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J Cipolla

Publications and source records attributed to J Cipolla.

3 recordsLinked to original sources

Laparoscopic repair of traumatic diaphragmatic injuries.

BACKGROUND: Laparoscopy has been proposed as a diagnostic and potentially therapeutic modality for penetrating diaphragmatic lacerations. The purpose of this study was to assess the technical feasibility and strength of various laparoscopic repairs of diaphragmatic injuries. METHODS: Swine underwent either open suture repair or laparoscopic repair by staple, suture, or patch technique of a 2-cm laceration to both the right and the left muscular or tendinous diaphragmatic leaflets. Six weeks after operation, diaphragms were harvested for either histologic analysis or bursting strength measurements. RESULTS: All methods of repair proved technically feasible. There was no significant difference in bursting strength measurements between treatment groups. Bursting was due to tissue failure either at or adjacent to the repair site. Histologic analysis confirmed healing of all specimens with the laparoscopic patch technique inciting less inflammation and greater fibroblastic proliferation than the other techniques. CONCLUSIONS: Laparoscopic repair of diaphragmatic lacerations can be accomplished using any of the currently available techniques. Laparoscopic stapling, suturing, or patch techniques all result in complete healing with a strong and durable repair. When selecting a particular technique, familiarity of the surgeon should be used as a guideline.

Animals↗

Antioxidant enzymes are induced during recovery from acute lung injury.

OBJECTIVE: To determine the contribution of the pulmonary antioxidant defense enzymes of the hexose monophosphate (HMP) shunt and glutathione systems to recovery from oxidant-mediated lung injury in an animal model shown to closely resemble the clinical syndrome of acute respiratory distress syndrome. DESIGN: Prospective, controlled laboratory study on phorbol myristate acetate (PMA)-induced lung injury in rabbits. SETTING: Animal research laboratory. SUBJECTS: Rabbits were injected with PMA (80 microg/kg) for 3 consecutive days. Control animals received normal saline. MEASUREMENTS AND MAIN RESULTS: Lungs were harvested at 24, 48, 72, and 96 hrs (n = 5/time point) after PMA injection or after the third injection of normal saline in control animals (n = 6). The cytosolic fraction from lung and bronchial alveolar lavage (BAL) fluid was used for measurements of HMP shunt and glutathione enzymes. Pulmonary activity peaked at 48 hrs post-PMA injury with a 40% increase in glucose-6-phosphate dehydrogenase activity and a 32% increase in 6-phosphogluconate dehydrogenase activity over control levels. BAL activity was maximal at 72 hrs with an increase of 98% in glucose-6-phosphate dehydrogenase and 346% in 6-phosphogluconate dehydrogenase activities. Glutathione peroxidase was maximally induced by 77% at 48 hrs in BAL and by 107% at 24 hrs in lung. Glutathione reductase activity did not increase significantly in either lung or BAL. CONCLUSIONS: The observed induction of the antioxidant enzymes in response to PMA suggests that both the HMP shunt and the glutathione systems contribute to the recovery phase of oxidant-mediated lung injury. The inability of natural host defenses to regenerate reduced glutathione may explain failure of recovery from acute respiratory distress syndrome and suggests an avenue for clinical intervention.

Animals↗

Eye care, do you?

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Eye Injuries↗