Assessment of the body’s nonspecific defense in workers exposed to noxious factors of chemical and petrochemical industry

Cover Page


Cite item

Full Text

Abstract

Aim. To study the processes of free-radical oxidation, antioxidant defense, energy metabolism, electrolyte metabolism, and cytokine system reflecting the state of the non-specific defense of the body in workers exposed to complex of toxic substances under the conditions of manufacturing, substantiating the importance of indicators of preclinical diagnosis of disease development risk.

Methods. The study included 90 workers of JSC «Experimental Plant Neftekhim», 95 workers of JSC «Kaustic» and 101 workers of JSC «Ufa plant of elastomeric materials, products and structures». Materials for the study were blood, mixed saliva, gingival fluid and urine. The laboratory studies were performed to evaluate the free radical oxidation processes, antioxidant defense, energy metabolism, electrolyte metabolism, and cytokine system. Taking into account the features of industrial factors, particularly their effects on the workers bodies, routes of toxic compounds entry by inhalation, oral cavity and skin of the hands, three professional groups were formed (A, B, C). Group A included employees having constant contact with chlororganic compounds. The group B included persons who have constant contact with the higher and lower aromatic hydrocarbons. A group C consisted of employees who have constant contact with a mixture of chemicals: rubber compound containing carcinogens - benzo(a)pyrene, NDMA, nitrosodiethylamine; white carbon black, rubber dust, talc, amine compounds, sulfur dioxide, carbon monoxide. The control group consisted of employees of administrative and managerial staff.

Results. The study revealed that one of the major pathogenetic mechanisms of action of chemical and petrochemical industry hazards is activation of free radical oxidation.

Conclusion. Among the mechanisms of the influence of chemical contaminants of working environment a leading role play intensification of free radical oxidation processes, failure and/or inhibition of the antioxidant defense components.

About the authors

R I Sabitova

Bashkir State Medical University

Author for correspondence.
Email: regina_sabitova88@mail.ru

E D Kravets

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

E F Galiullina

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

D F Shakirov

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

F Kh Kamilov

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

R T Buliakov

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

V M Samsonov

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

D A Enikeev

Bashkir State Medical University

Email: regina_sabitova88@mail.ru

References

  1. Камилов Р.Ф., Самсонов В.М., Шакирова Э.Д., Шакиров Д.Ф. Заболеваемость с временной утратой трудоспособности рабочих основных профессий нефтехимической промышленности. Пробл. соц. гигиены, здравоохр. и ист. мед. 2010; (4): 11-14.
  2. Камилов Ф.Х., Шакиров Д.Ф. Состояние метаболических процессов в организме у рабочих, занятых в химической, нефтехимической и нефтеперерабатывающей промышленности. Вестн. Рос. воен.-мед. академии. 2008; 2 (2): 679-680.
  3. Кетлинский С.А., Симбирцев А.С. Цитокины. СПб. 2008; 550 с.
  4. Лабораторные методы исследования в клинике. Под ред. В.В. Меньшикова. М. 1987; 455 с.
  5. Серебренникова С.Н., Семинский И.Ж. Роль цитокинов в воспалительном процессе (сообщение 1, 2). Сибир. мед. ж. 2008; 6 (8): 5-8.
  6. Фархутдинов Р.Р., Лиховских В.А. Хемилюминесцентные методы исследования свободнорадикального окисления в биологии и медицине. Уфа: Из-во БГМИ, 1995; 90 с.
  7. Цыбиков Н.Н., Баранов С.В., Кузник Б.И. и др. Уровень белка теплового шока-70, цитокинов и аутоантител к ним в сыворотке крови, ротовой и десневой жидкости при пародонтите. Стоматология. 2014; 1: 16-18.
  8. Glock G., McLean P. Further studies on the properties and assay of glucose-6-phosphatdehydrogenase and 6-phosphogluconatedehydrogenase of rate liver. J. Biochem. 1953; 55 (3): 400-408.
  9. Whittam B., Ager M. Vectorial aspects of adenosinetriphosphatasae activity in erytrocyte membranes. J. Biochem. 1964; 93 (2): 337-340.

Supplementary files

Supplementary Files
Action
1. JATS XML

© 2016 Sabitova R.I., Kravets E.D., Galiullina E.F., Shakirov D.F., Kamilov F.K., Buliakov R.T., Samsonov V.M., Enikeev D.A.

Creative Commons License

This work is licensed
under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.





This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies