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beta-Alanyl-L-histidinato zinc and bone resorption.

1. beta-Alanyl-L-histidinato zinc (AHZ), in which zinc is chelated to beta-alanyl-L-histidine, is a new zinc compound. beta-Alanyl-L-histidine can uniquely chelated zinc ion in various essential trace metals. More recently, it has been demonstrated that this compound has more intensive effect than zinc sulfate on bone metabolism, suggesting a role as pharmacological tool in osteoporosis. This review describes mainly the action of AHZ on bone resorption as summarized in the following. 2. The prolonged oral administration of AHZ (10-100 mg/kg/day) can completely prevent bone loss in the femur of ovariectomized rats, indicating the preventive effect of AHZ on bone resorption in vivo. 3. The decrease in bone calcium content induced by various bone resorbing factors was completely inhibited by the presence of AHZ (10(-6)-10(-4) M) in bone tissue culture system in vitro. 4. Many bone resorbing agents can stimulate the formation (differentiation) of osteoclasts from marrow cells. AHZ (10(-6)-10(-4) M) clearly inhibited osteoclast-like cell formation in mouse marrow culture in vitro. 5. AHZ may act on the process of parathyroid hormone-induced protein kinase C activation which is involved in Ca(2+)-signaling in osteoclastic cells.

Animals↗

Binding properties of an orally active platinum anti-tumor drug JM216 with metallothionein in vivo.

The abilities of the orally active platinum anti-tumor drug JM216 [trans-bis-acetato-cis-dichloroammine (cyclohexylamine) platinum (IV)] to induce the biosynthesis of metallothionein (MT) were investigated in rabbits given oral administrations or injections s.c. It is revealed that oral administration of JM216 can induce the MT synthesis in the liver but not in the kidney. The hepatic MT contained 7.11 +/- 0.11 Zn and only little Pt or Cu. Injections of JM216 to rabbits can greatly elevate the MT levels in the liver, but increase the renal MT levels only slightly. The MT content as well as Pt concentration in the liver was much higher than that in the kidney. The metal stoichiometry in the purified renal MT was determined to be 4.41 +/- 0.04 Zn, 0.36 +/- 0.11 Pt and 2.50 +/- 0.18 Cu per mole protein. The hepatic MT was still characterized as Zn7MT. Both the treatment with oral administration and injections s.c. cannot lead to the increase of Pt content in the kidney. The oxidation state of platinum in the MT from the kidney was determined to be +2 by X-ray photoelectron spectroscopy. As compared with zinc compounds, JM216 was a very poor stimulator for MT biosynthesis in vivo. Pre-injections with Zn(NO3)2 significantly enhanced the MT levels as well as the Pt concentration compared with that resulting from injections with JM216 alone. Based on the experimental data, the role of MT in relation to its involvement in the metabolism and the mechanism of detoxification of Pt(IV) complexes are discussed.

Animals↗

Zinc decrease and bone metabolism in the femoral-metaphyseal tissues of rats with skeletal unloading.

Whether the decrease of zinc content in the femoral-metaphyseal tissues of rats with skeletal unloading is involved in the alteration of bone metabolism was investigated. Skeletal unloading was designed using the model of hindlimb suspension in rats. Animals were fed for 4 days with the unloading. The metaphyseal zinc content were significantly decreased by the unloading. Zinc accumulation in the metaphyseal tissues by a single oral administration of zinc sulfate (20 mg Zn/100 g body weight) was partially depressed by the unloading, although serum zinc concentration was higher than that in normal rats, suggesting an impaired movement of zinc from serum into bone tissues by the unloading. Skeletal unloading caused a significant decrease of alkaline phosphatase activity and deoxyribonucleic acid (DNA) content in the metaphyseal tissues. These decreases were completely restored by addition of zinc sulfate (10(-4) M) or beta-alanyl-L-histidinato zinc (AHZ; 10(-5) M) in a culture medium with the metaphyseal tissues in vitro. The effects of zinc compounds were abolished by the presence of cycloheximide (10(-8) M), suggesting that the zinc effect is based on a newly synthesized protein. Dipicolinate (10(-4) and 10(-5) M), a potent zinc-chelating agent, caused an appreciable decrease of zinc content and alkaline phosphatase activity in the metaphyseal tissues. This decrease was restored by zinc supplement. The present results suggest that the skeletal unloading-induced decrease of zinc content in the femoral-metaphyseal tissues plays a role in the deterioration of bone metabolism in the unloaded rats.

Alkaline Phosphatase↗

Ulcerogenic and healing impairing actions of monochloramine in rat stomachs: effects of zinc L-carnosine, polaprezinc.

Effects of a novel zinc compound (polaprezinc), N-(3-aminopropionyl)-L-histidinato zinc, on the mucosal ulcerogenic and healing impairing responses induced by monochloramine (NH2Cl) were examined in rat stomach. Oral administration of NH2Cl (> 60 mM) produced severe hemorrhagic lesions in unanesthetized rat stomachs with a marked increase of thiobarbituric acid reactants (TBAR). Pretreatment of the animals with polaprezinc (3 approximately 30 mg/kg, p.o.) showed a dose-dependent inhibition against gastric ulcerogenic and TBAR responses induced by NH2Cl (120 mM). Likewise, mucosal exposure to NH4OH (60 mM) in urethane anesthetized stomachs made ischemic by bleeding from the carotid artery (1 ml per 100 g body w.t.) resulted in severe gastric lesions. This ulcerogenic response caused NH4OH plus ischemia was also attenuated by prior application of polaprezinc as well as taurine (25 mg/ml, 1 ml). On the other hand, the healing of gastric mucosal lesions induced by NH2Cl occurred more slowly than of ethanol-induced lesions, and the latter was significantly delayed by the repeated administration of NH2Cl. Polaprezinc (> 10 mg/kg, p.o.) given twice daily for 7 days not only accelerated the healing of NH2Cl-induced gastric lesions but also antagonized the delayed healing of ethanol-induced lesions in the presence of NH2Cl as well. Polaprezinc showed a scavenging action against NH2Cl in vitro. These results suggest that NH2Cl caused deleterious action on the healing of pre-existing acute lesions as well as irritating action to the mucosa in the rat stomach. Polaprezinc not only protects the stomach against injury caused by NH2Cl but also promotes healing of NH2Cl-induced gastric lesions as well as the delayed healing of ethanol-induced lesions caused by NH2Cl. Although the detailed mechanisms underlying these actions of polaprezinc remain unknown, they may be partly attributable to a scavenging action of this agent against NH2Cl.

Administration, Oral↗

Effects of zinc histidine and zinc sulfate on natural human keratinocytes.

BACKGROUND: Zinc salts are widely used as food supplements and medicinal mineral supplementation. Zinc deficiency is associated with impaired skin conditions. The influence of zinc on skin functionality has been proven in clinical investigations. OBJECTIVE: Within the following study comparative in vitro experiments were performed to study the influence of zinc sulfate (ZnSO(4)) and zinc histidine (Zn(His)(2)) on the physiology of cultured natural human keratinocytes. METHOD: Proliferation of natural human keratinocytes was quantitatively assessed by measurement of 5-bromo-2-deoxyuridine (BrdU) incorporation against an oligomeric procyanidin as positive control. Differentiation was determined by monitoring involucrin formation. Cell viability and cytotoxicity were assessed by dimethylthiazolyldiphenyltetrazolium bromide (MTT) testing and quantification of lactate dehydrogenase. RESULTS: Neither keratin synthesis as a late marker of cell differentiation nor mitochondrial cell activity were influenced by either zinc compound. The synthesis of involucrin, an early marker of differentiation, was significantly increased by both zinc salts, ZnSO(4) being the more potent stimulator. Both zinc salts significantly increased cell proliferation, with the histidine complex being more potent. Effects were in the range of the positive control. Necrotic cell toxicity decreased significantly when Zn(His)(2) was added to the cells. CONCLUSION: Under in vitro conditions Zn(His)(2) is a strong proliferation inductor of keratinocytes with a better tolerability and a lower induction of differentiation behavior than ZnSO(4).

Cell Differentiation↗

Irritant action of monochloramine in rat stomachs: effects of zinc L-carnosine (polaprezinc).

1. Effects of a novel zinc compound (polaprezinc), N-(3-aminopropionyl)-L-histidinato zinc, on the mucosal ulcerogenic response induced by ammonia (NH4OH) and monochloramine (NH2Cl) were examined in rat stomachs. 2. Oral administration (1 ml) of NH4OH (> 600 mM) and NH2Cl (> 60 mM) produced severe hemorrhagic lesions in unanesthetized rat stomachs, whereas hypochlorous acid (HClO) even at 120 mM did not cause any macroscopic damage. 3. Pretreatment of the animals with polaprezinc (2-12 mg/ml, 1 ml, PO) showed a dose-dependent inhibition against gastric lesions induced by NH4OH (1,800 nM) or NH2Cl (120mM), and this effect was significant at > 6 mg/ml in either case. These lesions were also significantly prevented by prior administration of dmPGE2 (2 micrograms/ml, 1 ml, PO). 4. Mucosal application of NH4OH (300 mM) and NH2Cl (10 mM) caused a marked reduction of transmucosal potential difference (PD) in ex vivo stomachs of anesthetized rats. The reduced PD responses caused by NH4OH and NH2Cl were prevented dose dependently by preexposure of the mucosa to polaprezinc, but not affected by dmPGE2. 5. Mucosal exposure to NH4OH (60 mM) caused a marked PD reduction in ex vivo stomachs made ischemic by bleeding from the carotid artery (1 ml per 100 g body wt), followed by severe gastric lesions. These ulcerogenic and PD responses caused by NH4OH plus ischemia were attenuated by prior application of polaprezinc as well as taurine (25 mg/ml, 1 ml), while dmPGE2 prevented the lesions without affecting the reduced PD response. 6. These results suggest that (a) NH2Cl damages the gastric mucosa at much lower concentrations than NH4OH, (b) polaprezinc protects the stomach against injury caused by either NH2Cl or NH4OH, and (c) the mechanisms underlying the protective action of polaprezinc remain unclear but may be different from those of dmPGE2.

Ammonium Chloride↗

Vibrational studies of the solid imidazole and pyridine adducts of metal(II) saccharinates. III. Zn(II) and Hg(II) imidazole saccharinates.

Adducts of bis(o-sulfobenzimidato)zinc(II) and mercury(II) with imidazole are synthesized for the first time and their mid-infrared vibrational spectra at ambient conditions and at 77 K are coupled with the earlier spectra-structural inferences to predict aspects of the respective solid-state structures. The spectrum of the H2O-matrix isolated OD fundamentals in the hydrated zinc compound is also investigated. The structure of the latter adduct contrasts the octahedral isostructural tetrad of mixed imidazole-saccharinates [M(H2O)2(C3H4N2)4](C7H4NO3S)2 [M = Mn(II), Fe(II), Co(II) and Ni(II)] in that it bears only a single crystallographic type of hydrogen bonded C2v water molecules and at least two structurally different o-sulfobenzimidate ligands, some of them likely utilized in a bridging fashion. The rotation and the partial ionic character of a pair of N-monodentate o-sulfobenzimidato ligands placed about 212-214 pm from the metal accommodates another pair of imidazole molecules in the tetrahedral arrangement around the metal in the neutral unhydrous mercury complex.

Imidazoles↗

Mucosal ulcerogenic action of monochloramine in rat stomachs: effects of polaprezinc and sucralfate.

Effects of a novel zinc compound polaprezinc [N-(3-aminopropionyl)-L-histidinatozinc] and sucralfate on the mucosal ulcerogenic responses induced by monochloramine (NH2Cl) were examined in rat stomachs. Oral administration of NH2Cl (>60 mM) produced severe lesions in unanesthetized rat stomachs, with concomitant increase of lipid peroxidation. These lesions were aggravated by sensory deafferentation but not affected by pretreatment with indomethacin or L-NAME. The mucosal ulcerogenic response to NH2Cl was significantly inhibited by oral pretreatment with either dmPGE2 (10 microg/kg), capsaicin (30 mg/kg), or NOR-3 (3 mg/kg), the NO donor. Gastric lesions induced by NH2Cl were also inhibited by prior oral administration of polaprezinc (3-30 mg/kg) as well as sucralfate (30 and 100 mg/kg). The protective effect of polaprezinc was not affected by any pretreatments such as indomethacin, L-NAME, or sensory deafferentation, while that of sucralfate was significantly mitigated in the presence of either indomethacin or L-NAME. On the other hand, mucosal exposure to NH4OH (60 mM) caused a marked PD reduction in ex vivo stomachs made ischemic by bleeding from the carotid artery, followed by severe gastric lesions. These ulcerogenic and PD responses caused by NH4OH plus ischemia were also attenuated by prior application of polaprezinc, while dmPGE2 and sucralfate prevented such lesions without affecting the reduced PD response. These results suggest that: (1) NH2Cl generated either exogenously or endogenously damages the gastric mucosa, (2) both polaprezinc and sucralfate protect the stomach against injury caused by NH2Cl, and (3) the mechanisms underlying the protective action of sucralfate may be partly mediated by both endogenous PGs and NO but may be different from those of polaprezinc.

16,16-Dimethylprostaglandin E2↗

Dietary conditions influencing relative zinc availability from foods to the rat and correlations with in vitro measurements.

Zinc availability from a series of foods was determined using 65Zn-labeled test meals fed to rats. Zinc availability relative to zinc chloride depended on the amount of the zinc source in the test meal. Zinc availability from several foods was similar to that from zinc chloride when tested in smaller amounts, but enhanced when fed in larger amounts. The range of zinc availability was similar for foods of plant and animal origin. Rats retained significantly more zinc from pork, chicken, peanut butter, egg or milk than from rice, beef, soybean flour or navy beans. Foods with intermediate zinc availability were sweet corn, whole wheat bread, cheese and oysters. Several food characteristics were examined for possible relationships with zinc availability, including the solubility or molecular size of zinc compounds after an in vitro enzymatic digestion and the contents of phytic acid, minerals, amino acids, carbohydrate and fatty acids relative to the zinc content of the food. Protein and several amino acids predicted about half of the variance in zinc availability. Following in vitro enzymatic digestion, neither zinc solubility nor the partitioning of zinc between low and high molecular weight substances was a strong predictor of zinc availability.

Amino Acids↗

Effect of polaprezinc (N-(3-aminopropionyl)-L-histidinato zinc), a novel antiulcer agent containing zinc, on cellular proliferation: role of insulin-like growth factor I.

The effect of polaprezinc (N-(3-aminopropionyl)-L-histidinato zinc), a novel antiulcer drug containing zinc, on cellular proliferation was studied using cultured cells. In human umbilical vein endothelial cells (HUVEC) or human foreskin fibroblast cells, bromodeoxyuridine (BrdU) uptake and the number of cells were increased by polaprezinc under low serum conditions, but polaprezinc had no effect on guinea pig gastric mucosal epithelial cells. In addition, L-carnosine (a component of polaprezinc) had no effect on cultured HUVEC, while zinc sulfate, a representative zinc compound, increased BrdU uptake by about 2-fold at 10(-9) M. However, the action of zinc sulfate was weaker than that of polaprezinc. The insulin-like growth factor I (IGF-I) mRNA level was increased in HUVEC by polaprezinc at 10(-9) M approximately 3 x 10(-8) M concentrations, causing stimulation of BrdU uptake. When an anti-IGF-I antibody was added to cultures, the effects of polaprezinc on BrdU uptake was suppressed. These results suggest that although polaprezinc, a novel antiulcer agent, does not have proliferative effects on epithelial cells, it does promote the proliferation of non-parenchymal cells, and IGF-I is involved in this action.

Anti-Ulcer Agents↗

Prophylactic effect of dietary zinc in a laboratory mouse model of swine dysentery.

Reduced prevalence of diarrhea and mortality has been reported after dietary supplementation with zinc compounds in swine with naturally acquired colibacillosis and those challenge-exposed with Serpulina hyodysenteriae; however, the usefulness of this approach for control of enteric diseases of swine remains to be determined. To examine the effect of dietary zinc-containing compounds on the colonization and development of cecal lesions associated with S hyodysenteriae infection, a defined diet alone or with added ZnO, ZnSO4, or Zn-methionine complex to a final concentration of approximately 6,000 mg of Zn2+/kg of complete feed was fed ad libitum to 156 female mice (strain C3H/HeN) for 10 days prior to oral inoculation either with S hyodysenteriae or sterile trypticase soy broth. Rations were continued for 42 days, while at weekly intervals, 3 mice/group were necropsied for determination of body weight, cecal weight, liver zinc concentration, presence of S hyodysenteriae in the cecum, and gross and histologic assessments of cecal lesions. From postinoculation day 0 to 42, the liver zinc concentration of mice fed the zinc-supplemented diets was approximately twice that of mice fed the basal diet, irrespective of the source of zinc. From postinoculation day 7 through 42, the overall recovery rate of S hyodysenteriae in infected mice fed the basal diet was 77.8%. In contrast, recovery rates of S hyodysenteriae from S hyodysenteriae-inoculated mice fed the zinc-supplemented diets were 0% for Zn-methionine and ZnO and 16.7% for ZnSO4. Mice fed the basal diet had significantly (P < 0.05) higher weight gain than mice fed the zinc-supplemented diets.(ABSTRACT TRUNCATED AT 250 WORDS)

Animal Feed↗

Comparison of the effect of beta-alanyl-L-histidinato zinc and its zinc-chelating ligand on bone metabolism in tissue culture.

The present investigation was undertaken to compare the effects of beta-alanyl-L-histidinato zinc (AHZ) and its zinc-chelating ligands on bone metabolism in tissue culture. Calvaria were removed from 3-week-old male rats and cultured for up to 72 h in Dulbecco's modified eagle medium containing zinc sulfate, AHZ, di(N-acetyl-beta-alanyl-L-histidinato)zinc (AAHZ), and di(histidino)zinc (HZ). The bone calcium content and alkaline phosphatase activity were significantly increased in the presence of AHZ or AAHZ (10(-8)-10(-5) M). Those increases were seen at 10(-7) to 10(-5) M zinc sulfate and HZ. The bone deoxyribonucleic acid (DNA) content was significantly increased by AHZ or AAHZ with 10(-7) to 10(-5) M, while 10(-7) M zinc sulfate and HZ had no effect. Thus, AHZ and AAHZ had more potent effect than that of zinc sulfate and HZ. The effect of AHZ, AAHZ and HZ (10(-5) M) increasing bone alkaline phosphatase activity was abolished by the presence of 10(-4) M dipicolinate, a chelator of zinc. Moreover, the effect of these zinc compounds on bone metabolic indices was not seen in the presence of 10(-6) M cycloheximide. The present results suggest that the effect of AHZ and AAHZ on bone metabolism is more potent than that of zinc sulfate and HZ.

Alkaline Phosphatase↗

The membrane-stabilizing action of zinc carnosine (Z-103) in stress-induced gastric ulceration in rats.

Zinc compounds have been shown to antagonize various types of gastric ulceration in rats. Zinc carnosine (Z-103), a newly developed agent was, therefore, examined for its antiulcer effect in stress-induced ulceration and also its membrane stabilizing action in rat stomachs. Cold-restraint (restrained at 4 degrees C for 2 h) stress induced severe hemorrhagic lesions together with increased mast cell degranulation and beta-glucuronidase release in the gastric glandular mucosa. Z-103 pretreatment with a single oral dose (3, 10 or 30 mg/kg) reversed these actions in a dose-dependent manner. When the compound was incubated in concentrations of 10(-7, 10(-6), 10(-5) or 10(-4) M, with isolated hepatic lysosomes, it significantly reduced the spontaneous release of beta-glucuronidase in the medium. The present study not only demonstrates the antiulcer effect of Z-103 but also indicates that the protective action is likely to be mediated by its membrane-stabilizing action on mast cells and lysosomes in the gastric glandular mucosa.

Animals↗

[Activity of certain salivary enzymes in school children exposed to excessive concentrations of lead and cadmium].

The purpose of the study was assessment of the effect of an environment contaminated with heavy metals on the activity of certain enzymes of mixed saliva. The activity was determined of total acid phosphatase and phosphatase resistant to tartrate and formaldehyde, alkaline phosphatase, alanine and aspartate aminotransferase, and alpha-amylase. The studied material comprised 110 saliva samples obtained from three groups of children aged 8 years. Group I of 21 children lived in Szopienice, group II of 30 children lived in Miasteczko Slaskie. In both these localities the children were exposed to mean daily concentrations, above the permitted ones, mainly of lead compounds, in lower degree to cadmium and zinc compounds. Environment contamination in Szopienice was greater than in Miasteczko Slaskie. Group III of 59 children living in Lubowice served as controls. In that town the permissible concentrations of these compounds were not exceeded. Statistical analysis of these results showed that the activity of total acid phosphatase in groups I and II, that is in the contaminated areas, was highly significantly greater than in the control group. The activity of alkaline phosphatase was raised only in the saliva in group I. No differences were found in the activity of alpha-amylase and aminotransferases.

Acid Phosphatase↗

Some aspects of a non-linear effect of zinc ions on the histamine release from rat peritoneal mast cells.

Addition of zinc-chloride or zinc-orotate to the lavage medium successfully influences the histamine release from rat peritoneal mast cells. The effect of these zinc compounds is not doses-linear. 20 and 30 mg/l ZnCl2 cause a rather strong, 0.5, 5 and 10 mg/l ZnCl2 a weak depression in the release of histamine. An increase in the histamine release is caused by 40 mg/l ZnCl2. A similar, likewise non-doses-linear effect, can be observed with zinc-orotate. Concentrations of 10 and 30 mg/l zinc-orotate cause a decrease of the release; 0.05, 0.1, 1 and 60 mg/l have only minimal effects; an addition of 90 mg/l leads to an increase in the histamine release. Related to the Zn2+ ion the effect of zinc-chloride and zinc-orotate is not equivalent.

Animals↗

Zinc stimulates protein synthesis in the femoral-metaphyseal tissues of normal and skeletally unloaded rats.

The effect of zinc on protein synthesis in the femoral-metaphyseal tissues of normal and skeletally unloaded rats was investigated. Skeletal unloading was designed using the model of hindlimb suspension in rats. Animals were fed for 2 or 4 days during the unloading. [3H]Leucine was added to the reaction mixture containing the 5500 g supernatant fraction of the homogenate prepared from the femoral-metaphyseal tissues. In vitro protein synthesis was significantly decreased in the bone tissues from the rats which had undergone unloading for 2 or 4 days. When the metaphyseal tissues were cultured for 24 h in the presence of zinc sulfate (10(-5) M) or beta-alanyl-L-histidinato zinc (AHZ, 10(-5) M), zinc compounds clearly stimulated protein synthesis in the metaphyseal tissues from the 4-day unloaded rats. The zinc effect was also seen in the metaphyseal tissues from normal rats. The addition of zinc sulfate (10(-5) M) or AHZ (10(-7) to 10(-5) M) into the reaction mixture containing the 5500 g supernatant fraction of metaphyseal homogenate from normal or unloaded rats produced a significant increase in protein synthesis. This increase was clearly inhibited in the presence of cycloheximide (10(-7) M). The present result demonstrates that protein synthesis is impaired in the femoral-metaphyseal tissues of rats with skeletal unloading, and that this impairment is clearly restored by zinc supplementation.

Animals↗

[Current principles of Wilson's disease--diagnosis and treatment].

Wilson's disease defined also as hepatolenticular degeneration is an important clinical problem of young adults still causing diagnostic difficulties. In the course of the last decade, genetic background of the disease has been definitely established and elucidated, confirming the variety of genetic mutations, responsible for its origin. The current scheme of the disease treatment has been elaborated and established. It aims to eliminate the excess of toxic copper ions from the organism as fast as possible. In the initial phase of the treatment, traditional and recently introduced chelating agents administration usually results in prompt tissue copper deposits excretion and copper metabolism balance maintenance. In the chronic therapy, zinc compounds, inducing intestinal and hepatic metallothionein synthesis, have been gaining more common application. Life-long, constant, pharmacological Wilson's disease therapy, administered after its early diagnosis, allows for long periods of patients survival, frequently comparable to the normal population.

Adult↗