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Biomedical subjects

D F Hoth

Publications and source records attributed to D F Hoth.

At least 19 recordsLinked to original sources

Current status of HIV therapy: I. Antiretroviral agents.

The clinician's armamentarium is no longer limited to zidovudine as the only antiretroviral agent that enhances both quality and length of life. ddI has shown clinical benefit in patients previously treated with zidovudine. Recently, the combination of zidovudine and ddC has been approved on the basis of surrogate marker activity; its clinical role awaits results of ongoing trials.

AIDS Vaccines

Current status of HIV therapy: II. Opportunistic diseases.

Infections and malignancies account for most deaths in patients with AIDS and will continue to do so as long as HIV-induced immunosuppression is progressive and irreversible. Co-trimoxazole has emerged as the preferred agent for prevention of Pneumocystis carinii pneumonia. As appropriate broad-spectrum agents are developed, multiple opportunistic pathogen prophylaxis could become effective.

Acquired Immunodeficiency Syndrome

Current status of HIV therapy: II. Opportunistic diseases.

Infections and malignancies account for most deaths in patients with AIDS--and will continue to do so as long as HIV-induced immunosuppression is progressive and irreversible. Options available for prevention and improved management of such diseases are changing as new agents emerge, new combinations of agents are developed, and new indications for available agents are identified.

Acquired Immunodeficiency Syndrome

Current status of HIV therapy: I. Antiretroviral agents.

Zidovudine has proved to be an important palliative agent in all stages of HIV infection. It delays progression of disease in patients with asymptomatic or mildly symptomatic infection and decreases the frequency and severity of opportunistic disease in those with AIDS. The search for other, more effective antiretroviral agents goes on, with some promising possibilities.

Adult

How can epidemiology assist in guiding interventions for the acquired immunodeficiency syndrome/human immunodeficiency virus?

In a single decade, the pandemic of human immunodeficiency virus (HIV) infection has become an international health, social, and economic emergency. Early and effective intervention is urgently needed for both prevention of HIV infection and for the amelioration of clinical disease. Results of therapeutic trials have suggested expanding the population for which chemotherapy is indicated. In this paper, we first review the findings from selected recent drug trials, using zidovudine and pentamidine as examples. We then discuss six issues that we believe to be crucial for future epidemiologic research in the service of vaccine and drug development: 1. To identify which complications of HIV infection most urgently require development of new therapies, we must characterize the frequency and severity of specific medical events (outcomes) in persons taking a variety of treatments. 2. Currently, acquired immunodeficiency syndrome (AIDS) therapeutic trials gauge the effectiveness of new therapies by their impact on such clinical parameters as the time to development of AIDS or death. These approaches take too long to provide information. We urgently need to identify surrogate markers of clinical outcome that will be useful in the early assessment of treatment efficacy. 3. Progress in vaccine development is being retarded because we do not have enough data from natural history studies on host immunologic responses to suggest that a given response is protective. We therefore need to identify natural correlates of immunity, which can help set priorities in vaccine development. 4. Discovery that a therapy works in the setting of a clinical trial is only a first step in intervention. We must also assess the impact of new therapies on the health of the public, evaluating access to health care, compliance, and other barriers to treatment. 5. Clinical trials are usually associated with the effort to prevent disease in infected persons. However, other trials are needed to assess efforts to interrupt viral transmission through use of condoms, use of virucides, and treatment of sexually transmitted diseases, and by effecting specific behavioral changes. 6. Traditional methods of conducting clinical therapeutic research may not be adequate to address urgent questions in the AIDS/HIV epidemic. We must develop innovative clinical research methods, including better use of data from observational studies, to infer what we can about the effect of treatment on the clinical course.

Acquired Immunodeficiency Syndrome

Hypersensitivity reactions to deoxycoformycin.

Deoxycoformycin (dCF) is a promising new antineoplastic agent in the treatment of lymphoid malignancies, particularly hairy cell leukemia (HCL). Skin toxicity in the form of a maculopapular eruption has previously been reported but has not clearly been associated with idiosyncratic reactions. We present five cases of dCF-related hypersensitivity reactions in which additional systemic manifestations indicated an allergic etiology. The value of dCF in treating lymphoid neoplasms suggests that further study of the treatment of these reactions is indicated.

Adult

Development and testing of AIDS vaccines.

Recent advances in delineating the molecular biology of human immunodeficiency virus type 1 (HIV-1) have led to innovative approaches to development of a vaccine for acquired immunodeficiency syndrome (AIDS). However, the lack of understanding of mechanisms of protective immunity against HIV-1, the magnitude of genetic variation of the virus, and the lack of effective animal models for HIV-1 infection and AIDS have impeded progress. The testing of AIDS vaccines also presents challenges. These include liability concerns over vaccine-related injuries; identification of suitable populations for phase 3 efficacy studies; balancing the ethical obligation to counsel research subjects to avoid high-risk behavior with the necessity to obtain vaccine efficacy data; and the effect of vaccine-induced seroconversion on the recruiting and welfare of trial volunteers. Several candidate AIDS vaccines are nevertheless currently under development, and some are undergoing phase 1 clinical trials. Rapid progress will depend on continued scientific advancement in conjunction with maximum use of resources, open information and reagent exchange, and a spirit of international collaboration.

Acquired Immunodeficiency Syndrome

Pyrazole: preclinical reassessment.

Pyrazole (NSC-45410) is a low molecular weight, heterocyclic compound which has been considered for reevaluation in the clinic as a potential cytotoxic agent (Fig. 1). Discovered in 1893, pyrazole is best known as an inhibitor of liver alcohol dehydrogenase (ki = 0.2 uM), and as a result, has been used extensively in studies of alcohol metabolism. In 1960, pyrazole was identified as being active in preclinical antitumor models, which led to preliminary clinical testing. The early Phase I studies were not followed by disease specific Phase II trials, and the clinical activity of the drug has never been evaluated. This omission was noted by the National Cancer Institute's Project for the Review of Old Drugs (PROD), at which time it was also noted that pyrazole is selectively toxic to thyroid tissue in an animal model. Hence, interest in pyrazole was revived for two reasons: (a) failure to screen it for clinical activity in the 1960's, and (b) current interest in discovering drugs with selective toxicity to specific tissues for evaluation of their activity in malignancies arising in the target tissue. In this review, we summarize the evidence which has accumulated concerning pyrazole's potential role as an anticancer agent.

Animals

Teniposide in the treatment of leukemia: a case study of conflicting priorities in the development of drugs for fatal diseases.

Teniposide, a semisynthetic epipodophyllotoxin, was found to be highly active against murine leukemias, and the combination of teniposide with cytosine arabinoside (ara-C) was curative in murine leukemia models. The antitumor activity in preclinical models prompted introduction of teniposide into the clinic in 1971. Although teniposide as a single agent rarely produced a complete remission in heavily pretreated leukemia patients, teniposide plus ara-C produced complete remissions in some patients with refractory and relapsed acute lymphoblastic leukemia (ALL). Innovative front-line and salvage regimens using teniposide have been developed that incorporate a multi-drug strategy with early intensification, rotation of drug combinations in maintenance, and regional therapy in an effort to improve the cure rate in leukemia. However, as the complexity of these regimens increases, the contribution of an individual component such as teniposide becomes less clear. Although some of these regimens for newly diagnosed and relapsed ALL are now thought to represent the best available therapy, teniposide remains an investigational agent. In this review, we outline and discuss the conflicts arising from the need to answer drug-specific issues, and, at the same time, facilitate the implementation of innovative, curative regimens.

Antineoplastic Combined Chemotherapy Protocols

N-methylformamide: cytotoxic, radiosensitizer, or chemosensitizer.

N-methylformamide (NMF), a polar solvent, is currently being evaluated by the National Cancer Institute (NCI) as an antineoplastic agent because of its activity against colon, mammary, and lung tumor xenografts. Results from preclinical studies suggest that it has radiosensitizing, chemosensitizing, and differentiating activity. Its mechanism of action remains unknown, but may involve cellular depletion of glutathione, cell membrane changes, or modulation of proto-oncogene expression. Preclinical toxicology studies conducted in mice, rats, and beagle dogs showed reversible hepatotoxicity to be dose-limiting. Clinically, NMF is administered both orally and by intravenous (IV) injection. The bioavailability with oral administration is 90% to 95%. The highest reported plasma concentration of NMF is approximately 4 mmol/L in a patient who received a dose of 2,000 mg/m2 of IV NMF. Biphasic elimination with IV NMF is seen on both the daily for five days and weekly for 3 weeks schedule. Approximately 5% to 7% of the total administered IV dose is excreted in the urine. In phase I studies, dose-limiting toxicities included reversible hepatotoxicity, a generalized malaise syndrome, and nausea and vomiting. One partial response has been reported in the 111 patients treated on phase II trials in colorectal, head and neck, and renal carcinomas. Suggestions for the future development of this drug are presented.

Animals

2'-Deoxycoformycin (pentostatin) for lymphoid malignancies. Rational development of an active new drug.

A new antimetabolite, 2'-deoxycoformycin (pentostatin), has striking antitumor activity in several lymphoid neoplasms. Isolated from cultured soil organisms, this purine analogue is a potent inhibitor of adenosine deaminase (ADA), and is thus selectively toxic to lymphocytes. Early clinical trials showed that high doses of pentostatin caused severe and unpredictable toxicity, but responses in refractory lymphoid malignancies were encouraging. Careful pharmacologic studies led to the definition of a safe and effective low weekly dose, at which protracted ADA inhibition occurs in neoplastic cells. The most sensitive tumor identified is hairy cell leukemia, in which durable remissions are achieved in more than 90% of patients with a relatively brief course of treatment. Other responsive diseases include chronic lymphocytic leukemia, prolymphocytic leukemia, mycosis fungoides, and acute T-cell lymphoma or leukemia. Response has been seen in acute lymphocytic leukemia, but the higher doses required are substantially more toxic. Pentostatin is valuable for treatment of indolent lymphoid malignancies and may be useful in non-cancer-related lymphocyte research.

Adenosine Deaminase Inhibitors

Deoxycoformycin: an active new drug for indolent lymphomas and hairy cell leukemia.

Promising results in the treatment of indolent lymphomas have been reported with the use of 2'deoxycoformycin. This antimetabolite, an adenosine deaminase inhibitor, also shows particular efficacy in hairy cell leukemia. Of 65 patients treated to date, 44 have achieved complete and lasting remission after a limited course of deoxycoformycin. While results are not as striking as those in hairy cell leukemia, deoxycoformycin may also be a valuable adjunct to alkylating agents in the treatment of CLL. The drug also is being studied in the treatment of mycosis fungoides and other lymphoid neoplasms. Side effects in all neoplasms are dose- and schedule-dependent.

Humans

Role of thymidine in biochemical modulation: a review.

The role of thymidine in the treatment of cancer has been under clinical investigation for nearly a decade. Clinical trials have demonstrated that it lacks antitumor activity in its own right. In this review, the mechanism of action and rationale for the use of thymidine as a biochemical modulator of standard agents such as 5-fluorouracil, 1-beta-D-arabinofuranosylcytosine, and methotrexate are summarized. With this background, the clinical trials which have been conducted with thymidine, either alone or in combination, are described. We suggest a number of further studies of the role of thymidine in the biochemical modulation of antimetabolites.

Animals

Arabinosyl-5-azacytosine: a novel nucleoside entering clinical trials.

Arabinosyl-5-azacytosine is a new compound which has been selected by the Division of Cancer Treatment, National Cancer Institute for clinical development as an antineoplastic agent based on its high degree of activity against a broad range of tumor types in preclinical studies. Therapeutic activity has been observed against murine and human leukemias, transplantable murine solid tumors, and human tumor xenografts. Arabinosyl-5-azacytosine exhibited a broader spectrum of activity against human solid tumors than cytosine arabinoside. Arabinosyl-5-azacytosine is phosphorylated to the nucleotide level by deoxycytidine kinase. Upon further anabolism to the triphosphate level, it can be incorporated into DNA. The mechanism of cytotoxicity is thought to be related to inhibition of DNA synthesis. Leukemic and solid tumor cell lines that are resistant to cytosine arabinoside due to deletion of deoxycytidine kinase activity are cross-resistant to arabinosyl-5-azacytosine. Unlike cytosine arabinoside, arabinosyl-5-azacytosine does not readily undergo deamination. Schedule dependence has been demonstrated in mice bearing L1210 leukemia, with superior activity seen with multiple doses administered on each treatment day compared to administration of larger but less frequently administered doses. From preliminary data in solid tumor models, however, antitumor activity did not appear to be superior with continuous infusion compared to that observed on a bolus schedule. Preclinical toxicology studies indicated that the bone marrow and gastrointestinal tract were the main target organs. A single large dose of arabinosyl-5-azacytosine could be tolerated by both mice and dogs. When administered as a continuous infusion, the toxicity was related to both the dose and duration of exposure, suggesting that toxicity resulted from a critical time above a threshold concentration as opposed to the total area under the concentration-time curve. Phase I clinical trials have been initiated to determine the maximum tolerated dose on a low dose continuous infusion schedule for 72 hours and also on a high dose short infusion daily times five schedule.

Antiviral Agents

5-Methyltetrahydrohomofolate.

5-methyltetrahydrohomofolate was developed in the 1970's as an antifolate with the potential to overcome methotrexate resistance. This review summarizes the preclinical and clinical data which have accumulated to date. It is concluded that more recent, better characterized antifolates offer greater potential in achieving the goals for which this drug was introduced.

Animals