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Successful hyperimmune bovine colostrum treatment of Savanna monitors (Varanus exanthematicus) infected with Cryptosporidium sp.

Therapy based on the protective passive immunity of hyperimmune bovine colostrum (HBC) (raised against Cryptosporidium parvum in cows) was applied to 4 Savanna monitors (Varanus exanthematicus) with gastric Cryptosporidium sp. infections. All lizards were moderately emaciated, and their fecal and gastric lavage samples contained moderate numbers of Cryptosporidium sp. oocysts. The first 3 of 7 gastric HBC treatments at 1-wk interval each decreased the numbers of oocysts in the fecal and gastric samples to undetectable levels. Neither feces nor lavages of the HBC-treated lizards contained Cryptosporidium sp. oocysts after the HBC therapy, whereas such samples of a single control lizard remained positive for oocysts. Two of the HBC-treated lizards died spontaneously due to metastasized carcinoma and septicemia of unknown etiology, respectively, and 2 lizards treated and killed during the experiment were histologically negative for developmental stages of Cryptosporidium sp. The control lizard died spontaneously of septicemia of unknown etiology and contained developmental stages of Cryptosporidium sp. in the gastric region. The HBC therapy was efficacious in V. exanthematicus and is recommended for lizards with gastric cryptosporidiosis.

Animals↗

Larva migrans by Baylisascaris transfuga: fatal neurological diseases in Mongolian jirds, but not in mice.

Raccoon roundworms (Baylisascaris procyonis) and other Baylisascaris species cause patent or latent larva migrans (LM) in a variety of mammals and birds, including humans. It is not clear whether LM by Baylisascaris transfuga, roundworms of bears, is associated with clinical neurological disorders. To clarify this issue, ICR and BALB/c mice as well as Mongolian jirds (Meriones unguiculatus) were orally inoculated with 2,000-5,000 embryonated eggs of B. transfuga. In mice, the ascarid caused symptomatic LM of limited extent and duration, whereas the infection was fatal in jirds; i.e., they exhibited general signs such as severe depression and emaciation on days 8-11 postinfection (PI) and died, or they developed progressive and fatal neurological disorders after day 14 PI. Histological examination showed B. transfuga larvae in the brain of all mice and jirds examined, and the larvae collected from them developed to a size comparable with that of B. procyonis. There existed, however, critical differences in host reactions against larvae localized in the brain of mice and jirds; B. transfuga larvae found in mice were surrounded by granulomatous reactions and immobilized, whereas larvae found in jirds were free from any host reaction and mobile, causing extensive malacia.

Animals↗

Intestinal coccidiosis in bluegill, Lepomis macrochirus.

Developmental stages of a coccidial parasite were observed in young-of-year bluegill (Lepomis macrochirus) from an impoundment lake in Norfolk County, Virginia. The fish were anorexic and lethargic. Necropsy examination revealed emaciated bluegill with little or no abdominal fat and no food in the stomach or intestines. Coccidia were present in the posterior intestine in moderately large numbers. Few sporulated oocysts were present, and identification to genus was not possible. Epithelial cell destruction, sloughing of the intestinal mucosa, and hemorrhage were associated with the developing coccidial parasites. Coccidia were not observed within other organ systems. No pathogenic bacteria were isolated from the fish tissues. Our findings indicate that intestinal coccidiosis may pose a significant health problem in young bluegill.

Animals↗

The life cycle and pathogenicity of coccicium Eimeria nocens (Kotlán, 1933) in domestic goslings.

Twenty-four 10-day-old, artificially reared, coccidia-free goslings (Anser cygnoides var. domestica) were inoculated orally with 1.0x10(5)-1.0x10(6) sporulated oocysts of Eimeria nocens, and killed at intervals from 30 to 336 hr postinoculation (PI). Parts of the visceral organs, including intestines, kidney, liver, gallbladder, and spleen from inoculated goslings, were fixed and sectioned. The life cycle of E. nocens and histologic changes during infection were examined microscopically. The results showed that at least 3 generations of meronts developed in the endogenous stage of the life cycle of E. nocens. Two types of meronts were found. The first completed maturation at 54 to 78 hr PI. These meronts were the first generation, with each forming about 12 merozoites. The second completed maturation at 102 to 240 hr PI. These meronts were the second or third generations, with each meront forming about 24 merozoites. Development of gamonts began at about 198 hr after infection. The prepatent period was 9 days and discharge of oocysts continued for 4 days. Sporulation of oocysts occurred in 60-72 hr at 25 C. Eimeria nocens invaded the posterior jejunum, ileum, caecum, rectum, and cloaca. Developmental stages were localized within the epithelial cells of villi and crypts, and in lamina propria. Marked histological changes, including desquamation and necrosis of intestinal epithelium, submucosal edema, hemorrhages, infiltration of inflammatory cells, and villous atrophy, were seen during the periods of late merogony, gamogony, and oocyst shedding. They were most pronounced in the ileum and the regions nearby. The infected goslings showed severe diarrhea, bloody feces, anorexia, emaciation, and even death, suggesting that E. nocens is highly pathogenic for goslings.

Animals↗

Prevalence and influence of Loma branchialis (Microspora) on growth and mortality in Atlantic cod (Gadus morhua) in coastal Newfoundland.

A study was conducted to determine the prevalence, geographical distribution, and effects of a microsporan parasite, Loma branchialis, in Atlantic cod in coastal Newfoundland. The parasite was identified microscopically as opaque, ovoid xenomas, primarily in the gills, heart, and spleen. Although widely distributed in young fish inhabiting 7 coastal localities, prevalence was 1-7% in general, <0.01% in older and large fish, but 78% in market-size cod from a commercial farm. Some of the latter fish were emaciated, and approximately 2 mo after the parasite was detected, 63% succumbed with a massive infection. Condition factor and blood values were significantly lower than those in reference fish. An experimental study conducted over 2 yr revealed that mass gained and condition factor were significantly lower in infected cod than in controls at the termination of the study. Feed consumption, mass gained, feed conversion efficiency, and condition factor also were significantly lower in another group of infected cod of marketable size studied over 12 wk. Xenomas also were observed in the heart and gills of year class II cod reared in a hatchery. Loma branchialis is considered to be a potential pathogen in both hatchery-reared and net pen-cultured cod in Newfoundland.

Animals↗

A case of chronic pancreatitis successfully treated by endoscopic removal of protein plugs.

A 56 years old male with chronic pancreatitis complained of intractable abdominal pain, anorexia, emaciation and peripheral edema. Medical treatment initiated only partial improvement in the general condition and hypoproteinemia. Endoscopic retrograde cholangiopancreatography revealed multiple filling defects in the dilated main pancreatic duct. Endoscopic aspiration of pure pancreatic juice yielded numerous protein plugs. The endoscopic removal of protein plugs from the pancreatic duct resulted in remarkable improvement in symptoms, laboratory findings and ERCP findings. We consider this procedure to be an important new treatment of chronic pancreatitis.

Cholangiopancreatography, Endoscopic Retrograde↗

Effect of lymphotoxin-like substance (OH-1) on metastatic tumor proliferation.

The effect of a lymphotoxin-like substance, OH-1, released by human acute lymphatic leukemia BALL-1 cells, on metastatic tumor proliferation was investigated in BDF1 mice with transplanted Lewis lung carcinoma cells. Mitomycin-C, cyclophosphamide and adriamycin were used as control agents. The effect of OH-1 on metastases, as determined by comparison of the numbers of pulmonary nodules and by 3H-thymidine labeling indices, was significant. Also, investigation of the effect of OH-1 on host immunity showed that, while the control preparations had considerable side effects, immunodepression and emaciation were not noted with OH-1. As to direct cytotoxicity, OH-1 is principally cytostatic in activity and effects cell progression delay in both the G1 and G2 phases.

Animals↗

Chlorfenapyr and mallard ducks: overview, study design, macroscopic effects, and analytical chemistry.

The first commercial pesticide derived from a class of compounds known as halogenated pyrroles was registered for use in the United States in 2001. Chlorfenapyr degrades slowly in soil, sediment, and water and is highly toxic to birds. Information on biochemical or histological endpoints in birds is lacking; therefore, a two-year study was conducted to provide information needed to develop diagnostic criteria for chlorfenapyr toxicosis. In the first year, male mallard ducks were fed concentrations of 0, 2, 5, or 10 ppm technical chlorfenapyr or 5 ppm of a formulated product in their diet during a 10-week chronic exposure study. Survival, body weight, feed consumption (removal), behavior, and molt progression were monitored. Feed and liver were analyzed for chlorfenapyr and two metabolites. Five of 10 ducks in the 10-ppm group died, and neurotoxic effects were observed in the 5- and 10-ppm groups. Feed removal increased for ducks receiving chlorfenapyr and body weights of 5- and 10-ppm ducks were reduced. Loss of body fat, muscle atrophy, and bile retention were suggestive of metabolic disruption or a decreased ability to digest and absorb nutrients. Liver and kidney weights and liver and kidney weight/body weight ratios exhibited a positive response to concentrations of chlorfenapyr in the diet. Emaciation and elevated organ weight/body weight ratios are candidates for a suite of indicators of chronic chlorfenapyr exposure. Liver is the preferred tissue for chemical confirmation of exposure.

Animals↗

Low hepatic ethoxyresorufin-O-deethylase activity correlates with high organochlorine concentrations in Atlantic tomcod from the Canadian east coast.

A suppression of hepatic ethoxyresorufin-O-deethylase (EROD) activity was reported recently in large-sized Atlantic tomcod (Microgadus tomcod) from the St. Lawrence Estuary (SLE; QC, Canada), possibly related to chronic exposure to persistent contaminants and/or to emaciation. In the present study, hepatic concentrations of organochlorine contaminants and biological responses were measured in female tomcods from three estuaries located on the Canadian east coast: The SLE, the Miramichi (ME), and the Richibucto (RE) Rivers Estuaries (NB, Canada). Tomcods from the SLE had higher hepatic concentrations of organochlorine contaminants than tomcods from the ME and RE. For example, concentrations of polychlorinated biphenyls (PCBs, lipid wt) were 2.5 to 4 times higher, and concentrations of mirex and chlordanes were 6 times higher, in tomcods from the SLE than in tomcods from the other sites. Concentrations of polycyclic aromatic hydrocarbons (PAHs) metabolites in the bile did not differ among sites. The pattern of biological responses differed markedly between the SLE and the two other sites. Tomcods from the SLE had 1.5 times higher concentrations of DNA adducts and 2 times higher rates of hepatocellular proliferation, but 20 times lower hepatic EROD activity, than tomcods from the ME and RE. Lipid content was not correlated with EROD activity, indicating that low hepatic lipid content alone does not cause suppression of EROD activity in Atlantic tomcod. In contrast, for the three sites combined, EROD activity decreased as concentrations of PCBs increased. Within sites, hepatic PCB concentrations increased as lipid content decreased. This study supports the hypothesis that low EROD activity in SLE tomcods is related to chronic exposure to organochlorine contaminants.

Animals↗

[Study on toxicity of halopredone acetate. (I) Acute toxicity study in mice and rats].

Since halopredone acetate (THS-201), a synthetic corticosteroid, is expected to be used clinically for intra-articular injections because of its long-lasting activity in the synovial bursa, its acute toxicity was compared with that of triamsinolone acetonide (TA) and methylprednisolone acetate (MPA). The test animals were Jcl: ICR mice and Jcl: Wistar rats, and drugs were administered orally, intraperitoneally and subcutaneously. The LD50 values of THS-201 both in mice and rats were estimated more than 5000 mg/kg at each route, and these are for above larger than those of TA or MPA. Moreover, in oral and subcutaneous administration of THS-201, no severe toxic signs were observed either in mice or in rats. In intraperitoneal injection, a few of mice and rats died after showing several clinical signs and suppression of body weight gain, and their autopsy revealed atrophy of thymus, spleen and adrenal, induction of infection and hemorrhage in digestive tract. On the other hand, the mice and rats administered TA or MPA revealed the severe toxic signs such as loss of hair gloss, marked emaciation, decrease in spontaneous movement, anemia, bloated face, decrease or suppression of body weight gain, atrophy of thymus, spleen and adrenal, severe induction of infection and lesions in digestive tracts. Accordingly, it is concluded that the acute toxicity of THS-201 in mice and rats was lower than that of TA or MPA.

Administration, Oral↗

[Toxicity studies of VP 16-213 (II)--Oral one-month subacute toxicity in rats].

VP 16-213 (etoposide, abbr. to VP), an oncostatic drug, was administered orally to Crj : CD (Sprague-Dawley) rats of both sexes at dose levels of 3, 10, 30 and 100 mg/kg/day for one month with the object of examining its subacute toxicity and the reversibility of toxic effects. The summarized results obtained are as follows: VP 30 mg/kg suppressed body weight increase and feed intake, and brought soft stool. VP 100 mg/kg decreased body weight and feed intake, and induced diarrhea, depilation and so forth. Furthermore, half of the animals at this dose level died showing systemic debility and emaciation. VP 30 and 100 mg/kg predominantly decreased red blood cell count as well as white blood cell count accompanied with lowered lymphocyte fraction. VP 10 mg/kg and higher lowered total serum protein content and serum alkaline phosphatase activity, and elevated A/G ratio. VP 10 mg/kg and higher caused thymic atrophy and a decrease in testicular weight; 30 and 100 mg/kg brought suppression of spermatogenesis; and 100 mg/kg predominantly induced appearance of giant cells in epididymis, hypoplasia of bone marrow, ileocecitis, and atrophy of prostate, seminal vesicle and splenic germinal centers. Above-described changes excluding exacerbation of the findings on testis and epididymis were shown to be generally reversible. Based on these results, the no-effect dose level of VP under the present experimental condition was estimated to be 3 mg/kg/day against rats of both sexes.

Administration, Oral↗

[Toxicity studies of VP 16-213 (III)--Oral six-month chronic toxicity in rats].

VP 16-213 (etoposide, abbr. to VP), an oncostatic drug, was administered orally to Crj : CD (Sprague-Dawley) rats of both sexes at dose levels of 1, 3, 10 and 30 mg/kg/day for six months with the object of examining its chronic toxicity and the reversibility of toxic effects. The summarized results obtained are as follows: VP 30 mg/kg suppressed body weight increase and feed intake, and brought transient diarrhea, anemia and depilation. Some animals receiving this dose died showing systemic debility, emaciation and ataxia. VP 3 mg/kg and higher predominantly decreased red blood cell count as well as white blood cell count accompanied with lowered lymphocyte fraction. VP 30 mg/kg lowered total serum protein content and elevated A/G ratio in males, and lowered serum alkaline phosphatase activity in females. VP 10 and 30 mg/kg predominantly induced thymic atrophy, testicular atrophy with suppression of spermatogenesis and tubular atrophy, a decrease in epididymal weight, and splenic erythropoiesis. Above-described changes excluding the findings on testis and epididymis in VP 30 mg/kg group were shown to be generally reversible. Based on these results, the non-effect dose level of VP under the present experimental condition was estimated to be 1 mg/kg/day against rats of both sexes.

Administration, Oral↗

[Toxicity studies of VP 16-213 (IV)--Intravenous one-month subacute toxicity in rats].

VP 16-213 (etoposide, abbr. to VP), an oncostatic drug, was administered intravenously to Crj : CD (Sprague-Dawley) rats of both sexes at dose levels of 0.15, 0.50, 1.5 and 4.5 mg/kg/day for one month with the object of examining its subacute toxicity and the reversibility of toxic effects. For the purpose of comparison, vincristine (abbr. to VCR) was administered in the same manner at dose levels of 0.04 and 0.08 mg/kg/day. The summarized results obtained are as follows: VP 0.50 mg/kg and higher suppressed body weight increase and food intake dose-responsively. VP 4.5 mg/kg brought depilation and anemia, and some of male animals receiving this dose died showing systemic debility, emaciation and ataxia. VP 0.50 mg/kg and higher decreased white blood cell count accompanied with lowered lymphocyte fraction, and 1.5 and 4.5 mg/kg predominantly decreased red blood cell count. VP 1.5 and 4.5 mg/kg lowered total serum protein content and serum alkaline phosphatase activity, and elevated A/G ratio. VP 0.50 mg/kg and higher predominantly decreased testicular weight, and 1.5 and 4.5 mg/kg predominantly brought thymic atrophy, hypoplasia of bone marrow and testicular atrophy with suppression of spermatogenesis and tubular atrophy. VP 4.5 mg/kg induced atrophy of germinal centers and hemosiderosis in spleen, and epididymal atrophy with decrease of sperms in number and appearance of giant cells. Above-described changes excluding the findings on testis and epididymis were generally reversible. Most of the findings for a reference drug, VCR, were similar to those for VP, and their severities brought by VP 1.5 and 4.5 mg/kg were comparable to those by VCR 0.04 and 0.08 mg/kg, respectively. Based on these results, the non-effect dose level of VP under the present experimental condition was estimated to be 0.15 mg/kg/day against rats of both sexes.

Anemia↗

[Acute toxicity studies of propiverine hydrochloride].

Acute toxicity studies of propiverine hydrochloride (P-4) were carried out in mice, rats and dogs of both sexes. 1. The LD50 values of P-4 were as follows: Mice; 410 (male) and 323 (female) mg/kg in oral route, 223 (male) and 283 (female) mg/kg in subcutaneous route and 36 (male and female) mg/kg in intravenous route, Rats; 1000 (male) and 1092 (female) mg/kg in oral route, 1632 (male) and 1411 (female) mg/kg in subcutaneous route, and 22 (male) and 25 (female) mg/kg in intravenous route. On the LD50 values, no sexual difference was apparent but the species difference between mice and rats observed to be present in oral and subcutaneous routes. The approximate lethal doses of P-4 in dogs were 987-1137 mg/kg for male and 865-894 mg/kg for female in oral route, and the values were almost same as those in rats of oral route. 2. Major toxic signs such as clonic convulsion, bradypnoea, dyspnoea, decreased spontaneous activity and hematuria were observed in mice and rats. Furthermore mydriasis in rats, and transitory salivation and/or vocalization in mice and rats were observed. In some rats, sedation, salivation, soil at hypogastrium, rale and emaciation were detected from the next day of oral administration. In dogs, toxic signs such as vomiting, tremor, tonic and/or clonic convulsion, mydriasis and gasping were observed. 3. Pathological changes observed in dead animals were congestion of lungs, liver and kidneys in all routes, congestion and hemorrhage in digestive tracts in oral route, inflammatory changes at the injection site in subcutaneous route. In addition, retention of hematuria in urinary bladder in rats of oral and subcutaneous routes, the hemorrhagic changes of heart, atonia of urinary bladder and retention of urine in dogs were observed. 4. The main cause of death seemed to be respiratory disturbance in all species and the weakness in a few rats of oral route.

Animals↗

[Reproduction study of propiverine hydrochloride (4)--perinatal and postnatal study in rats by oral administration].

A perinatal and postnatal study was performed in Sprague-Dawley rats by oral administration of propiverine hydrochloride (P-4) at dose levels of 0 (control), 2, 10 and 50 mg/kg/day to dams from day 17 of pregnancy to day 21 after delivery. Twenty two or twenty four dams in each group were allowed to deliver for the postnatal examination of their offspring. In dams, the dose of 50mg/kg caused toxic signs consisting of mydriasis, salivation and rale. One dam of this group showed piloerection, low body temperature, blanching of extremity and auricle, and emaciation associated with marked prolongation of delivery. Body weight gain of the dams was retarded in the 50 mg/kg group throughout the administration period. Food and water intakes were reduced in the 50mg/kg group. In gross pathology of the dam that showed prolonged delivery, the spleen and thymus were moderately or severely atrophied and the adrenal was moderately enlarged. The viability index of the offspring on day 4 was reduced in the 50mg/kg group. Body weight of pups slightly decreased in the 50mg/kg group during sucking and rearing periods. Absolute weights of some organs of the three-week aged offspring were reduced due to attributable depression of body weight gain. However, P-4 had no adverse effect on the postnatal development such as emotionality, motor activity, learning ability or reproductive performance. The results suggest that the non-effective dose level of P-4 is 10mg/kg/day in maternal animals and offspring.

Administration, Oral↗

Acute toxicity tests of mofezolac (N-22) in mice and rats.

Mofezolac (N-22) is a newly developed analgesic and anti-inflammatory agent. The acute toxicities of N-22 were investigated in ICR mice and Wistar rats in oral (p.o.), intraperitoneal (i.p.) and subcutaneous (s.c.) routes. LD50 values of N-22 in mice were 1528 mg/kg (p.o.), 275 mg/kg (i.p.) and 612 mg/kg (s.c.) for males, and 1740 mg/kg (p.o.), 321 mg/kg (i.p.) and 545 mg/kg (s.c.) for females. Those in rats were 920 mg/kg (p.o.), 378 mg/kg (i.p.) and 572 mg/kg (s.c.) for males, and 887 mg/kg (p.o.), 342 mg/kg (i.p.) and 510 mg/kg (s.c.) for females. The sex difference was not clearly observed in mice and rats, but the species difference was observed in p.o. routes. As an initial toxic sign, the hypoactivity was observed in mice and rats of all routes, subsequently, paleness of skin, anemic conjunctiva, emaciation, stupor and/or coma were observed in mice and rats of p.o. and i.p. routes. In rats of those routes, tonic and/or asphyxial convulsion and dyspnea were also observed. In pathological examination of mice and rats, gastrointestinal disorders were observed in p.o. and i.p. routes, and changes of subcutaneous tissue at the injection site were observed in s.c. route.

Administration, Oral↗

[Three-month oral subacute toxicity study of mofezolac (N-22) in rats].

A three-month oral subacute toxicity study of mofezolac (N-22), a non-steroidal anti-inflammatory agent, was performed using dose levels of 6, 20, 60 and 200 mg/kg in rats, and recovery was also assessed one month after withdrawal. 1. Toxic signs caused by N-22 administration, observed only in the 200 mg/kg group, were as follows: soiling around the mouth and/or nose, piloerection, anemia, diarrhea, emaciation and decreased spontaneous locomotor activity. Nine males and thirteen females in the 200 mg/kg group excreted bloody diarrhea and died of general exhaustion between weeks four and thirteen of study. 2. In the 200 mg/kg group, decrease in food consumption and suppression of body weight gain were noted in males from about week four and in females from about week six after initiation of administration, and increase in water consumption was noted in males from about week seven. 3. Urinary examination revealed a decline in urinary pH in males of the 20 mg/kg and above groups and elevation of urobilinogen levels in males of the 60 and 200 mg/kg groups. 4. Hematological examination showed decreases in erythrocyte count (RBC), hematocrit value (Ht) and hemoglobin concentration (Hb) and increase in reticulocyte rate in both sexes of the 200 mg/kg group and an increase in neutrophil rate in males of the 200 mg/kg group. 5. Biochemical examination demonstrated a decrease in chloride (Cl-) in males receiving the 20 mg/kg or above doses and a decrease in calcium (Ca++) in males of the 60 and 200 mg/kg groups. Moreover, there were decreases in cholinesterase (ChE) activity, total protein (TP) and albumin (Alb) values, as well as increases in blood urea nitrogen (BUN), uric acid (UA) and potassium (K+) in both sexes of the 200 mg/kg group, along with elevations in GOT and lactate dehydrogenase (LDH) activities in females of the 200 mg/kg group. 6. The absolute and/or relative organ weights for liver, kidneys, spleen and adrenals were increased in the 200 mg/kg group. 7. On pathological examination, perforating ulceration in the jejunum and ileum, turbid ascites, adhesion and inflammatory changes in capsules of the abdominal organs, splenomegaly, mesenteric lymph node hyperplasia and inflammatory changes in the thoracic cavity were observed in dead animals of the 200 mg/kg group. Similar pathological changes were observed in a few survival cases of the 200 mg/kg group. 8. After a one month recovery period, the above-mentioned changes had mostly recovered, indicating that they were reversible.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

[Reproductive and developmental toxicity study of mofezolac (N-22) (2)--Study by oral administration of N-22 during the period of fetal organogenesis in rats].

The teratogenicity of mofezolac (N-22), a new developed analgesic and anti-inflammatory agent, was investigated in rats. N-22 was given orally to pregnant rats of the Jcl: Wistar strain (30 rats per group) at dose levels of 10, 50, 100 and 150 mg/kg/day from days 7 to 17 of gestation. Caesarean sections were performed on 20 dams per group on day 20 of gestation and their fetuses were examined for external, visceral and skeletal abnormalities. The remaining 10 dams per group were allowed to deliver and their offspring were examined for growth and reproductive performance. Results were as follows. 1. Effects on F0 generation At 150 mg/kg, eleven out of the 30 dams exhibited decreased motor activity, pale eyes, unkempt fur, urine-smeared lower abdomen, weakness and emaciation. At autopsy, twelve dams revealed gastrointestinal ulcers, peritonitic lesions, hypertrophy of the spleen, adrenal and mesenteric lymph node, atrophy of the submaxillary gland, thymus and liver and discoloration of the liver and kidney. Death, sacrificing in extremis, premature or delayed delivery and poor nursing occurred in one to two dams each. Food consumption was significantly decreased and body weight gain was significantly retarded in this dose level group. At 100 mg/kg, urine-smeared lower abdomen, hypertrophy of the spleen and poor nursing were observed in one dam each. 2. Effects on F1 generation At 150 mg/kg, significantly decreased fetal weight, increased number of immature fetuses and significantly retarded ossification of the 5th and 6th sternebrae and coccygeal vertebrae as well as significantly depressed body weight gain of female offspring were observed. No abnormalities were observed in each treated group in terms of development, behavior, learning ability and reproductive performance of offspring. 3. Effects on F2 generation No abnormalities were observed in fetuses and newborn young in each treated group. Based on these results, the maximum non-effective doses of N-22 in this study were considered to be 50 mg/kg/day for dams and offspring and 100 mg/kg/day for fetuses.

Abnormalities, Drug-Induced↗