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[Translocation of intestinal endotoxin and bacteria induced by the apoptosis of enterocytes in scald rats after delayed resuscitation].

OBJECTIVE: To investigate the role of enterocyte apoptosis in translocation of intestinal endotoxin and bacteria after delayed resuscitation in scalded rats. METHODS: One hundred and ten male Wistar rats were divided randomly into two groups: group A, early resuscitation, n=60; group B, delayed resuscitation, n=50. All animals were subjected to 30% total body surface area (TBSA) full-thickness scald. In group A, saline resuscitation was begun immediately after the injury. Saline resuscitation later than 6 hours after scalding was referred as delayed resuscitation. Apoptosis of enterocytes was identified by DNA fragmentation (ap%), DNA agarose gel electrophoresis, TdT-mediated dUTP nick end labeling (TUNEL) method and electron microscope (EM). The levels of endotoxin in portal vein and systemic circulation were determined by limulus amebocyte lysate technique. The amount of bacteria in mesenteric lymph nodes (MLN) was detected by a quantitative bacteria culture of biopsy. RESULTS: The ap% of enterocytes was increased significantly in groups A and B, peaking at 12 hours postburn. The increased ap% in the group B occurred much earlier and higher than in group A from 3 hours to 48 hours postburn (P<0.05 or P<0.01). This was corroborated by the results observed in electrophoresis, TUNEL method and EM. The portal endotoxin was much higher in group B than in group A at the same postburn timepoints. So were the endotoxin levels in systemic circulation. A significant positive relationship existed between the portal endotoxin levels and the ap% of intestinal epithelial cells in groups A and B (group A: r=0.936, P<0.01; group B: r=0.899, P<0.05). The frequency of bacteria translocation of MLN in group B was higher than that in group A. CONCLUSION: Significant pathologic apoptosis of enterocytes is induced by delayed resuscitation after thermal injury in rats. This may lead to a compromise of intestinal barrier. It may be one of the major causes of translocation of endotoxin and bacteria postburn.

Animals↗

[Change in apoptosis rate and expression of apoptosis-related gene of lamina propria lymphocyte and intra-epithelial lymphocyte after burn and delayed resuscitation].

OBJECTIVE: To study the effects of delayed resuscitation on the apoptosis rate (ap%) and expression of apoptosis-related genes of lamina propria lymphocytes (LPL), intra-epithelial lymphocyte(IEL) after burn in rats. METHODS: Thirty Wistar rats were randomly divided into early resuscitation (ER) and delayed resuscitation (DR) groups, 24 rats of them were subjected to 30% total body surface area (TBSA) III degree scald burn on back, among which 12 received fluid resuscitation immediately, and 12 with delayed fluid resuscitation. Six rats were subjected to sham burn served as control. DNA fragmentation, DNA agarose gel electrophoresis were used to observe the apoptosis of LPL and IEL. Reverse transcription-polymerase chain reaction (RT-PCR) was employed to detect the expression of interleukin-1beta-converting enzyme (ICE) and B cell lymphoma-2 (bcl-2). RESULTS: The ap% of LPL and IEL increased significantly after burn (all P<0.01). The ap% in DR group was higher than in ER group at 12 hours postburn. Distinct DNA "ladders" were visualized in agarose gel electrophoresis 6 hours postburn for both LPL and IEL. The expression of ICE gene increased dramatically after burn, and it expressed higher in DR group than that in ER group postburn (P<0.05 or P<0.01). A strong expression of bcl-2 in LPL and IEL were detected before burn, but the expressions decreased significantly after burn and delayed resuscitation (P<0.05 or P<0.01). CONCLUSION: The apoptosis of LPL and IEL increased significantly after burn and delayed resuscitation. The unbalanced expression of apoptosis-enhanced gene ICE and apoptosis-inhibited gene bcl-2 may be responsible for the dramatically increased apoptosis of LPL and IEL postburn.

Animals↗

Emergency central venous catheterization during resuscitation of trauma patients.

Central venous catheterization during resuscitation of trauma patients remains controversial. Such catheterizations performed at the UMDNJ-Robert Wood Johnson Medical School at Camden Cooper Hospital/University Medical Center (Camden, NJ) trauma center for the period January 1, 1988 to December 31, 1989 were retrospectively reviewed. Patients with underlying hemothorax, pneumothorax, or resuscitative thoracotomy were excluded. There were 269 catheters inserted using the Seldinger technique. Catheters were placed via the internal jugular or subclavian veins by attending traumatologists or emergency medicine and surgical house staff under direct attending supervision. Of 238 patients ages 6 to 90 years, 156 were men. Mean Trauma Score and Injury Severity Score were 9 and 30, respectively. Patients were divided into two groups: patients undergoing cardiopulmonary resuscitation or in shock (systolic bp less than 90) during resuscitation (Group 1: n - 161); and patients not in shock (Group 2: n - 77). Thirty patients (Group 1a) expired in the resuscitation area. The remainder (Group 1b) with 150 catheterizations had 12 complications (8%): pneumothorax (8), hemothorax (1), and malposition (3). Group 2, with 80 catheterizations, had 6 complications (7.5%): pneumothorax (4), hematoma (1), and malposition (1). The complication rate for patients surviving the resuscitation (230 catheterizations) was 7.8 per cent. There were no catheter-related deaths. In conclusion, emergency central venous catheterization during resuscitation of trauma patients carries a relatively low risk of serious complications when performed by experienced physicians.

Adolescent↗

Hypertonic saline/dextran resuscitation of dogs with experimentally induced gastric dilatation-volvulus shock.

We investigated small-volume (5 ml/kg) 7% NaCl in 6% dextran 70 (HS/D70) as an alternative to large-volume (60 ml/kg) 0.9% NaCl for treatment of experimentally induced canine gastric dilatation-volvulus (GDV) shock. The stomach was surgically displaced and then distended with an intragastric balloon in 11 dogs anesthetized with pentobarbital. All dogs were subjected to GDV for 180 minutes before partial decompression and resuscitation. Hemodynamic values, blood gas values, and plasma volume were measured during control, shock, and resuscitation periods. Resuscitation started with 1 group (n = 6) receiving 5 ml of HS/D70/kg, iv, over 5 minutes, and the other group (n = 5) receiving 60 ml of 0.9% NaCl/kg, IV, over 60 minutes. Both groups received a surgical maintenance dosage (20 ml/kg/h) of 0.9% NaCl after initial resuscitation. Resuscitative effects of small-volume HS/D70 were similar to large-volume 0.9% NaCl during the first hour of treatment; however, cardiac output was significantly higher in the HS/D70 group for the last 2 hours of resuscitation. Changes in heart rate, left ventricular pressure change, and systemic vascular resistance appeared to be responsible for improved perfusion. Mixed venous oxygen partial pressure data supported improved perfusion in the HS/D70 group. Packed cell volume remained higher in the HS/D70 group, indicating less hemodilution and improved oxygen delivery. Resuscitation of this GDV-induced shock model was better sustained with small-volume HS/D70, compared with conventional large-volume 0.9% NaCl.

Animals↗

[End-tidal carbon dioxide concentration during cardiopulmonary resuscitation in patients with pre-hospital cardiac arrest].

This study was done to clarify whether end-tidal carbon dioxide (ETCO2) concentration is an effective monitor as an indicator of survival and prognosis of patients who arrived with cardiac arrest. We measured ETCO2 concentration in 30 patients with pre-hospital cardiac arrest during cardiopulmonary resuscitation (CPR). Six patients were resuscitated successfully and the others were not. The values of ETCO2 of the resuscitated patients, at the time of starting advanced life support were varied from 0 to 4.5% (mean 1.4%), which were not different from the values in patients who were not resuscitated (mean 0.87%). In 13 patients who were not resuscitated, the initial values of ETCO2 during CPR were below 1.0%, whereas the other 11 patients showed high ETCO2 values (above 1.5%), which were dependent on the degree of chest compression. This suggests that ETCO2 monitoring during cardiopulmonary resuscitation is a good non-invasive indicator to evaluate the efficacy of chest compression itself, but its initial values during CPR are not correlated with success of resuscitation in patients with pre-hospital cardiac arrest.

Aged↗

[Long-term survival following successful resuscitation outside the hospital].

Between 1983 and 1989, 962 patients in Rotterdam were resuscitated outside hospital, of whom 240 (25%) could be discharged alive. A follow-up study was performed to determine prognosis in these patients. Data were collected through the Municipal Health Service, Population Registries, the hospitals where the patients were admitted, and the general practitioners. Of these 240 survivors of out-of-hospital resuscitation 80% survived after 1 year and 61% after 5 years. During the first year, 9% suffered from myocardial (re)infarction and 13% underwent coronary bypass surgery or angioplasty. Within the first three years after resuscitation 60% of the patients were readmitted to a hospital. Permanent or temporary neurological deficits were observed in 30 patients (14%). Patients with a primary arrhythmia without myocardial infarction had a poorer prognosis than patients with cardiac arrest in the context of an infarct. Survival was better in patients in whom resuscitation was initiated by physicians or ambulance-nurses, than in patients resuscitated by lay-people. Multivariate analysis revealed that this difference was caused by a larger proportion of patients with a primary arrhythmia in the latter group. Since long-term prognosis after out-of-hospital resuscitation is satisfactory, programmes for resuscitation courses should be stimulated. Such courses should be aimed predominantly at relatives of patients with known heart disease, police officers and children.

Adolescent↗

Combined hemorrhagic shock and head injury: effects of hypertonic saline (7.5%) resuscitation.

Hypertonic saline resuscitation was compared to isotonic fluid resuscitation in a large animal model combining hemorrhagic shock with head injury. Sheep were subjected to a freeze injury of one cerebral hemisphere as well as 2 hours of hypotension at a mean arterial pressure (MAP) of 40 mm Hg. Resuscitation was then carried out (MAP = 80 mm Hg) for 1 hour with either lactated Ringer's (LR, n = 6) or 7.5% hypertonic saline (HS, n = 6). Hemodynamic parameters and intracranial pressure (ICP) were followed. At the end of resuscitation brain water content was determined in injured and uninjured hemispheres. No differences were detected in cardiovascular parameters; however, ICPs were lower in animals resuscitated with HS (4.2 +/- 1.5 mm Hg) compared to LR (15.2 +/- 2.2 mm Hg, p less than 0.05). Additionally, brain water content (ml H2O/gm dry weight) in uninjured brain hemispheres was lower after HS resuscitation (HS = 3.3 +/- 0.1; LR = 4.0 +/- 0.1; p less than 0.05). No differences were detected in the injured hemispheres. We conclude that hypertonic saline abolishes increases in ICP seen during resuscitation in a model combining hemorrhagic shock with brain injury by dehydrating areas where the blood-brain barrier is still intact. Hypertonic saline may prove useful in the early management of multiple trauma patients.

Animals↗

Hypertonic saline resuscitation: efficacy in a community-based burn unit.

Many have discussed hypertonic saline for resuscitation in burned patients only to discourage its use or to emphasize it only as a research tool and not as standard resuscitation. We reviewed the records of 47 adults with burns over 20% or more of the total body surface area (TBSA) in whom hypertonic saline was used as standard resuscitation fluid in a large community burn unit. The solution consisted of sodium, 300 mEq/L, acetate, 200 mEq/L, and chloride, 100 mEq/L, with an osmolality of 600 mOsm/L. The mean TBSA burned was 37% and the mean patient age was 44.8 years. Eighteen patients (mean age 39.7 years, mean TBSA burned 27%) received hypertonic saline alone. They required an average of 75% of the Parkland calculated volume to achieve a urinary output of 1 mL/kg/hr. The mean hematocrit value over the first 48 hours was 44.2% and the mean serum sodium level was 141.6 mEq/L. Twenty-nine patients (mean age 51.8 years, mean TBSA burned 47.8%) received hypertonic saline plus colloid (albumin or fresh frozen plasma). Colloid was used in older patients with more serious burns. This group required 57% of the Parkland calculated volume to achieve a urinary output of 1 mL/kg/hr. The mean hematocrit value was 45.1% and mean sodium level was 143.8 mEq/L. The mean weight gain for both groups was 7.3% of the admission weight. None of the patients had changes in pH or renal function. All patients survived the resuscitation phase of their injury; the overall death rate was 49%. We conclude that hypertonic saline is a safe, effective means of resuscitation even in a community-based unit. It allows less fluid to be delivered for adequate resuscitation. The usual hyponatremia, hemoconcentration, and significant weight gain associated with administration of isotonic solutions was avoided. Colloid may further improve the resuscitation capabilities of hypertonic saline.

Adult↗

Flail chest as a complication of cardiopulmonary resuscitation.

Records of all patients who developed flail chest after cardiopulmonary resuscitation at Rochester Methodist Hospital between January, 1966 and March 1976 were reviewed. Also, for comparison, records of patients with flail chest resulting from motor vehicle accidents and those of a matched group of patients who underwent cardiopulmonary resuscitation without developing flail chest were reviewed. The incidence of flail chest after cardiopulmonary resuscitation was about 5.6 per 100 survivors. The groups who did and did not have flail chest after cardiopulmonary resuscitation were alike in age and in frequency and duration of the resuscitation. Stabilization of the flail chest required mechanical ventilation for 1 to 24 days (mean, 10.7). Flail chest did not significantly lengthen the hospitalization of patients who survived after cardiopulmonary resuscitation. The occurrence of flail chest after cardiopulmonary resuscitation did not seem to increase the mortality rate.

Aged↗

Postresuscitation electrolyte changes: role of arrhythmia and resuscitation efforts in their genesis.

Hypokalemia frequently occurs after resuscitation from ventricular fibrillation (VF) in man. To test the casual roles of VF and resuscitation variables in this electrolyte change, we studied six groups of dogs: VF with CPR and electrical cardioversion (n = 9), control dogs with no intervention (n = 9), CPR without arrhythmia (n = 5), electrical cardioversion without arrhythmia (n = 5), CPR and cardioversion without arrhythmia (n = 5), and rapid right ventricular pacing (n = 5) (pacing rate 374 +/- 68 beat/min; BP 79/52 mm Hg during pacing). Blood for K, Ca, Mg, and glucose analysis was collected before each intervention (or at baseline in control animals) and sequentially for 3 hr. Mg had a maximum change of 0.3 mEq/L in the VF group 7 min after resuscitation, but did not change in the other groups (p less than .005). Glucose had a maximum change of 79 mg/dl in the VF group 7 min after resuscitation but did not change in the other groups (p less than .005). Ca had a maximum decrease of 0.4 mg/dl in the VF group 15 min after resuscitation but did not decrease in the other groups (p less than .005). K had a maximum decrease of 0.8 mEq/L in the VF group 60 min after resuscitation, whereas decreases were less in the other groups (p less than .005). Thus, VF caused a rapid rise in Mg and glucose followed by a fall in Ca and K. These changes were independent of resuscitation efforts as well as the moderate hypotension induced by rapid right ventricular pacing.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of body position and ventilation/compression ratios during cardiopulmonary resuscitation in cats.

Eighteen cats were anesthetized and were randomly assigned to 2 groups (9 cats/group). Cardiopulmonary resuscitation (CPR) was performed on each cat, with the cat in dorsal (group 1) or lateral (group 2) recumbency, by administering 5 external cardiac compressions/1 interposed (diastolic) ventilation (American Heart Association [AHA] technique; n = 3 cats/technique), simultaneous compression and ventilation (SCV; n = 3 cats/technique), or SCV with 1 interposed (diastolic) ventilation every tenth compression (SCV/DV; n = 3 cats/technique). Fourteen of the 18 cats were resuscitated. Central aortic and venous pressures were determined concurrently with lead II electrocardiography. Arterial blood samples were collected during the base-line period (after pressure fluctuations had stabilized, with the cats spontaneously breathing room air), 2.5 minutes after the onset of arrest (defined as the cessation of aortic pressure fluctuations), and after 10 minutes of CPR. Arterial blood gas values during the base-line period or during the period of arrest were not significantly different between group-1 and group-2 cats. After CPR, arterial pH and bicarbonate values were not significantly different between groups or between technique categories. The PaCO2 values were significantly lower in cats resuscitated by SCV or by SCV/DV than in cats resuscitated by AHA (P less than 0.05). The PaO2 values were significantly (P less than 0.001) higher in group-2 cats than in group-1 cats and were significantly (P less than 0.001) different between each technique category, with cats resuscitated by AHA having the lowest PaO2 and cats resuscitated by SCV/DV having the highest PaO2. Body position, CPR technique, sex, weight, or arterial blood gas values after CPR were not predictors of successful resuscitation.

Animals↗

[Prognosis of preclinical cardiopulmonary resuscitation].

480 preclinical cardiopulmonary resuscitations performed at the Emergency Center of the Federal Military Hospital in Hamburg were analysed. The late success was 7.9%, i.e., 38 patients were released after initially successful resuscitation and subsequent clinical treatment. Prognostic parameters indicating late success were deduced from the data. The age of the patients, call times, and organisational course do not influence the survival rate. For this reason resuscitation should be attempted in every patient, even in those with longer transport times, and if resuscitation proves unsuccessful, the measures should be discontinued at the site. Patients with multiple injuries or craniocerebral trauma, who require resuscitation, and patients with asystole, who are older than 70 years of age, do not survive. Even in young patients, the prognosis for asystole is extremely poor. Although the prognosis for patients with ventricular fibrillation is better, we are of the opinion that the success rate of preclinical cardiopulmonary resuscitations can be improved by systematic use of antiarrhythmics; metaproterenol sulfate should no longer be administered. The prognosis of resuscitated patients with contracted pupils and gasping breath and of patients with severe tachycardia is relatively good. Cardiac arrest after drowning carries best prognosis: 4 of 7 patients survived.

Adolescent↗

Effect of immediate resuscitation on children with submersion injury.

STUDY OBJECTIVE: To determine the effect of immediate resuscitative efforts on the neurological outcome of children with submersion injury. DESIGN: A case-control study was designed to determine if immediate resuscitation by rescuers or bystanders reduces the frequency of severe neurological damage or death in children with a documented submersion event. Logistic regression was used calculate an adjusted odds ratio. PARTICIPANTS: The study group consisted of 166 children, aged zero to 14 years, having a submersion event during May 1984 through August 1992, and admitted through various emergency departments to Huntington Memorial Hospital in Pasadena, California. MEASUREMENTS AND MAIN RESULTS: All study subjects had an observed and documented episode of apnea at the time of submersion. Outcomes were evaluated on the basis of neurological impairment or death. Exposure was verified from historical accounts of postsubmersion events provided by family, friends, and/or paramedical personnel. The study factors included age and gender, duration of submersion, hypothermia, presence of apnea, resuscitative efforts, and clinical outcome. Children with a good outcome were 4.75 (adjusted odds ratio (OR)) times more likely to have a history of immediate resuscitation than children with poor outcome (95% confidence interval: 3.44 < OR < 6.06, P = .0001). Various types of resuscitative efforts and potential confounding factors were also evaluated. CPR and mouth-to-mouth resuscitation were the most effective types for the prevention of death or severe anoxic encephalopathy. CONCLUSION: Immediate resuscitation before the arrival of paramedical personnel is associated with a significantly better neurological outcome in children with submersion injury.

Adolescent↗

Prevalence and determinants of acute renal failure following cardiopulmonary resuscitation.

BACKGROUND: The purpose of this study was to determine the prevalence and determinants of acute renal failure in patients following cardiac arrest. METHODS: This was a cross-sectional study of 420 consecutive admissions with a diagnosis of cardiac arrest admitted to the Long Island Jewish Medical Center, New Hyde Park, NY, the Long Island Campus for the Albert Einstein College of Medicine, Bronx, NY, over a 2-year period. Fifty-six patients who initially survived cardiopulmonary resuscitation following cardiac arrest and had serial biochemical and renal function data available were studied. The events during cardiopulmonary resuscitation and clinical and biochemical data were compared and contrasted among patients who developed acute renal failure following cardiopulmonary resuscitation (group 1, n = 16) and those who did not (group 2, n = 40). RESULTS: Patients who developed acute renal failure following cardiopulmonary resuscitation (group 1) had longer duration of resuscitation (12.0 +/- 2.1 minutes vs 6.7 +/- 0.9 minutes for group 2) and received larger dosages of epinephrine during cardiopulmonary resuscitation (1.81 +/- 0.36 mg vs 0.90 +/- 0.18 mg for group 2). Patients in group 1 had a significantly higher frequency of congestive heart failure (43.8% vs 12.5% for group 2), coronary artery disease (87.5% vs 37.5% for group 2), and preexisting compromised renal function (50% vs 12.5% for group 2). Patients in group 1 had significantly worsened long-term survival compared with group 2 patients (6.3% vs 47.5% for group 2). CONCLUSIONS: We conclude that acute renal failure occurs commonly in the postcardiac arrest period. Administration of the vasoconstrictor epinephrine, congestive heart failure, coronary artery disease, and preexisting renal insufficiency may be significant risk factors for the development of postcardiac arrest acute renal failure. The development of acute renal failure following cardiopulmonary resuscitation predicts a lesser likelihood of survival to discharge from the hospital.

Acute Kidney Injury↗

Compliance with New York State's do-not-resuscitate law at Memorial Sloan-Kettering Cancer Center. A review of patient deaths.

We reviewed the case records of 141 patients (134 with cancer and seven with acquired immunodeficiency syndrome) who died at Memorial Sloan-Kettering Cancer Center between July 11 and September 19, 1991. Do-not-resuscitate orders had been written on 115 (85.8%) of the patients with cancer and all of the patients with acquired immunodeficiency syndrome. The do-not-resuscitate orders appeared to be valid, in that evidence of informed consent was documented in all but two of the cases. Six additional patients who died had family consent not to resuscitate, although no do-not-resuscitate orders were written. Two other patients died unexpectedly. The remaining 11 patients all received aggressive attempts at resuscitation, which were felt to be medically appropriate in all but two cases. The interval between the do-not-resuscitate order and death was between zero and 60 days, with an average of 8.4 days and a median of 6 days; it exceeded 20 days in 14 cases. We attribute the high degree of compliance with the New York State do-not-resuscitate law observed in this study to an intensive program of consultation and education begun in 1987 by the Ethics Committee of Memorial Sloan-Kettering Cancer Center.

Acquired Immunodeficiency Syndrome↗

Resuscitation from severe hemorrhage.

The potential to be successfully resuscitation from severe traumatic hemorrhagic shock is not only limited by the "golden 1 hr", but also by the "brass (or platinum) 10 mins" for combat casualties and civilian trauma victims with traumatic exsanguination. One research challenge is to determine how best to prevent cardiac arrest during severe hemorrhage, before control of bleeding is possible. Another research challenge is to determine the critical limits of, and optimal treatments for, protracted hemorrhagic hypotension, in order to prevent "delayed" multiple organ failure after hemostasis and all-out resuscitation. Animal research is shifting from the use of unrealistic, pressure-controlled, hemorrhagic shock models and partially realistic, volume-controlled hemorrhagic shock models to more realistic, uncontrolled hemorrhagic shock outcome models. Animal outcome models of combined trauma and shock are needed; a challenge is to find a humane and clinically realistic long-term method for analgesia that does not interfere with cardiovascular responses. Clinical potentials in need of research are shifting from normotensive to hypotensive (limited) fluid resuscitation with plasma substitutes. Topics include optimal temperature, fluid composition, analgesia, and pharmacotherapy. Hypotensive fluid resuscitation in uncontrolled hemorrhagic shock with the addition of moderate resuscitative (28 degrees to 32 degrees C) hypothermia looks promising in the laboratory. Regarding the composition of the resuscitation fluid, despite encouraging results with new preparations of stroma-free hemoglobin and hypertonic salt solutions with colloid, searches for the optimal combination of oxygen-carrying blood substitute, colloid, and electrolyte solution for limited fluid resuscitation with the smallest volume should continue. For titrating treatment of shock, blood lactate concentrations are of questionable value although metabolic acidemia seems helpful for prognostication. Development of devices for early noninvasive monitoring of multiple parameters in the field is indicated. Molecular research applies more to protracted hypovolemic shock followed by the systemic inflammatory response syndrome or septic shock, which were not the major topics of this discussion.

Animals↗

Resuscitative hypothermia.

Resuscitative (postinsult) hypothermia is less well studied than protective-preservative (pre- and intra-arrest) hypothermia. The latter is in wide clinical use, particularly for protecting the brain during cardiac surgery. Resuscitative hypothermia was explored in the 1950s and then lay dormant until the 1980s when it was revived. This change occurred through the discoveries of brain damage mitigating effects after cardiac arrest in dogs, and after forebrain ischemia in rats, of mild (34 degrees C) hypothermia (which is safe), and of benefits derived from moderate hypothermia (30 degrees C) after traumatic brain injury or focal brain ischemia in various species. The idea that protection-preservation or resuscitation by hypothermia is mainly explained by its ability to reduce cerebral oxygen demand has been replaced by an increasingly documented synergism of many beneficial mechanisms. Deleterious chemical cascades during and after these insults are suppressed even by mild hypothermia. Prolonged moderate hypothermia carries some risks, e.g., arrhythmias, infection and coagulopathies. These side effects need further study. In global brain ischemia, protective-preservative mild hypothermia provides lasting mitigation of brain damage. Resuscitative mild hypothermia, however, may be beneficial in terms of long-term outcome or may merely delay the inevitable loss of selectively vulnerable neurons. Even if the latter is true, mild hypothermia may extend the therapeutic window for other interventions. This extension of the therapeutic window requires further documentation. After normothermic cardiac arrest of 11 mins in dogs, mild resuscitative hypothermia from 15 mins to 12 hours after reperfusion plus cerebral blood flow promotion normalized functional recovery with the least histologic damage seen thus far. Optimal duration of, and rewarming methods from, resuscitative hypothermia need clarification. The earliest possible induction of mild hypothermia after cardiac arrest seems desirable. Head-neck surface cooling alone is too slow. Among many clinically feasible rapid cooling methods, carotid cold flush and peritoneal cooling look promising. After traumatic brain injury or focal brain ischemia, which seem to still benefit from even later cooling, surface cooling methods may be adequate. Resuscitative hypothermia after cardiac arrest, traumatic brain injury, or focal brain ischemia should be considered for clinical trials.

Animals↗

Resuscitation with lactated Ringer's solution after hemorrhage: lack of cardiac toxicity.

The toxicity of D-lactate has been recognized for almost 30 years. This compound is found in the racemic mixture of lactated Ringer's solutions routinely used for peritoneal dialysis and the resuscitation of trauma victims. The current study was designed to investigate whether toxicity occurred at the D-lactate concentrations achieved during hemorrhage resuscitation with racemic lactated Ringer's solution. Conscious unrestrained male Sprague-Dawley rats (n = 24) were monitored for electrocardiographic abnormalities while undergoing hemorrhage and subsequent resuscitation with either L-lactated, D-lactated, or racemic lactated Ringer's solution. The rats infused with D-lactate showed significant toxicity as evidenced by bradycardia, premature ventricular contractions, and ventricular fibrillation. No such alterations were observed in the animals resuscitated with L-lactate or racemic solutions. Resuscitation with the racemic lactate mixture increased the D-lactate concentrations in the blood, but was not associated with overt changes in cardiac rhythm. The infusion of the different resuscitation fluids produced few significant differences in acid-base status of hemorrhaged rats. These findings indicate that although toxicity may be achieved with a Ringer's solution containing only D-lactate, resuscitation using the racemic mixture does not achieve D-lactate concentrations high enough to be detrimental to the animal.

Animals↗