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Novel therapies in development for the treatment of traumatic brain injury.

In industrialised countries, the mean per capita incidence of traumatic brain injury (TBI) that results in a hospital presentation is 250 per 100,000. In Europe and North America alone, this translates to > 2 million TBI presentations annually. Approximately 25% of these presentations are admitted for hospitalisation. Despite the significance of these figures, there is no single interventional pharmacotherapy that has shown efficacy in the treatment of clinical TBI. This lack of efficacy in clinical trials may be due, in part, to the inherent heterogeneity of the traumatic brain injury population. However, it is the multifactorial nature of secondary injury that also poses a major hurdle, particularly for those therapies that have been designed to specifically target an individual injury factor. It is now becoming increasingly recognised that any successful TBI therapy may have to simultaneously affect multiple injury factors, somewhat analogous to other broad spectrum interventions. Recent efforts in experimental TBI have therefore focussed on developing novel pharmacotherapies that may affect multiple injury factors and thus improve the likelihood of a successful outcome. While a number of interventions are noteworthy in this regard, this review will focus on three novel compounds that show particular promise: magnesium, substance P antagonists and cyclosporin A.

Animals↗

Challenges and successes in developing new therapies for hepatitis C.

Hepatitis C virus (HCV) will continue to be a serious global health threat for many years to come because of the chronic nature of the infection, its high prevalence and the significant morbidity of the resulting disease. Recently, a small number of molecules have produced encouraging results in proof-of-concept clinical trials. At the same time, preclinical evidence is accumulating that development of resistance will eventually limit the efficacy of new drugs. Thus, combinations of multiple agents will be required to treat chronic HCV infection.

Animals↗

Epidermal growth factor receptor - mediated signal transduction in the development and therapy of gliomas.

The epidermal growth factor receptor (EGFR) and its ligands figure prominently in the biology of gliomas, the most common tumors of the central nervous system (CNS). Although their histologic classification seems to be straightforward, these tumors constitute a heterogeneous class of related neoplasms. They are associated with a variety of molecular abnormalities affecting signal transduction, transcription factors, apoptosis, angiogensesis, and the extracellular matrix. Under normal conditions, these same interacting factors drive CNS growth and development. We are now recognizing the diverse molecular genetic heterogeneity that underlies tumors classified histologically into three distinct grades. This recognition is leading to new therapeutic strategies targeted directly at specific molecular subtypes. In this article, we will review the role of EGFR and related molecular pathways in the genesis of the normal CNS and their relationship to glial tumorigenesis. We will discuss barriers to effective treatment as they relate to anatomic specialization of the CNS. We will also consider the ways in which specific EGFR alterations common to glioma reflect outcomes following treatment with targeted therapies, all with an eye towards applying this understanding to improved patient outcomes.

Brain↗

Methadone maintenance therapy versus no opioid replacement therapy for opioid dependence.

BACKGROUND: Methadone maintenance was the first widely used form of opioid replacement therapy developed to treat heroin dependence, and it remains the best-researched treatment for this problem. Despite the widespread use of methadone in maintenance treatment for opioid dependence in many countries, it is a controversial treatment whose effectiveness has been disputed. OBJECTIVES: To evaluate the effects of methadone maintenance treatment (MMT) compared with treatments that did not involve opioid replacement therapy (i.e., detoxification, offer of drug-free rehabilitation, placebo medication, wait-list controls) for opioid dependence. SEARCH STRATEGY: We searched all the following databases up to 2001: Cochrane Drugs and Alcohol Review Group Register, the Cochrane Controlled Trials Register, MEDLINE, EMBASE, Current Contents, Psychlit, CORK [www. state.vt.su/adap/cork], Alcohol and Drug Council of Australia (ADCA) [www.adca.org.au], Australian Drug Foundation (ADF-VIC) [www.adf.org.au], Centre for Education and Information on Drugs and Alcohol (CEIDA) [www.ceida.net.au], Australian Bibliographic Network (ABN), and Library of Congress databases, available NIDA monographs and the College on Problems of Drug Dependence Inc. proceedings, the reference lists of all identified studies and published reviews; authors of identified RCTs were asked about other published or unpublished relevant RCTs. SELECTION CRITERIA: All randomised controlled clinical trials of methadone maintenance therapy compared with either placebo maintenance or other non-pharmacological therapy for the treatment of opioid dependence. DATA COLLECTION AND ANALYSIS: Reviewers evaluated the papers separately and independently, rating methodological quality of concealment of allocation, data were extracted independently for meta-analysis and double-entered. MAIN RESULTS: Six studies met the criteria for inclusion in this review, all were randomised clinical trials, two were double-blind. There were a total number of 954 participants. The method of concealment of allocation was inadequate in one study, not clearly described in four studies, but adequate in a sixth study. Based on the meta-analysis, methadone appeared statistically significantly more effective than non-pharmacological approaches in retaining patient in treatment (3 RCTs, RR=3.05; 95%CI: 1.75-5.35) and in the suppression of heroin use (3 RCTs, RR=0.32; 95%CI: 0.23-0.44), but not statistically in criminal activity (3 RCTs, RR=0.39; 95%CI: 0.12-1.25). REVIEWER'S CONCLUSIONS: Methadone is an effective maintenance therapy intervention for the treatment of heroin dependence as it retains patients in treatment and decreases heroin use better than treatments that do not utilise opioid replacement therapy. It does not show a statistically significant superior effect on criminal activity.

Humans↗

Strategies to optimize drotrecogin alfa (activated) use: guidelines and therapeutic controversies.

Drotrecogin alfa (activated) is a new agent that may substantially affect the treatment of patients with severe sepsis. Despite its therapeutic promise, treatment with drotrecogin alfa (activated) represents a new challenge for many clinicians and health care centers. Specifically, optimizing the appropriate role for drotrecogin alfa (activated) requires balancing numerous issues, including its efficacy in high-risk patients with its potential for indiscriminate administration. One common approach to minimizing indiscriminate administration of drotrecogin alfa (activated) and maximizing its efficacy while minimizing its toxicity is for hospitals to develop therapeutic guidelines that define how the agent should be used. We outline factors that should be considered when developing drotrecogin alfa (activated) therapy guidelines and address realistic questions that routinely arise in clinical practice regarding the implementation of such guidelines and the administration of this product. In general, the guidelines must facilitate optimization of drug therapy and not be viewed as hurdles to drug therapy Developing clear guidelines that are based on evidence, outlining a specific process to facilitate optimal therapy, and educating all parties involved are paramount to ensuring that the benefits of therapy are maximized.

APACHE↗

[New developments in therapy of deep mycoses].

Over the past two decades the incidence of deep mycoses caused by several major groups of fungal pathogens such as Candida spp., aspergilli, Cryptococcus neoformans and zygomycetes has risen steadily. Moreover, opportunistic fungal infections due to Fusarium spp., Trichosporon spp., Pseudallescheria boydii and other emerging pathogens, as well as fluconazole-resistant Candida albicans, all of which are often resistant to existing antifungal drugs, are also encountered more and more frequently. This makes it more difficult for the clinician to achieve successful treatment. Thus there is an urgent need to develop new antifungal agents or formulations with advantages over and/or complimentary to existing drugs. This review focuses on current approaches to antifungal chemotherapy with special reference to the clinical development of new drugs, including (ii) lipid formulations of amphotericin B, (i) second-generation azoles and (iii) antifungal lipopeptides.

Amphotericin B↗

Is cough alone adequate to screen HIV-positive persons for tuberculosis preventive therapy in developing countries?

Although the efficacy of isoniazid in the prevention of tuberculosis in HIV-infected persons with a positive tuberculin skin test is proven, several feasibility issues remain unanswered. In resource poor settings where a chest radiograph may not be readily available, the question of whether cough alone is an adequate screening tool needs to be considered. We analysed screening data collected as part of an isoniazid efficacy study. Although the study was not designed specifically to answer this question, the data suggests that cough alone may be inadequate for screening patients for potential tuberculosis preventive therapy, and that a chest radiograph may be necessary. Feasibility studies are needed.

AIDS-Related Opportunistic Infections↗

Animal models for muscular dystrophy: valuable tools for the development of therapies.

Since the identification of dystrophin as the causative factor in Duchenne muscular dystrophy, an increasing amount of information on the molecular basis of muscular dystrophies has facilitated the division of these heterogeneous disorders into distinct groups. As more light is being shed on the genes and proteins involved in muscular dystrophy, diagnosis of patients has improved enormously. In addition to naturally occurring animal models, a number of genetically engineered murine models for muscular dystrophy have been generated. These animal models have provided valuable clues to the understanding of the pathogenesis of these disorders. Furthermore, as therapeutic approaches are being developed, mutant animals represent good models in which they can be tested. The present review focuses on the recent advancements of gene transfer-based strategies, with a special emphasis on animal models for Duchenne and limb-girdle muscular dystrophies.

Animals↗

Effects on metastases of drug therapy during developing and established tumor immunity.

The effectiveness of treatment with cyclophosphamide, methotrexate and 5-fluorouracil was studied during the s.c. and pulmonary growth of syngeneic C3H/He mammary carcinomas. Treatments with cyclophosphamide, methotrexate and 5-fluorouracil during the primary induction of immunity against a mouse mammary carcinoma inhibited the growth of the tumor, but also inhibited the development of an effective immune resistance against subsequent implants of the same tumor. However, drug treatments of mice with established tumor immunity gave added benefit without detectable depression of immune resistance.

Animals↗

Developing target therapy against oncogenic tyrosine kinase in myeloid maliganacies.

Myeloid malignancies are frequently associated with translocations and mutations of tyrosine kinase genes. Fusion genes involving ABL, ARG, PDGFRs, JAK2, SYK, TRKC, and FGFRs, and gain-of-function mutations of FLT3, KIT and JAK2 have been detected at various rates in myeloproliferative disease and acute myeloid leukemia. Furthermore, abnormal overexpression of tyrosine kinases such as FLT3 has also been reported. These gene products are constitutively activated and potentially transform hematopoietic cells by augmentation of proliferation and enhanced viability. Since the fusion or mutation of tyrosine kinase is a primary and central event in chronic myeloproliferative diseases, targeting the kinase activity has been thought to be an ideal intervention to treat these diseases. The clinical success of imatinib for chronic myeloid leukemia has made this idea a reality, and has accelerated the development of new tyrosine kinase inhibitors (TKIs). Challenging studies with TKIs have also been reported for acute myeloid leukemia. This review will focus on recent trials of TKIs against oncogenic tyrosine kinases (ABL, PDGFRs, FLT3 and KIT) in myeloid malignancies.

Antineoplastic Agents↗

Protection of normal tissues from radiation and cytotoxic therapy: the development of amifostine.

Much effort is being made to reduce the iatrogenic toxicity of antineoplastic treatments in order to improve the quality of life of cancer patients. Cytoprotection of healthy tissue by thiol group donors is one of the most promising lines of research. Amifostine is the most extensively studied drug in the category. We reviewed the extensive medical literature on amifostine. The protective effect of amifostine has been demonstrated for cisplatin-induced toxicity in lung and ovarian cancer, with particular regard to nephrotoxicity, neurotoxicity and neutropenia. No protective effect has been seen for tumor cells owing to a selective action of amifostine on healthy tissues. A frequent side effect of amifostine is a transient decreases in blood pressure; it is usually asymptomatic if an easily handled premedication is given. Cytoprotection by amifostine is also well known for alkylating drugs and radiation therapy, whereas it is still the object of study for new drugs, especially taxanes. The present work also includes a cost-benefit analysis and a prospective view on the most promising research lines.

Amifostine↗

[A case of small cell lung cancer that developed during therapy for myasthenia gravis].

A 56-year-old man had been complaining of progressive proximal muscle weakness and bilateral ptosis before his first admission to our hospital. He received an injection of edrophonium chloride, which resulted in remarkable improvement of muscle strength. Electromyographic studies revealed a compound muscle action potential that decreased after repetitive stimulation at a high rate (15 Hz). He was regarded as having myasthenia gravis (MG) rather than Eaton-Lambert syndrome because of these findings. Eighteen months after successful treatment of MG with oral anticholinesterase medication, he complained of an abdominal mass. The mass was found to be a tumor that had metastasized from a primary small cell carcinoma of the lung. Cases of MG with small cell carcinoma of the lung seem to be very rare, and the details of the relationship between them remain unknown. In this patient, MG may have developed by paraneoplastic mechanisms. This hypothesis is interesting, since it has been demonstrated recently by molecular biological techniques that small cell carcinomas of the lung express nicotinic acetylcholine receptors.

Carcinoma, Small Cell↗

Genetic polymorphisms in CYP3A5, CYP3A4 and NQO1 in children who developed therapy-related myeloid malignancies.

Therapy-related acute myeloid leukemia and myelodysplastic syndrome (t-ML) are serious complications that affect some patients after acute lymphoblastic leukemia (ALL) treatment. Genetic polymorphisms in the promoter of CYP3A4 (CYP3A4*1B) and in NAD(P)H:quinone oxidoreductase (NQO1609C-->T substitution) have been associated with the risk of t-ML. A polymorphism in CYP3A5 (CYP3A5*3) affects CYP3A activity and the wild-type allele (CYP3A5*1) is in partial linkage with the CYP3A4*1B allele. We compared the genotype frequencies for the CYP3A5*3, the CYP3A4*1B and the NQO1609C-->T substitution in 224 children with ALL who did not develop t-ML (controls) and in 53 children with ALL who did develop the complication. The allele frequencies differed significantly among whites, blacks and Hispanics (P < 0.001 for CYP3A5*3, P < 0.001 for CYP3A4*1B and P = 0.004 for NQO1609), thus we performed the comparisons between ALL controls and t-ML patients after accounting for race. We found no differences in the CYP3A4*1B allele distribution between ALL controls and t-ML patients in whites (P = 0.339, 6.6% vs. 9.8%), blacks (P = 0.498, 93.8% vs. 87.5%) or Hispanics (P = 0.523, 39.1% vs. 25.0%). The frequencies for the NQO1609C-->T allele did not differ between control and t-ML groups in whites (P = 0.191, 35.0% vs. 44.9%), blacks (P = 0.664, 37.5% vs. 37.5%) or Hispanics (P = 0.447, 65.2% vs. 50.0%). We found no differences between the control and t-ML group in the incidence of homozygous CYP3A5*3 genotypes: 82.0% vs. 85.4% in whites (P = 0.403), 6.5% vs. 12.5% in blacks (P = 0.508), and 69.6% vs. 75.0% in Hispanics (P= 0.663). Our data do not support an association between common CYP3A4, NQO1 or CYP3A5 polymorphisms and the risk of t-ML in children treated for ALL.

Acute Disease↗

IL-4 and IL-13: their pathological roles in allergic diseases and their potential in developing new therapies.

The incidence of allergic diseases has dramatically increased in recent decades, and it is socially and medically important to establish more useful strategies to overcome allergic disorders. Various kinds of drugs are utilized for allergic patients; however, some cases are unresponsive to these drugs and in others there are undesired adverse effects. On the other hand, a substantial body of evidence has accumulated pointing to the pivotal role of Th2-cytokines, interleukin (IL)-4, and IL-13, in the pathogenesis of bronchial asthma. The evidence is categorized as (1) expression of these cytokines in the bronchial lesions, (2) genetic association of the signaling molecules of these cytokines, (3) analyses of mouse models. In addition, the molecular mechanism of the signal transduction of these cytokines has also been well characterized. Based on such information, IL-4 and IL-13 have emerged as promising means of improving allergic states, and several IL-4/IL-13 antagonists have been developed, among which soluble IL-4 receptor is now in human trials. Identifying the structure of the IL-13 variant and of the IL-4/IL-13-inducing genes would be of great use. It is expected that in the near future, several drugs will emerge based on these strategies, which will give us wider choice in treating patients, depending on the pathogenesis of the diseases.

Animals↗

The impact of carbapenemases on antimicrobial development and therapy.

Carbapenems have been the most successful beta-lactam antibiotics in evading bacterial resistance. Nevertheless, acquired carbapenemases are increasingly reported, mostly in Pseudomonas and Acinetobacter isolates but occasionally also in Enterobacteriaceae. They include beta-lactamases of classes B (IMP and VIM), D (OXA-23 to -27) and A (IMI, KPC, NMC and SME). Major outbreaks of producers have occurred in a few centers and, in the US, there has been progressive erosion of carbapenem activity against Acinetobacter species, maybe due to carbapenemases. Acquired carbapenemases are still sufficiently rare not to have placed widespread constraints on chemotherapy, but there is reasonable concern that they will become a greater problem in the future. This is a good argument for continued caution with carbapenem use, and for extending this prudence to the oral and long half-life carbapenems shortly to become available. Most carbapenemase producers are broadly resistant to beta-lactams, and many are also resistant to fluoroquinolones and aminoglycosides. Clinicians facing infections caused by carbapenemase producers consequently are forced to use 'unusual' antibiotics such as polymyxins, isepamicin, minocycline and sulbactam (Pfizer Inc), which has inherent activity against A baumannii. Carbapenemase inhibitors might be developed in the future, despite difficulties in choosing the range of enzymes to target and obtaining broad-spectrum inhibition. For now, the best pharmaceutical strategy seems to lie in the development of novel antimicrobial classes with anti-Gram-negative activity, rather than in overcoming carbapenemases directly.

Acinetobacter↗

Gene therapy to develop a genetically engineered cardiac pacemaker.

While cardiac pacemakers are frequently used for the treatment of bradydysrhythmias (from diseases of the cardiac conduction system), their use is still limited by complications that can be life-threatening and expensive. Genetic engineering approaches offer an opportunity to modulate cellular automaticity in a manner that could have significant therapeutic potential. It is well known that ventricular myocytes exhibit a more negative diastolic potential than do pacemaker cells, in large part because of the inward rectifying potassium current/K1 (which pacemaker cells lack). Taking advantage of these intrinsic electrophysiological differences, a biological pacemaker has recently been developed by Miake et al (Nature 2002; 419:132-133) using adenoviral gene transfer approaches. By isolating the gene responsible for/K1 (the Kir2.1 gene), mutating it to make it a dysfunctional channel (a dominant-negative), inserting the mutated gene into an adenoviral vector, and delivering the virus to the hearts of guinea pigs, the investigators were able to successfully convert some ventricular myocytes to pacemaker cells. While issues of safety and long-term efficacy need to be further established, the results of these experiments provide proof of principle that gene transfer offers great promise for treatment of electrophysiological disorders including conduction system disease.

Action Potentials↗

Functional EGFP-dystrophin fusion proteins for gene therapy vector development.

Transfection and transduction studies involving the use of the full-length dystrophin (11 kb) or the truncated mini-gene (6 kb) cDNAs are hampered by the large size of the resulting viral or non-viral expression vectors. This usually results in very low yields of transgene-expressing cells. Moreover, the detection of the few transgene-expressing cells is often tedious and costly. For these reasons, expression vectors containing the enhanced green fluorescent protein (EGFP) fused with the N-termini of mini- and full-length human dystrophin were constructed. These constructs were tested by transfection of Phoenix cells with Effectene, resulting after 48 h in a green fluorescent signal in 20% of cells. Analysis of the cell extracts by immunoblotting with the use of a monoclonal antibody specific to the dystrophin C-terminus confirmed the expression of EGFP-mini- (240 kDa) and EGFP-full-length human dystrophin (450 kDa) fusion proteins. Moreover, following the in vivo electroporation of the plasmids containing the EGFP-mini- and full-length dystrophin in mouse muscles, both fluorescent proteins were observed in cryostat sections in their normal location under the plasma membrane. This indicates that the fusion of EGFP to dystrophin or mini-dystrophin did not interfere with the normal localization of the protein. In conclusion, the fusion of EGFP provides a good tool for the search of the best methods to introduce mini- or full-length dystrophin cDNA in the cells (in vitro) or muscle fibers (in vivo) for the establishment of a treatment by gene therapy of Duchenne muscular dystrophy patients.

Animals↗

Disease- and cell-type-specific transcriptional targeting of vectors for osteoarthritis gene therapy: further development of a clinical canine model.

OBJECTIVES: The potential for undesirable systemic effects related to constitutive expression of certain therapeutic transgenes may be limited through the development of transcriptionally targeted disease- and cell-type-specific vectors. The objective of this study was to analyse the canine matrix metalloproteinase-9 (MMP-9) promoter and deletion constructs for its ability to drive expression in response to pro-inflammatory cytokines (interleukin-1beta and tumour necrosis factor-alpha). METHODS: Initial analysis of MMP-9 deletion constructs was made using a luciferase reporter system. The promoter was subsequently engineered to incorporate multiple NF-kappaB sites. In parallel experiments we used the mouse collagen type XI promoter to study cell-type-specific promoter activity in chondrocyte-specific cells (SW1353) and undifferentiated chondroprogenitor cells (ATDC5). RESULTS: Incorporation of multiple NF-kappaB sites into the MMP-9 promoter enhanced activity while maintaining disease specificity. Further, manipulation of the mouse collagen type XI (mColXI) promoter by the incorporation of SOX9 enhancer sites downstream of a reporter gene, increased gene activity while maintaining cell type specificity. CONCLUSIONS: Manipulation of promoter and enhancer regions can improve transcriptionally targeted genes. A combination of these systems, in the context of the canine model, has the potential to improve the safety of osteoarthritis gene therapy vectors.

Animals↗