PubMed HealthSearch

SEARCH · PubMed Health

Results for “Cephaloridine”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Cephaloridine nephrotoxicity is potentiated by selenium deficiency but not copper deficiency in rats.

Lipid peroxidation may contribute to the nephrotoxicity of cephaloridine, a beta-lactam antibiotic. Copper and Se may protect against free radical damage, and dietary Se deficiency potentiates cephaloridine nephrotoxicity. The objectives of this study were to further investigate potentiation of cephaloridine toxicity by Se deficiency and to determine whether Cu deficiency increases cephaloridine-induced injury. Weanling male Sprague-Dawley rats were fed adequate, Cu-deficient, Se-deficient, and Se and Cu-deficient diets for 4 wk and subsequently injected i.p. with cephaloridine (1200 mg/kg body wt) or saline. Nephrotoxic response to cephaloridine occurred, with increased plasma urea, kidney weight, excretion of urinary enzymes, and kidney lesions. Cephaloridine also increased plasma sorbitol dehydrogenase activity. Selenium deficiency depressed kidney glutathione peroxidase activity (78%) and potentiated cephaloridine nephrotoxicity. Copper deficiency did not increase cephaloridine nephrotoxicity; the small depression (13%) in kidney Cu,Zn-superoxide dismutase activity may not have been sufficient to impair antioxidant status. However, the marked depression in kidney glutathione peroxidase activity during Se deficiency may have impaired antioxidant status and enhanced cephaloridine-induced injury. In contrast to results in the kidney, neither Se deficiency nor Cu deficiency potentiated cephaloridine hepatotoxicity, as assessed by plasma SDH activity.

Animals

Comparative studies of in vitro renal cephaloridine toxicity between normoglycemic and diabetic rats.

This study investigated if the attenuation in cephaloridine toxicity associated with streptozotocin (STZ)-induced diabetes can be attributed to a direct cellular effect. Comparative studies examined the direct toxicity of cephaloridine 14 days after (35 mg kg-1, i.p.) STZ or vehicle injection of male Fischer 344 (F344) rats. In vitro cephaloridine toxicity was assessed by measuring lipid peroxidation, renal gluconeogenesis and organic ion accumulation in renal cortical slices. The in vitro toxicity of cephaloridine was reduced in the diabetic group since lipid peroxidation was not increased following a 120-min exposure to cephaloridine. This was in contrast to a concentration- and time-dependent increase in lipid peroxidation in renal tissue derived from normoglycemic animals pre-incubated with 0-5 mM cephaloridine. Renal gluconeogenesis was inhibited in a concentration-dependent manner in the normoglycemic group following a 15-90-min exposure to 0-5 mM cephaloridine. Pyruvate-stimulated gluconeogenesis was diminished in the diabetic group only after a 90-min preincubation. Renal cortical slice accumulation of p-aminohippurate (PAH) and tetraethylammonium (TEA) was decreased in the normoglycemic group. Accumulation of TEA, but not PAH, was decreased (P less than 0.05) in the diabetic group. These results indicate that in vitro cephaloridine toxicity was attenuated by STZ-induced diabetes.

Animals

Contribution of acetone and osmotic-diuresis by streptozotocin-induced diabetes in attenuation of cephaloridine nephrotoxicity.

Previous studies have indicated that cephaloridine nephrotoxicity was reduced in streptozotocin (STZ)-induced diabetic rats. Experiments were performed to investigate if a shorter duration of diabetes would reduce cephaloridine nephrotoxicity. Studies were also conducted to examine the contribution of osmotic diuresis and ketone accumulation to the mechanism for reduced toxicity. Male Fischer 344 (F344) rats were injected with 30 mg/kg STZ or vehicle. Seven days after STZ or vehicle administration, the animals were treated (i.p.) with 1500 mg/kg cephaloridine. Increased kidney weight, blood urea nitrogen (BUN) level and decreased renal cortical slice accumulation of p-aminohippurate (PAH) and tetraethyl-ammonium (TEA) were measured in the normoglycemic group. No differences in renal function were detected between diabetic groups treated with cephaloridine or vehicle (PFC). Pretreatment of euglycemic rats with 0 or 10% dextrose in the drinking water and by oral gavage failed to prevent the renal damage produced by 1500 mg/kg cephaloridine despite glucosuria and urine output comparable to diabetic animals. However, dextrose-diuresis afforded a slight reduction in toxicity as indicated by changes in kidney weight and renal cortical slice accumulation of PAH and TEA. Pretreatment (oral) with 0 or 1.5 ml/kg acetone had no effect on cephaloridine toxicity (1000 mg/kg, i.p.). These findings suggested that attenuation of cephaloridine toxicity may be independent of the duration of diabetes. These results also indicated that glucose-mediated osmotic diuresis and acetone accumulation cannot account for reduced cephaloridine toxicity in diabetic rats.

Acetone

Comparative study of the in vitro antibacterial activity of cefoxitin, cefuroxine, and cephaloridine.

The in vitro antibacterial effects of cefoxitin, a semisynthetic cephamycin, cefuroxime, a new cephalosporin antibiotic, and cephaloridine were compared. With gram-positive bacteria, marked differences were found only in the effects against Streptococcus faecalis, where cephaloridine and cefuroxime were superior to cefoxitin. With gram-negative aerobic bacteria, cefoxitin, which is known to be more resistant to beta-lactamases from gram-negative bacteria than any cephalosporin, was found to be more effective than cefuroxime and cephaloridine against ampicillin-resistant strains of Escherichia coli and indole-positive strains of Proteus. Haemophilus influenzae was found to be more susceptible to cefuroxime than to cefoxitin and cephaloridine. When ampicillin-resistant strains of H. influenzae were tested, markedly higher minimal inhibitory concentration values were obtained with cephaloridine in comparison to those obtained with ampicillin-susceptible strains. These increases in the minimal inhibitory concentration values were not observed with cefoxitin and cefuroxime, probably due to the resistance of these two compounds to beta-lactamases. Strains of Bacteroides fragilis were found to be much more susceptible to cefoxitin than to cefuroxime, which in turn was superior to cephaloridine. The results obtained indicate that cefoxitin and cefuroxime both are superior in their antibacterial spectra to the cephalosporins that are now in clinical use.

Bacteria

Age-dependent renal accumulation of cephaloridine in the rabbit.

The accumulation of cephaloridine in the renal cortex of the rabbit was studied in vitro and in vivo in rabbits of various ages. The cortical concentration of cephaloridine, the cortex/serum ratio, and the slice/medium ratio determined by incubation of cortical slices in cephaloridine-containing media rose from birth to adult levels at approximately 1 month of age. Pretreatment with procaine penicillin G stimulated the ability to accumulate cephaloridine in vitro and in vivo. The data indicate that the lack of susceptibility of immature rabbits to cephaloridine nephrotoxicity is due to the lack of development of the anionic transport system which is apparently necessary to achieve the high cortical concentrations of cephaloridine that result in renal injury.

Aging

Intravitreal injection of cephaloridine in the treatment of endophthalmitis.

Ocular toxic effects of intravitreal injection of cephaloridine in rabbits was evaluated, and none were produced in doses of 0.25 mg or less. Clinically, intravitreal injection of cephaloridine in doses of 5 mg or more produced small punctate hemorrhages in the vascularized portions of the rabbit retina within two days. With doses of 2.5 mg or less, no clinical changes were seen during the two weeks of observation. Histologically, one day following intravitreal injection of 0.5 to 10 mg of cephaloridine there was clumping of the outer segments of the photoreceptors and destruction of the retinal pigment epithelium. Ten milligrams of cephaloridine intravitreally injected caused definite electroretinogram (ERG) changes ten minutes after injection. After 24 hours, the ERG was extinguished. An experimentally induced Escherichia coli endophthalmitis was successfully treated after six hours by intravitreal injection of cephaloridine.

Animals

Protein binding and concentrations of cephaloridine and cefazolin in serum and interstitial fluid of dogs.

Percentages of free and protein-bound cefazolin and cephaloridine in serum and interstitial fluid of dogs were determined by ultrafiltration and microbiologic assay. The percentages of cephaloridine and cefazolin bound to protein in serum were 10% and 80%, respectively. In interstitial fluid accumulating within tissue-embedded polypropylene capsules, 29% of cefazolin was bound to protein, and cephaloridine was unbound. Both antibiotics rapidly penetrated the interstitial fluid and attained measurable levels 5 min after intravenous administration. Levels of total cefazolin in the interstitial fluid were generally higher than those of cephaloridine; however, concentrations of free cephaloridine in the fluid exceeded the levels of free cefazolin after the first 15 min. Binding of anitbiotics by serum proteins does not restrict such agents to the intravascular space, since a highly protein-bound compound has been shown to penetrate interstitial fluid as readily as one that is minimally bound. It should be noted, however, that this penetration may be due primarily to the slow rate of binding of cefazolin to serum proteins.

Animals

[Penetration of cephaloridine and cephalothin into the cerebrospinal fluid-clinical study (author's transl)].

There were 35 cases, treated with Cephaloridine or Cephalothin after neurosurgical operation. Neurological surgeon always troubled with passage of blood-brain barrier when drug was given. Antibiotics was not exceptionally, therefore we, neurological surgeon, must select the effective drug to bacterium, that which penetrated enough to the intracranial organ through the blood-brain barrier. In this paper, we measured the concentration of Cephaloridine and Cephalothin into cerebrospinal fluid in the cases with non inflammatory meninges. We collected the cerebrospinal fluid from continued ventricle tap and serum, then measured the concentration of the drug with bioassay. Cephaloridie treated cases. 22 cases. 1) 1 g intramuscular injection. 4 cases. Serum level got to highest value, 64 mug/ml (mean value) 1 hour after injection. CSF level got to maximum concentration 46.8 mug/ml. (mean value) serum mean level 21.5 mug/ml. CSF mean level 0.73 mug/ml. 2) 1 g 3 minutes-intravenous injection 5 cases. Serum level got to highest value 67.5 mug/ml. CSF maximum level was 5.25 mug/ml. Serum mean level 19.74 mug/ml. CSF mean level 0.61 mug/ml. 3) 1 g 1 hour-intravenous drip. 9 cases. Serum maximum level 121.0 mug/ml. CSF maximum level 2.30 mug/ml. Serum mean level 20.08 mug/ml. CSF mean level 0.67 mug/ml. 4) 1 g 8 hours-intravenous drip. 3 cases. Serum maximum level 61.0 mug/ml. CSF maximum level 1.36 mug/ml. Serum mean level 14.78 mug/ml. CSF mean level 0.47 mug/ml. Cephalothin treated cases, 12 cases. 1) 1 g 8 hours-intravenous drip, 4 cases. In fact we could detect the drug only in one case, in CSF, and we could not in other three cases. In KF - 4 case, serum maximum concentration was 26.0 mug/ml, CSF maximum concentration was 0.07 mug/ml. Serum mean level 16.97 mug/ml. CSF mean level 0.01 mug/ml 2) 2 g 1 hour-intravenous drip, 9 cases. Serum maximum level 690.0 mug/ml. CSF maximum level 2.03 mug/ml. Serum mean level 29.59 mug/ml. CSF mean level 0.06 mug/ml. In cephaloridine cases, the tendency was observed, that which, as concentration of the drug in CSF increased, cell count and protein decreased, and, as concentration of the drug decreased, cell count and protein increased. CSF/serum concentration ratio of Cephaloridine increased, when time passed, in intramuscular, 3 minutes intravenous, and 1 hour-intravenous drip group. Then only in 8-hours-intravenous prip group. Then only in 8-hours-intravenous drip group, concentration ratio decreased. In Cephaloridine group, mean value of CSF/serum ratio showed. 1 g i.m. 0.084 1 g 3 minutes-i.v. 0.098 1 g 1 hour-i.v. 0.194 1 g 8 hours-i.v. 0.044.

Adolescent

Effect of cephaloridine on respiration by renal cortical mitochondria.

The effects of the nephrotoxic antibiotic, cephaloridine, were studied in rabbit renal cortical mitochondria. Mitochondria from animals which received a toxic dose of 200 mg/kg of the drug 2 hr before sacrifice (in vivo exposure) had significantly decreased rates of respiration compared with those of mitochondria from untreated control animals. In vitro exposure of normal mitochondria to cephaloridine resulted in a qualitatively similar decrease of respiration. With both in vivo and in vitro exposure, inhibition was greatest with ADP-dependent respiration using succinate as substrate. The severity of in vitro inhibition of respiration showed some correlation to the degree of in situ cytotoxicity at different cephaloridine concentrations. The results are in agreement with the finding of a reduction of rates of respiration in renal tubule suspensions after similar in vivo and in vitro exposure to cephaloridine. These studies provide preliminary evidence that cephaloridine nephrotoxicity may be mediated through an inhibitory effect on mitochondrial respiration.

Adenosine Diphosphate

Nephrotoxicity of cephaloridine in newborn rabbits: role of the renal anionic transport system.

The nephrotoxicity of cephaloridine, cefazolin and mercuric chloride was studied in rabbits of various ages. Cephaloridine produced dose-related elevations in serum urea nitrogen, creatinine and renal tubular necrosis in adult and 30-day-old rabbits, only slight changes at 15 days of age and no effect in 5-day-old rabbits. Cefazolin also produced dose-related nephrotoxicity in adult rabbits but no effect in 15-day-old rabbits. Mercuric chloride administration resulted in similar nephrotoxicity in 5-, 15- and 30-day-old rabbits and adults. The development of susceptibility to cephaloridine nephrotoxicity paralleled the maturation of the renal anionic transport system as determined by the accumulation of p-aminohippurate by renal cortical slices in vitro. Substrate stimulation of the anionic transport system by p-aminohippurate or penicillin increased the nephrotoxicity of cephaloridine in between rabbits. The authors concluded that the lack of cephaloridine nephrotoxicity in newborn rabbits is due to the incomplete development of the renal anionic transport system.

Animals

Primary appendectomy. The effect of prophylatic cephaloridine on postoperative wound infection.

A prospective, randomized, double-blind study on the effect of cephaloridine prophylaxis in the surgical management of appendicitis was performed. Of the 139 patients studied, 70 received cephaloridine and 69 received placebo prophylaxis. Both groups of patients were well matched with regard to age, sex, operative findings, and bacteria isolated at operation. Postoperative wound infections were detected in 11.6% of placebo-treated patients and in 1.4% of cephaloridine-treated patients (P less than .02). Prophylactic treatment with cephaloridine of patients undergoing surgery for uncomplicated appendicitis resulted in a perceptible reduction in the rate of postoperative wound infection.

Acute Disease

The interaction of cephaloridine with model membrane systems and rat kidney lysosomes.

The antibiotic cephaloridine has been shown to interact with phospholipid structures, using the techniques of ultraviolet difference spectroscopy, surface pressure measurements and liposome models. The results indicate that this interaction is at least partly hydrophobic in nature and help explain the disruptive effects of high concentrations of cephaloridine on both artificial and natural phospholipid structures (lysosomes). Low concentrations of cephaloridine were shown to inhibit a lysosomal membrane-bound phospholipase 2 and it is suggested that such an inhibition may explain the cephaloridine-induced stabilization of rat-kidney lysosomes.

Animals

Therapy of staphylococcal infections: (a comparative study of cephaloridine and gentamicin).

Two groups of 38 patients have been treated for staphylococcal infection with either cephaloridine (4 gm daily) or gentamicin (320 mg daily) by the intramuscular route. The rate of favorable clinical response was higher among the patients who received cephaloridine (78.8 per cent) than among those who were treated with gentamicin (60.5 per cent). No death related to the infection occurred in the cephaloridine-treated patients. The mean peak and trough antibacterial activity reached in the serum of the patients after injection of the antibiotics was higher in patients receiving cephaloridine (1/64 and 1/16) than in those treated with gentamicin (1/16 and 1/4). Patients who failed to respond to therapy had often a low antibacterial activity of the serum. These studies suggest that the 1/8 level of bactericidal activity should be attained in the serum one hour after the administration of the antibiotics to allow optimal results in staphylococcal infections.

Adult

Cephalothin and cephaloridine therapy for bacterial meningitis.

The efficacy of cephalothin and cephaloridine in the treatment of bacterial meningitis was evaluated from a review of 106 cases reported in the literature. Fifty-nine percent of 34 patients treated with intravenous cephalothin responded suboptimally; those receiving daily doses of 12 g or more fared significantly better (P less than 0.025). In contrast, 74% of 72 patients treated with cephaloridine responded favorably; those who received concomitant intrathecal cephaloridine responded significantly better (P less than 0.005). These findings indicate that cephalosporin therapy for bacterial meningitis, without concomitant intrathecal medication, is unreliable and that this is probably due to inadequate penetration of the antibiotics into cerebrospinal fluid. In penicillin-allergic patients with pneumococcal, meningococcal, and hemophilus meningitis, chloramphenicol is the agent of choice. For staphylococcal meningitis, intravenous cephalothin at doses of 12 g/day with additional intrathecal cephaloridine at doses of 12.5 to 50 mg/day should be administered concomitantly.

Bacterial Infections

Evaluation of antibacterial activities of cephalosporin antibiotics: cefazolin, cephaloridine, cephalothin, and cephalexin.

The antibacterial activities of 4 cephalosporin antibiotics, cefazolin, cephaloridine, cephalothin and cephalexin, against 330 isolates of bacteria from patients at National Taiwan University Hospital, were determined by an agar plate dilution technique. Cephalosporins possess strong antibacterial activity against gram-positive bacteria except Enterococci. Staphylococcus aureus is the most susceptible among the organisms tested. More than 90% of Staphylococcus aureus strains are suppressed by cefazolin, cephaloridine and cephalothin at the concentrations of 3.13 mug/ml or less, except that 49.1% are suppressed by cephalexin. The relative potency of cephalosporins against Staphylococcus aureus in decreasing order is cephaloridine, cephalothin, cefazolin, and cephalexin. The gram-negative bacilli, Escherichia coli, Klebsiella pneumoniae and Proteus mirabilis are less susceptible to cephalosporins than the gram-positive cocci. Among the cephalosporins, cefazolin is the most active against the gram-negative pathogens tested. The relative potency of antibacterial activity of cephalosporins against E. coli in decreasing order is cefazolin, cephaloridine, cephalexin, and cephalothin. One hour after the intramuscular injection of 500 mg of cefazolin, the maximum concentration of 33.3 mug/ml is reached in the serum. The sufficient high levels are sustained for 8 hours. Very high concentrations of cefazolin are also found in the urine.

Adult

[State of the blood coagulating system in the treatment of puerperal infections using semisynthetic penicillins and cephaloridine].

The effect of some semi-synthetic penicillins, such as methicillin and oxacillin and cephalosporings, such as cephaloridin on the condition of the blood coagulation system in 85 patients with postnatal mastitis and endomyometritis was studied. It was shown that the above antibiotics had no significant effect on the parameters of the blood coagulating system. A decrease in the fibrinogen level was found in the mastitis patients treated with semi-synthetic penicillins and cephaloridin. An increase in the prothrombins index in the patients treated with methicillin oxacillin was shown. The use of the semi-synthetic penicillins and cephaloridin for the therapy of the puerpera with endomyometritis resulted in prolongation of the recalcification period. A decrease in the fibrinolytic activity most pronounced in therapy with cephaloridin was also found. Therefore, the above changes in the blood coagulating system of the puerpera with postnatal infections subjected to short-term treatment courses were insignificant and required no special correction.

Adolescent

Cephaloridine and the rat kidney lysosomes stability in vitro.

Two methods employing lysosomal enzyme release and light scattering measurements have shown that Cephaloridine Stabilises rat kidney lysosomes in vitro against beta-Progesterone and lysolecithin, the two well known agents to labilise lysosomal membranes. Treatment of the isolated lysosomes suspended in 0.25 M-sucrose-EDTA (0.34 mM) pH 7.4 with cephaloridine (100mcM) at 37 degrees C for 10 min. and subsequent incubation of the mixture with progesterone (0.25mM) at the same temperature for varying periods of time up to 50 min. resulted in no significant changes from the normal values in the release of acid phosphatase activity obtained from the supernatant fraction after centrifugation of the incubated mixture at 33,000g. for 5 min. at 4 degrees C. When lysosomes were mixed with cephaloridine before treatment with progesterone or lysolecithin, and then subjected to light scattering measurements, lysosomal swelling was considerably decreased, indicating that cephaloridine could exert a stabilising effect on rat kidney lysosomal membrane and thereby limit the release of lysosomal acid hydrolases.

Acid Phosphatase

[Experimental studies on the passage of antibiotics into cerebrospinal fluid in staphylococcal meningitis in rabbits. II. Cephaloridine, cephalothin and cefazolin (author's transl)].

Passage of cephaloridine, cephalothin and cefazolin into cerebrospinal fluid (CSF) was evaluated in Staphylococcus aureus meningitis in rabbits and the following results were obtained. 1. Concentration in CSF (microgram/ml) [CSF/serum ratio (%)] was determined 1/2, 1 and 2 hours after a single intravenous injection of 100 mg/kg of each antibiotic, respectively; cephaloridine-7.5 [8.9], 9.7 [13.8], 9.1 [22.6]; cephalothin-0.42 [3.6], 0.23 [6.4], not detectable [0]; cefazolin-7.5 [11.8], 5.2 [19.3], 2.0 [17.5]. 2. When results with cefazolin after an intravenous injection 100 mg/kg and 200 mg/kg were compared, a definite dose response was noted in blood concentration but not in CSF concentration. 3. A standard error of CSF concentrations of each antibiotic was larger than that of penicillins, and "Unpredictability" of their passage into CSF was considered to be one of the characteristics common to these three drugs in respect of their passage into CSF. 4. There was no significant difference noted in antibiotic passage into CSF between cephaloridine of low protein binding rate and cefazolin of very high binding rate. Cephalothin, of which binding rate was intermediate, showed a remarkably lower passage into CSF. These results indicate that a correlation does not always exist between protein binding rate of the antibiotics and their passage into CSF. 5. Based on the above results, a review of the literature was made on clinical applicability of these three antibiotics in the treatment of bacterial meningitis. Low transport rate of cephalothin into CSF and nephrotoxicity of cephaloridine make them to be unsuitable for bacterial meningitis. Cefazolin is considered to be suitable in the treatment of ampicillin-resistant Escherichia coli meningitis and Gram-positive coccal meningitis in which penicillins are not applicable.

Animals