 gene results in long-term protection against the myelosuppressive effect of chemotherapy in mice.

Many human cancers that are initially responsive to chemotherapy eventually fail to respond to treatment. For some drugs, dose escalation that may be required for a cure cannot be achieved because sensitive tissues such as bone marrow (BM) limit cytotoxic therapy. Approaches to prevent or circumvent BM toxicity are therefore a high priority of research on dose escalation protocols. In this study, we have transplanted BM cells from transgenic mice that constitutively express physiologic amounts of a functional human multidrug resistance (MDR1) cDNA to lethally irradiated C57BL/6 x SJL F1 mice (n = 36). From 6 weeks to 10 months after the transplant, all animals contained MDR1 DNA in spleen and BM specimens as indicated by Southern blot analysis, and expressed MDR1 messenger RNA in BM samples as detected by slot blot analysis. In addition, these animals were resistant to the myelosuppressive effect of doxorubicin, daunomycin, taxol, vinblastine, vincristine, etoposide, and actinomycin D, whereas control animals that were reconstituted with normal BM were drug sensitive. Finally, the chemoprotection afforded by the MDR1 gene could readily be reversed by adding chemosensitizers such as cyclosporin A and R-verapamil to chemotherapy. Hence, it appears that BM cells expressing the human MDR1 gene maintain this function after transplantation to host animals for a minimum of 10 months, and confer multidrug resistance to these BM recipients. This selective advantage conferred by expression of the MDR1 cDNA suggests a strategy for the use of MDR1 gene therapy in cancer chemotherapy and for the introduction of otherwise nonselectable genes into BM.

Animals

A computer model of the kidney.

We developed a computer model of renal function that factors perfusion pressure, serum sodium, potassium, antidiuretic hormone and aldosterone concentrations to derive urine output, urinary sodium and urinary potassium excretion. The model implements Uttamsingh's (Uttamsingh, R.J., et al. Mathematical model of the human renal system. Med. Biol. Eng. Comput. 23 (1985) 525-536) analytical equations as an electrical circuit suitable for network analysis. This model is useful for studying the effects of renal blood flow and the humoral milieu on renal function in normal kidneys either as a stand-alone unit or in combination with other physiological electrical models.

Computer Simulation

Expression of cathepsin L in human tumors.

It has been proposed that proteases secreted by cancer cells facilitate tumor invasion and metastasis by degrading the components of extracellular membranes. The lysosomal cysteine protease cathepsin L is synthesized in large amounts and secreted by many malignantly transformed cells in culture. The secreted protease is potent in degrading collagen, laminin, elastin, and other structural proteins of basement membranes. To determine whether human cancers synthesize cathepsin L, the expression of cathepsin L in approximately 100 human tumor samples was determined by quantitative RNA slot blot analysis using a specific human cathepsin L complementary DNA probe. Results of the present study suggest that cancers in general express higher levels of cathepsin L than do normal tissues. Kidney and testicular tumors expressed the highest levels of cathepsin L; non-small cell carcinomas of the lung expressed the next highest levels; and most cancers of the breast, ovary, colon, adrenal, bladder, prostate, and thyroid expressed elevated levels as well. Cathepsin L may prove useful as a diagnostic or prognostic marker of human malignancy.

Cathepsin L

Blood vessel modeling.

We developed a computer program for calculating hemodynamic parameters in a segment of vessel or catheter using Poiseuille's Law. The program analyzes flow, pressure, flow velocity, total fluid volume, pulse pressure, resistance and Reynolds number in a segment of vessel. The user can dilate or constrict at any position along its length for modeling stenoses or aneurysms. Viscosity, fluid density, length, and intrinsic radius can be varied to simulate atherosclerotic vessels. Idealized linear hemodynamics of an abdominal aortic aneurysm or a coarcted aorta can be modeled from angiographic data. Interactive results are displayed graphically and can be printed for future reference. The program can estimate catheter, graft or vascular resistances, flow velocity in atherogenic arteries, and the likelihood of achieving laminar flow.

Arteries

A pilot study of interferon alfa-2a in combination with fluorouracil plus high-dose leucovorin in metastatic gastrointestinal carcinoma.

Thirty-one assessable patients with metastatic adenocarcinoma of the gastrointestinal tract were entered onto a pilot study designed to assess the impact of recombinant interferon alpha-2a (rIFN alpha-2a) on the toxicity and pharmacokinetics of fluorouracil (5-FU) and leucovorin (LV). Patients received an initial cycle of 5-FU (370 or 425 mg/m2/d) with LV (500 mg/m2/d) for 5 days. If tolerated, the patient received the same dose of 5-FU/LV for the second cycle on days 2 to 6, with rIFN alpha-2a at 5 x 10(6) or 10 x 10(6) U/m2/d on days 1 to 7, or with 3 x 10(6) U/m2/d on days 1 to 14. In 26 matched cycles, rIFN alpha-2a administration was associated with an increased incidence of dose-limiting mucositis and diarrhea and a significantly lower median platelet nadir; rIFN alpha-2a did not significantly affect the median WBC or granulocyte nadir. Dose-limiting toxicity occurred in all six patients entered at 425 mg/m2/d of 5-FU/LV within two cycles. The majority of patients treated with 370 mg/m2/d of 5-FU/LV and 10 x 10(6) U/m2/d rIFN alpha-2a experienced grade 3 to 4 mucositis and diarrhea, whereas patients receiving 3 x 10(6) and 5 x 10(6) U/m2/d rIFN alpha-2a had acceptable toxicity. Administration of rIFN alpha-2a was associated with a dose-dependent decrease in 5-FU clearance. The increase in the area under the 5-FU concentration-time curve (AUC) was 1.3-fold and 1.5-fold in patients receiving 5 x 10(6) and 10 x 10(6) U/m2/d rIFN alpha-2a, respectively. Thus, the increase in 5-FU toxicity with rIFN alpha-2a may be explained by alterations in 5-FU pharmacokinetics. In 22 patients without prior 5-FU therapy, three complete (13.6%) and seven partial (31.8%) responses were seen, for an overall response rate of 45.4% (95% confidence interval, 24.4% to 67.8%). Since the 5 x 10(6) U/m2/d dose of rIFN alpha-2a increased the 5-FU drug exposure and was associated with acceptable toxicity, we recommend its further evaluation as given on days 1 to 7 in combination with 5-FU 370 mg/m2/d, with high-dose LV given on days 2 to 6.

Adenocarcinoma

Chemosensitivity patterns and expression of human multidrug resistance-associated MDR1 gene by human gastric and colorectal carcinoma cell lines.

We compared the in vitro sensitivity patterns to cytotoxic drugs and expression of the multidrug resistance-associated MDR1 gene (also known as PGY1 gene) in four gastric carcinoma cell lines with those obtained in a panel of 11 colorectal carcinoma cell lines. In addition, we tested the effects of leucovorin on enhancement of fluorinated pyrimidine-induced cytotoxicity. We used a semiautomated tetrazolium dye assay [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (tetrazolyl blue)] (MTT) to compare the drug sensitivity of the gastric carcinoma cell lines with that of the colorectal carcinoma cell lines. The gastric carcinoma cell lines were more sensitive to some drugs, including doxorubicin and cisplatin, but not to the fluorinated pyrimidines. Addition of leucovorin at a clinically achievable concentration enhanced the cytotoxic effects of both fluorouracil and floxuridine in colorectal carcinoma cell lines, but it enhanced the effects of only floxuridine in gastric carcinoma cell lines. With the use of a slot blot assay, relatively low levels of MDR1 RNA were present in all four gastric carcinoma cell lines, while intermediate or high levels were present in most of the colorectal carcinoma cell lines. In general, our findings reflect clinical experience and may help in the design of clinical trials.

ATP Binding Cassette Transporter, Subfamily B, Mem

Expression of the multidrug resistance gene in myeloid leukemias.

The human multidrug-resistance gene (MDR1) encodes an energy-dependent multidrug efflux protein responsible for the cross-resistance of cultured cells to natural product chemotherapeutic agents such as the anthracyclines and vinca alkaloids. RNA transcript levels were measured in leukemia cells obtained from 15 adult acute nonlymphocytic leukemia (ANLL) cases and 15 cases of chronic myelogenous leukemia (CML). Expression of MDR1 RNA was common in ANLL, and appears to be most frequent in leukemic cells of patients with the poorest response to chemotherapy. Expression of the MDR1 gene was not detectable in the peripheral white blood cells of any of the CML cases during the chronic phase, but was detectable in the immature cells present during this phase of the disease. The cells of the three blastic crisis patients contained detectable levels of MDR1 RNA. These studies support the idea that expression of the MDR1 gene contributes to drug resistance in ANLL, and may play a role in some instances in the drug-resistance of CML in blastic crisis. In contrast, studies of the level of expression of anionic glutathione transferase and DNA polymerase B failed to show any relationship between the RNA transcript levels of these enzymes and responsiveness to chemotherapy.

Adult

A computer model of the heart that obeys Starling's law.

We developed a computer model of the heart that accurately reproduces human left ventricular pressure wave morphology. The model factors beat-to-beat venous return in generating cardiac output and simulates congestive heart failure when the venous return exceeds the heart's pumping capacity. The blood pressure waveform produced by our model resembles experimental data with a greater than 98% correlation and the model incorporates Starling's transfer function. The model is useful for simulations of cardiovascular hemodynamics where accurate waveforms and venous return feedback or modeling failing hearts are important.

Blood Pressure

Expression of the multidrug resistance, MDR1, gene in neuroblastomas.

Metastatic neuroblastoma is a childhood malignancy that is frequently responsive to chemotherapy with doxorubicin, vincristine, and teniposide (VM26), among other drugs, but in the majority of treated patients, the tumor recurs during or after chemotherapy. In this work, we have examined the hypothesis that the development of resistance to chemotherapy in neuroblastoma might be related to the expression of the human MDR1 gene, which encodes a multidrug transporter that functions as an energy-dependent drug efflux pump. RNA samples from 49 neuroblastomas were analyzed, including 31 from untreated and 18 from treated patients. MDR1 RNA was detectable in the majority of treated and untreated tumors using a sensitive, semiquantitative slot blot assay. Of the samples from treated patients, five of 18 were found to have high MDR1 RNA levels, whereas only three of 31 from untreated patients had high MDR1 levels, a statistically significant difference (P less than .01). These results show that high levels of MDR1 RNA are often associated with resistance to chemotherapy in neuroblastoma and suggest that they may contribute to this resistance. Many of the neuroblastoma samples were also evaluated for N-myc amplification but there was no correlation between N-myc copy number and the level of MDR1 mRNA expression.

Antineoplastic Combined Chemotherapy Protocols

Expression of a human multidrug resistance gene in ovarian carcinomas.

Expression of the human MDR1 gene has been shown to confer the multidrug resistance (MDR) phenotype to sensitive cells. To investigate the possible contribution of the MDR phenotype to chemoresistance in ovarian carcinoma, we have analyzed MDR1 gene expression in fresh carcinoma specimens from 50 patients. Fifteen received chemotherapy before surgery and were judged as poor responders. Thirty-five patients did not receive any drug before surgery. Control tissues were lymphocytes from 7 patients. Total RNAs were analyzed by Northern and slot blot hybridization techniques using human MDR1 complementary DNA and human gamma-actin complementary DNA probes sequentially as qualitative and quantitative controls. MDR1 transcripts (4.5 kilobases) were observed in the RNA preparations obtained from 3 of 10 patients who were treated with doxorubicin or vincristine, 2 drugs known to select the MDR phenotype in vitro. In 40 other RNA preparations obtained from 35 untreated patients and 5 patients treated exclusively with cyclophosphamide and cis-platinum, no transcript could be detected. Using the exact Fisher test, the difference between the 2 groups was found to be significant (P less than 0.01). The three tumors with elevated MDR1 expression did not show MDR1 DNA amplification. Our study suggests that, in spite of the weak occurrence of the MDR process in patients with ovarian cancers, MDR1 expression can be related to previous treatment with doxorubicin or vincristine. These results favor the expression of the MDR1 gene as one of the determinants involved in the acquired chemoresistance of ovarian cancers.

Cell Line

MDR1 gene expression in lung cancer.

The MDR1 gene (also known as PGY1) is frequently overexpressed in multidrug-resistant cell lines. We investigated the role of MDR1 gene expression in lung cancer by performing RNA slot blot analysis in samples from a panel of 24 lung cancers, 10 corresponding nontumorous lung tissues, and 67 tumor cell lines of several histologic types. Almost all of the tumors, nontumorous lung tissues, and cell lines expressed low levels of MDR1 RNA. Relatively higher levels were found in only one type of lung cancer, a subgroup of non-small cell lung cancers expressing neuroendocrine markers. No evidence of MDR1 gene amplification or rearrangements was detected. We found no correlation between MDR1 gene expression in cell lines and (a) in vitro chemosensitivity of the cells, (b) prior therapy status of the patients, or (c) clinical response to therapy. We conclude that the clinical multidrug resistance of many lung cancers cannot be explained solely on the basis of expression of the MDR1 gene.

Drug Resistance

Expression of a multidrug resistance gene in human cancers.

Many cancers have been cured by chemotherapeutic agents. However, other cancers are intrinsically drug resistant, and some acquire resistance following chemotherapy. Cloning of the cDNA for the human MDR1 gene (also known as PGY1), which encodes the multidrug efflux protein P-glycoprotein, has made it possible to measure levels of MDR1 RNA in human cancers. We report the levels of MDR1 RNA in greater than 400 human cancers. MDR1 RNA levels were usually elevated in untreated, intrinsically drug-resistant tumors, including those derived from the colon, kidney, adrenal gland, liver, and pancreas, as well as in carcinoid tumors, chronic myelogenous leukemia in blast crisis, and cell lines of non-small cell carcinoma of the lung (NSCLC) with neuroendocrine properties. MDR1 RNA levels were occasionally elevated in other untreated cancers, including neuroblastoma, acute lymphocytic leukemia (ALL) in adults, acute nonlymphocytic leukemia (ANLL) in adults, and indolent non-Hodgkin's lymphoma. MDR1 RNA levels were also increased in some cancers at relapse after chemotherapy, including ALL, ANLL, breast cancer, neuroblastoma, pheochromocytoma, and nodular, poorly differentiated lymphoma. Many types of drug-sensitive and drug-resistant tumors, including NSCLC and melanoma, contained undetectable or low levels of MDR1 RNA. The consistent association of MDR1 expression with several intrinsically resistant cancers and the increased expression of the MDR1 gene in certain cancers with acquired drug resistance indicate that the MDR1 gene contributes to multidrug resistance in many human cancers. Thus, evaluation of MDR1 gene expression may prove to be a valuable tool in the identification of individuals whose cancers are resistant to specific agents. The information may be useful in designing or altering chemotherapeutic protocols in these patients.

ATP Binding Cassette Transporter, Subfamily B, Mem

Nonlinear SPICE models for physiologic systems.

Most biological systems are nonlinear but investigators interested in modeling them often make linear approximations to avoid performing tedious manual calculations. SPICE (Simulation Program with Integrated Circuit Emphasis, developed at the University of California, Berkeley, CA), an electrical circuit simulation program, is frequently used for creating and analyzing linear network models of physiologic and pathophysiologic processes. However, few investigators use the full capabilities of the program by modeling nonlinear elements. We developed six nonlinear SPICE elements, allowing simplified modeling of most commonly encountered physiologic processes. These are provided as subcircuits that can be easily incorporated into existing SPICE models. Included are voltage and current controlled nonlinear resistors, capacitors and inductors. In addition, we describe adders, multipliers, powers, inverse, and derivative functions.

Computer Simulation

A simple method for preventing misplaced electrocauterization.

A small segment of universally available and inexpensive rubber catheter can be easily fitted to insulate electrocautery tips. This technique can prevent numerous thermal injuries and potential litigation arising from accidently burning adjacent tissues. The routine use of this modification in the operating room can save time, anxiety, and potential litigation by preventing misplaced cauterization.

Electrocoagulation