Literature DB >> 6704965

Inhibition by magnesium and calcium acetates of lead subacetate- and nickel acetate-induced lung tumors in strain A mice.

L A Poirier, J C Theiss, L J Arnold, M B Shimkin.   

Abstract

The ability of the physiologically essential divalent metals calcium and magnesium to inhibit the tumorigenic activities of lead and nickel towards the lungs of strain A mice was investigated. The tumorigenic salts lead(II) subacetate and nickel(II) acetate were injected i.p. at their maximal tolerated doses (0.04 mmol/kg/injection of each metal) for a total of 24 injections, whenever possible. Calcium(II) acetate and magnesium(II) acetate were administered in the same preparation along with the lead and nickel salts at molar doses of approximately 1, 3, 10, and 30 times the maximal tolerated dose of the tumorigen. The animals were sacrificed 30 weeks after the first injection, and the lung tumors were counted. The lead and nickel salts, administered alone, each produced a significant increase in the observed number of lung adenomas per mouse. When administered with any of the doses of calcium acetate or magnesium acetate tested, neither lead subacetate nor nickel acetate showed any significant tumorigenic activity. Calcium acetate alone (total dose, 11 mmol/kg of body weight) appeared to yield a significant rise in lung adenomas observed. The results indicate an antagonism between magnesium and calcium and the tumorigenic metals nickel and lead.

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Year:  1984        PMID: 6704965

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  10 in total

1.  Promoting effect of basic lead acetate administration on the tumorigenesis of lung in N-nitrosodimethylamine-treated mice.

Authors:  K Sakai; M Suzuki; Y Yamane; A Takahashi; G Ide
Journal:  Bull Environ Contam Toxicol       Date:  1990-05       Impact factor: 2.151

2.  Mortality and lead exposure: a retrospective cohort study of Swedish smelter workers.

Authors:  L Gerhardsson; N G Lundström; G Nordberg; S Wall
Journal:  Br J Ind Med       Date:  1986-10

3.  Effects of essential divalent metals on carcinogenicity and metabolism of nickel and cadmium.

Authors:  K S Kasprzak; M P Waalkes; L A Poirier
Journal:  Biol Trace Elem Res       Date:  1987-08       Impact factor: 3.738

4.  Protective effect of magnesium on DNA strand breaks induced by nickel or cadmium.

Authors:  N A Littlefield; B S Hass; S J James; L A Poirier
Journal:  Cell Biol Toxicol       Date:  1994-04       Impact factor: 6.691

Review 5.  Cancer risk from inorganics.

Authors:  S H Swierenga; J P Gilman; J R McLean
Journal:  Cancer Metastasis Rev       Date:  1987       Impact factor: 9.264

6.  Magnesium inhibits nickel-induced genotoxicity and formation of reactive oxygen.

Authors:  Y C Hong; S R Paik; H J Lee; K H Lee; S M Jang
Journal:  Environ Health Perspect       Date:  1997-07       Impact factor: 9.031

7.  Toxicological interactions between nickel and radiation on chromosome damage and repair.

Authors:  W W Au; M Y Heo; T Chiewchanwit
Journal:  Environ Health Perspect       Date:  1994-11       Impact factor: 9.031

Review 8.  Epidemiological and experimental aspects of metal carcinogenesis: physicochemical properties, kinetics, and the active species.

Authors:  L Magos
Journal:  Environ Health Perspect       Date:  1991-11       Impact factor: 9.031

9.  Lead Nitrate Induces Inflammation and Apoptosis in Rat Lungs Through the Activation of NF-κB and AhR Signaling Pathways.

Authors:  Ibraheem M Attafi; Saleh A Bakheet; Sheikh F Ahmad; Osamah M Belali; Fawaz E Alanazi; Suliman A Aljarboa; Ibrahim A Al-Alallah; Hesham M Korashy
Journal:  Environ Sci Pollut Res Int       Date:  2022-04-28       Impact factor: 5.190

10.  The role of nickel and nickel-mediated reactive oxygen species in the mechanism of nickel carcinogenesis.

Authors:  X Huang; Z Zhuang; K Frenkel; C B Klein; M Costa
Journal:  Environ Health Perspect       Date:  1994-09       Impact factor: 9.031

  10 in total

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