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Embryonic and placental development during prolonged inanition in the pig.

Pregnancy is maintained in a high percentage (79%) of pigs subjected to inanition for periods up to 37 days, but few (25%) remain pregnant when inanition continues beyond 41 days. All remain pregnant during prolonged inanition (45 days) when exogenous progesterone and estradiol benzoate are given daily. Embryo survival rates in animals on inanition remain high (88%) and similar to those (89%) found in pigs given a full diet. Nitrogen content of embryos increases at a decreasing rate after 41 and 45 days inanition; placental nitrogen is markedly reduced at those times. By 45 days of inanition, nitrogen contents of embryos and placentas are less (P less than 0.01) than found in dams receiving a full diet. During prolonged inanition, exogenous progesterone (80 mg/100 kg) and estradiol benzoate (500 mug/100 kg) maintain embryonic and placental development at levels similar to those found in animals on a full diet. Maternal stores of protein and energy are made available for embryonic and placental developement in the presence of adequate levels of progesterone and estrogen, in spite of severe body weight loss during prolonged inanition of the dam.

Animals↗

Nucleic acid content and growth of fetal brain, liver and heart during inanition in pigs.

Previous investigations have indicated that gilts deprived of dietary intake for periods up to 40 days are capable of maintaining pregnancy and producing offspring of normal body weight. The present experiment was designed to study the effects of inanition during middle or late pregnancy on growth and on protein and nucleic acid content of porcine fetal brain, liver and heart. Gilts were subjected to prolonged inanition (40 days; 0 kcal/day; water only) during either the middle third (Days 30-70, n = 3) or last third (Days 70-110, n = 3) of pregnancy; controls received a full diet (7028 kcal/day) until Day 70 (n = 3) or 110 (n = 3) when all dams were hysterectomized. Inanition during middle or late pregnancy had no detrimental effect on fetal brain development. Brain weight, cell size (protein/DNA ratio) and cell number (total DNA) were similar in all fetuses at Day 70 or 110. RNA concentrations at Days 70 and 110, protein concentration at Day 70 and total protein at Day 110 were higher in fetuses from starved dams than in those from controls, indicating greater protein synthetic activity in fetal brains from nutrient-deprived dams. Prolonged inanition during midpregnancy had only a limited effect on fetal liver and heart. Only liver RNA concentration and content at Day 70 differed in fetuses from starved dams; however, 40 days inanition during late gestation had marked detrimental effects. Liver weight, cell size and cell number were reduced in inanition as compared with controls by Day 110.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Ascorbic acid deficiency in guinea pigs: contrasting effects of tissue ascorbic acid depletion and of associated inanition on status indices related to collagen and vitamin D.

To investigate the sensitivity of guinea pig tissues to ascorbic acid depletion, as distinct from inanition, young male guinea pigs were maintained with either ascorbic acid restriction or total diet restriction for 8 weeks. One group (A) received no ascorbic acid for 3 weeks, then 0.5 mg/d for 5 weeks; one group (B) was weight-matched by restricted food intake to the first group; a third (marginally deficient) group (C) received 1 mg ascorbic acid/d throughout; a fourth was weight-matched to this group (D); and a fifth group received the control diet ad lib. (E). Both of the groups with restricted ascorbic acid intakes (A and C) developed very low tissue ascorbic acid contents, but only the first group (severely deficient group A) also exhibited a severely reduced growth rate. This group also exhibited reduced femur calcium and hydroxyproline contents and reduced skin hydroxyproline content. These changes were not seen in the corresponding weight-matched group (B). Neither plasma alkaline phosphatase (EC 3.1.3.1) activity, nor a variety of indices of vitamin D status exhibited changes which could be attributed specifically to reduced ascorbic acid intake and hence to lowered tissue ascorbic acid content. It is concluded that low tissue ascorbic acid levels in guinea pigs clearly alter the connective tissue composition of growing femur and skin, but do not necessarily produce a major, specific effect on vitamin D status. Moreover, the control of inanition is crucial to permit interpretation of the changes in metabolism that are caused by ascorbic acid deficiency.

Alkaline Phosphatase↗

Glucose and electrolyte supplementation of drinking water improve the immune responses of poults with inanition.

Enteric disorders predispose poultry to malnutrition. The objectives of this paper were 1) to simulate the inanition of poult enteritis mortality syndrome by restricting feed intake and 2) to develop a drinking water supplement that supports the immune functions of poults with inanition. Poults were restricted to 14 g of feed/d for 7 d beginning at 14 d of age then fed ad libitum until 36 d (recovery). The control was fed ad libitum. During the feed-restriction period, duplicate groups of 6 poults received 1 of 5 drinking water treatments: 1) restricted feed, unsupplemented water; 2) restricted feed + electrolytes (RE); 3) RE + glucose + citric acid (REGC); 4) REGC + betaine (REGCB); or 5) REGCB + zinc-methionine (REGCBZ). Immunological functions were assessed by inoculating poults with SRBC and B. abortus (BA) antigen at 15, 22, and 29 d of age. Antibody (Ab) titers were determined 7 d later for primary, secondary, and recovery responses. The primary and secondary total Ab titers to SRBC for restricted feed were 4.71 and 6.16 log3, which where lower (P < 0.05) than for controls (8.00 and 9.66 log3) and the other treatments. The recovery Ab titer for controls was 10.7, significantly higher than restricted feed (8.71) and RE (8.10) groups but not different from other treatments. The primary total Ab responses to BA were significantly lower in the restricted feed and RE groups as compared with the control and other treatments. Although feed restriction of poults to maintenance reduces the humoral immune responses, these responses can be significantly improved by drinking water containing electrolytes and especially sources of energy such as glucose and citric acid.

Animals↗

Adrenal response of the newborn calf to acute inanition and colostral feeding.

This is a study of hyperadrenalemia from inanition in neonatal calves and the influence of elevated postpartum concentrations of cortisol in serum in intestinal absorption of colostral immunoglobulins. Feeding of newborn Holstein-Friesian calves was delayed up to 24 h after parturition. Concentrations of cortisol in serum were measured at 0, 12, 24, and 40 h following birth. Delaying colostrum intake 8 h or more elevated cortisol concentrations in serum at 24 h postpartum. Adrenal response as indicated by concentrations of cortisol in serum followed a positive linear trend with delay in feeding. Concentrations of cortisol also were increased acutely by ingestion of colostrum following inanition. As time elapsed after the feeding, concentration of cortisol in serum decreased. Partial correlations were negative between concentration of cortisol and maximum Immunoglobulin G but not Immunoglobulin M or Immunoglobulin A.

Adrenal Glands↗

Inanition may reduce alkaline phosphatase activity in liver and intestine of zinc-deficient mice.

Zinc-deficiency was induced in mice by feeding a Zn-deficient basal diet (ZD dietary group) containing 9% lipid (6% corn oil, 3% cod liver oil) for 8 wk. Thereafter, the corn oil was withdrawn from the basal diet and a subset of Zn-deficient animals (ZDLR group) was fed this modified low fat diet for another 8 wk. Alkaline phosphatase activity in intestine and liver was compared in these mice and in those allowed ad libitum access to the lipid-adequate Zn-supplemented diet (ZS group), in those pair-fed the Zn-supplemented diet (PF group) and in those fed the lipid-adequate, Zn-deficient diet ad libitum (ZD group). The enzyme activity in both intestine and liver of the ZDLR group was greater than in those of the ZD group and greater than or equal to those of the ZS and PF diet groups. The results of this study suggest that the reduction in alkaline phosphatase in Zn-deficient animals is a response secondary to associated inanition.

Alkaline Phosphatase↗

Response of whole body X-irradiation to inanition stress.

The study showed the effect of whole body X-irradiation on normal and starved rats. Irradiation brought about more deleterious changes in the starved rats rather than the normally fed rats. Following X-irradiation levels of protein and nucleic acid (DNA and RNA) contents in the brain; cholesterol and alkaline phosphatase in the testes were found excessively lowered in the starved rats when compared with the irradiated control rats. Concentration of 5-HIAA and VMA was higher in the urine of rats undergoing inanition stress rather than the normal rats after X-irradiation. Similarly the degenerative changes were prominent in the testes of starved rats rather than the normally fed rats after irradiation.

Alkaline Phosphatase↗