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עמוד בית
Thu, 18.07.24

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April 2007
March 2007
A. Melman, N. Bar-Chama, A. McCullough, K. Davis and G. Christ

Background: Ion Channel Innovations has developed a gene transfer product, ftMaxi-K, and has begun clinical trials to investigate the effect of increased expression of Maxi-K channels in the smooth muscle of the penis or bladder in patients with erectile dysfunction and those with overactive bladder. The primary function of K channels is to modulate Ca++ influx through Ca-channels (i.e., L-type, voltage-dependent). The amount of Ca++ that enters the cell through these channels is a major determinant of the free intracellular calcium levels inside the smooth muscle cell, which in turn determines the degree of smooth muscle cell contraction. Increased Maxi-K channel activity is associated with smooth muscle cell relaxation, resulting in, for example, penile erection and detrussor muscle relaxation. A phase I clinical trial that used dMaxi-K has been completed and a similar trial to assess safety of the transfer for overactive bladder is about to begin.

Objectives: To assess the safety and tolerability of escalating dMaxi-K doses by clinical evaluations and laboratory tests, and to measure efficacy objectives by means of the International Index of Erectile Function scale.

Methods: In the erectile dysfunction trial 11 patients with moderate to severe erectile dysfunction were given a single-dose corpus cavernosum injection of dMaxi-K, a "naked" DMA plasmid carrying the human cDNA encoding for the gene for the a, or pore-forming, subunit of the human smooth muscle Maxi-K channel, hSIo. Three patients each were given 500,1000, and 5000 pg and two patients were given 7500 pg doses of ftMaxi-K and followed for 24 weeks. Patient responses were validated by partner responses.

Results: There were no serious adverse events and no dose-related adverse events attributed to gene transfer for any patient at any dose or study visit. No clinically significant changes from baseline were seen in physical evaluations (general and genitourinary), hematology, chemistry and hormone analyses, or in cardiac events evaluated by repeated electrocardiograms. Importantly, no plasmid was detected in the semen of patients at any time after the injections. Patients given the two highest doses of dMaxi-K had apparent sustained improvements in erectile function as indicated by improved IIEF-EF domain scores over the length of the study. One patient given 5000 (jg and one given 7500 [jg reported EF category improvements that were highly clinically significant and were also maintained through the 24 weeks of study.
Conclusions: Efficacy conclusions cannot be drawn from results of a phase 1 trial with no control group. However, the promising primary safety outcomes of the study and preliminary indications of effectiveness provide evidence that ftMaxi-K gene transfer is a viable approach to the treatment of erectile dysfunction and other smooth muscle diseases with targeted access

M. Khaikin, Y. Chowers and O. Zmora
Perianal Crohn's disease refers to the involvement of the anal region in this chronic inflammatory bowel disease. It most commonly presents with the formation of perianal abscesses and fistulas, although other forms of presentations such as fissures and skin tags may also be present. Perianal activity often parallels abdominal disease activity, but may occasionally be the primary site of active disease, and significantly compromises the quality of life in affected patients. The primary treatment of patients with perianal Crohn's disease combines medical and surgical management with the aim of improving quality of life and alleviating suffering. A multidisciplinary approach involving the patient, surgeon, gastroenterologist, radiologist, pathologist, nutritionist, and other specialists makes the successful treatment of PCD[1] possible. This paper reviews the management of patients with perianal Crohn's disease, focusing on contemporary medical and surgical treatments such as infliximab, endorectal advancement flap, instillation of fibrin glue, and the potential use of extracellular matrix plugs






[1] PCD = perianal Crohn's disease


November 2006
R. Hirsch and J.Y. Streifler
 Congenital heart disease is usually regarded as an esoteric field of medicine, dealt with primarily by dedicated specialists. However, over the last two decades a much broader attention has been given by the medical profession, the media and the general public, to the possible association between a minor and common congenital heart defect, namely a patent foramen ovale, and stroke. In recent months, unusual and unfortunate circumstances have made this topic one of the most fiercely debated medical issues in Israel. It is the belief of the authors of this paper that the association of PFO[1] and stroke can be better understood if the PFO is viewed as part of a broader aspect of congenital heart disease, and as such it will be presented. Paradoxical embolism is a mechanism of stroke unique to congenital heart disease. The direction and volume of shunted blood in various conditions have a central role in determining the risk of stroke, as will be explained. With this basic knowledge in mind, we shall critically assess the potential role of PFO in stroke patients, suggesting that each case be evaluated individually using the above-mentioned principles. Conditions that enhance the formation of clot or other embolic material will be discussed briefly. The review will conclude with the various treatment options and our center's own experience with this challenging topic.







[1] PFO = patent foramen ovale


D. Soffer
 Cerebral amyloid angiopathy is characterized by deposition of amyloid in the walls of leptomeninged and cerebral blood vessels. Its most common form, sporadic CAA[1] that results from deposition of β-amyloid peptide, which is the subject of this short review, is present in virtually all cases of Alzheimer diseases and is also common among non-demented subjects where its prevalence increases with age. Stroke due to massive cerebral lobar hemorrhage is the main clinical presentation of CAA, but transient neurologic symptoms due to microhemorrhages may also occur. CAA is also a risk factor for cerebral infarction and there is increasing evidence that CAA contributes to cognitive impairment in the elderly, usually in association with white matter abnormalities on imaging. Although the definitive diagnosis of CAA is neuropathologic, reliable diagnosis can be reached clinically, based on the occurrence of strictly lobar hemorrhages, particularly in the cortico-subcortical area when using gradient-echo or T2*-weighted magnetic resonance imaging. Experimental studies have shown that the origin of the vascular amyloid is neuronal, and age-related degenerative changes in the vessel walls prevent its clearance from the brain along perivascular spaces and promote Aβ[2] aggregation and CAA formation. The entrapped Aβ aggregetes are toxic to various vascular wall components, including smooth muscle cells, pericytes and endothelial cells, leading to their eventual destruction and predisposition of the vessel wall to rupture and hemorrhage. However, more research is necessary to decipher the mechanism of CAA formation and its relation to cognitive decline in the elderly.







[1] CAA = cerebral amyloid angiopathy

[2] Aβ = β-amyloid peptide


October 2006
S. Linden
 Approximately 60% of all worldwide deaths are caused by chronic disease resulting from modifiable health behaviors. In the United States, structured programs tailored to identify and modify health behaviors of patients with chronic illness have grown into a robust industry called disease management. DM[1] is premised upon the basic assumption that health services utilization and morbidity can be reduced for those with chronic illness by augmenting traditional episodic medical care services and support between physician visits. Given that Israel and the U.S. have similar demographics in their chronically ill populations, it would make intuitive sense for Israel to replicate efforts made in the U.S. to incorporate DM strategies. This paper provides a conceptual framework of how DM could be integrated within the current organizational structure of the Israeli healthcare system, which is uniquely conducive to the implementation of DM on a population-wide basis. While ultimately the decision to invest in DM lies with stakeholders at various institutional levels in Israel, this paper is intended to provide direction and support for that decision-making process.







[1] DM = disease management


September 2006
M. Ben-Haim, M. Carmiel, P. Katz, E. Shabtai, R. Oren and R. Nakache

Background: The model for end-stage liver disease is the best available predictor of waiting list mortality among liver transplant candidates.

Objectives: To validate the applicability of MELD[1] in Israel.

Methods: All candidates awaiting liver transplantation in our institution were followed prospectively since 2002. We measured the concordance (c-statistic) equivalent to the area under the receiver operating characteristic curve in order to assess the predictive power of MELD. Other independent mortality risk factors were identified by a separate multivariate analysis. Mortality rates within different MELD and Child‑Pugh‑Turcotte scores were compared to the original (United States) MELD data.

Results: Of 86 patients listed for transplantation, 40 were transplanted (36 in Israel and 4 abroad). Of the other 46 patients, 24 are alive and still listed, and 22 died (25%, ~7%/year). The area under the ROC[2] curve for MELD score was 0.79 (0.83 USA) compared to a CPT[3] score of 0.71 (O.76 USA). High MELD scores, occurrence of spontaneous bacterial peritonitis, and diagnosis of hepatocellular carcinoma were independent risk factors of mortality. Death rates per mid MELD score (20–29) were significantly higher than the USA results.

Conclusions: MELD is valid in Israel and superior to CPT in predicting waiting list mortality. Although longer waiting time due to organ scarcity is a key factor, death rates in the mid-range (10–29) MELD groups indicate further audit of the care of patients with end‑stage liver disease.






[1] MELD = model for end-stage liver disease



[2] ROC = receiver operating characteristic



[3] CPT = Child‑Pugh‑Turcotte


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