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Ryosuke Nomura

Publications and source records attributed to Ryosuke Nomura.

2 recordsLinked to original sources

[Animal models for sepsis].

When new immunomodulatory agents are developed for the treatment of sepsis, the efficacy is usually tested in animal models before going to clinical trials. However, despite promising preclinical evidence, dozens of new agents have failed to demonstrate clinical efficacy. One of the reasons may be that the preclinical trials were conducted using animal models that did not adequately reflect clinical realities. Various kinds of experiments utilized for the development of new agents were carried where bolus or short term continuous infusions of large doses of bacteria or endotoxin were administered intravenously. Massive i.v. bolus models using bacteria or endotoxin generally produce a rapid hypodynamic cardiovascular response with the animals dying within hours. The serum cytokine response is transient and is much greater in magnitude than that observed in septic patients. For the preclinical testing of agents, 1) i.v. bacteria and endotoxin models in which the total challenge dose of adequate bacteria or endotoxin is reduced and/or the length of administration time is increased, and 2) peritonitis models, e.g., cecal ligation and puncture and peritoneal implantation of bacteria or endotoxin, will become reasonable choices. The animals are also required to receive volume resuscitation and adjuvant antibiotic therapy.

Animals↗

Recombinant human interleukin-1alpha increases serum albumin, Gc-globulin, and alpha1-antitrypsin levels in burned mice.

The response to thermal injury is a complex physiologic process requiring communication between sites of injury and distant target organs. The liver, one of these target organs, synthesizes a family of secretory proteins, the acute phase proteins, that carries out specific immunoprotective functions. In this study we investigated the effects of daily recombinant human interleukin-1alpha (rhIL-1alpha) administration on the serum levels of negatively regulated, i.e., albumin and Gc-globulin and positively regulated, i.e., alpha1-antitrypsin, acute phase proteins in a murine model of thermal injury. Adult CF-1 female mice underwent a 6.5-seconds, 20% total burn surface area, full thickness steam injury, and received either intraperitoneal rhIL-1alpha (20 microg x kg(-1) x day(-1)) or diluent for 10 days. Seven and 14 days after injury, mice were sacrificed, and serum albumin, Gc-globulin and alpha1-antitrypsin levels were measured by crossed immunoelectrophoresis technique. Thermal injury significantly lowered serum albumin levels, tended to decrease Gc-globulin levels, and increased serum alpha1-antitrypsin levels. Daily rhIL-1alpha administration after burn injury prevented hypoalbuminemia, and increased serum levels of Gc-globulin and alpha1-antitrypsin. IL-1 therapy might be helpful to maintain the homeostasis and immunity of the host after thermal injury.

Animals↗