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עמוד בית
Fri, 22.11.24

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March 2003
E. Mor, M. Cohen, F. Grief, S. Lelcuk and Z. Ben-Ari
May 2002
Marius Berman, MD, Israel L. Nudelman, MD, Zeev Fuko, MD, Osnat Madhala, MD, Margalit Neuman-Levin, MD and Shlomo Lelcuk, MD

Background: The mortality rate for cholecystectomy for acute cholecystitis in the elderly is 10% in low risk patients and increases threefold in high risk patients. Ultrasound-guided percutaneous transhepatic cholecystostomy may serve as a rapid and relatively safe tool to relieve symptoms of sepsis and decrease gallbladder distension.

Objective: To determine the safety and effectiveness of PTC[1] in the treatment of acute cholecystitis in elderly debilitated high risk patients.

Methods: The study sample included 10 patients aged 63–88 (mean 77.6 years) with clinical and sonographic signs of acute cholecystitis for more than 48 hours (fever, white blood cells > 12,000/mm³, positive Murphy sign and distended gallbladder) who underwent ultrasound guided PTC. All had severe underlying disease (coronary heart disease, renal failure, chronic obstructive pulmonary disease, and others) that places them at high risk for surgical intervention.

Results: Eight patients showed rapid regression of the clinical symptoms following PTC drainage. One patient, with bacterial endocarditis, was febrile for 5 days after catheter insertion, but with rapid resolution of the biliary colic and sepsis. One patient died from perforation of the gallbladder and small bowel. PTC catheters were withdrawn 3–25 days after the procedure, and the patients remained free of biliary symptoms. Two patients underwent successful elective cholecystectomy 3 weeks later.

Conclusion: PTC may be a safe and effective treatment for high risk elderly patients with acute cholecystitis. It can be followed by elective cholecystectomy if the underlying condition improves, as soon as the patient stabilizes and no sepsis is present, or by conservative management in high surgical-risk patients.






[1] PTC = percutaneous transhepatic cholecystostomy


June 2000
Osnat Madhala–Givon MD, Edith Hochhauser PhD, Avi Weinbroum MD, Yacov Barak MD, Tatyana Krasnov MSc, Shlomo Lelcuk MD, Daniella Harell PhD and Bernardo Vidne MD

Background: The beneficial effect of aprotinin, a naturally occurring protease inhibitor, on preservation of organs such as the liver, kidney and lung has been documented.

Objective: To explore the effects of hepatic ischemia and reperfusion on both liver and myocardial function, using a dual isolated perfused organ model with and without aprotinin.

Methods: Isolated rat livers were stabilized for 30 minutes with oxygenated modified Krebs-Henseleit solution at 37°C. Livers were then perfused continuously with KH or KH + aprotinin 106 KIU/L for an additional 135 min. Livers of two other groups were made globally ischemic for 120 min, then perfused for 15 min with KH or with KH + aprotinin. Isolated hearts (Langendorff preparation) were stabilized for 30 min and then reperfused with KH or KH + aprotinin exiting the liver for 15 min.  The liver’s circuit was disconnected, and hearts were re-circulated with the accumulated liver + heart effluent for an additional 50 min.

Results: In the ischemia and ischemia + aprotinin groups, portal vein pressure (1 and 15 min reperfusion) was 331±99% and 339±61% vs. 308±81% and 193±35% of baseline, respectively (P<0.03 vs. ischemia). There were no other differences in the enzyme leakage  between aprotinin-treated or untreated ischemic livers. Left ventricular pressure was stable in the controls.

However, LV pressure in groups perfused with ischemic liver effluent declined within 65 min reperfusion, whether aprotinin treated or not (84±8% and 73±5% of baseline, respectively, P<0.004 only for ischemia vs. control)

Conclusion: When aprotinin was used, LV pressure was inclined to be higher while liver portal vein pressure was lower, thus providing protection against liver and heart reperfusion injury. 

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* These authors contributed equally to the article

KH = Krebs-Henseleit

LV = left ventricular

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