Research Article

Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats

Volume: 13 Number: 2 August 31, 2019
EN

Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats

Abstract


Objectives: The carotid intima-media thickness (CIMT) is a known biomarker of clinical and subclinical cardiovascular events and evaluation of therapeutic action. Excessive salt directly causes changes in the common carotid intima and media layers and has been linked to hypertensive disease resulting to changes on vascular structure. Hibiscus sabdariffa is a traditional herbal drink with antihypertensive effects. The anatomical aspects of its effects however, are largely unknown. This study therefore, investigated the effects of hibiscus extract on CIMT in rats fed with a high-salt diet.

Methods: Young albino rats (Rattus norvegicus) were divided into three groups: (A) high-salt diet alone, (B) high-salt diet and Hibiscus sabdariffa extract and (C) control group fed a normal diet for 8 weeks. Specimens from carotid arteries of rats were fixated and processed for paraffin embedding. Seven-micrometer thick sections were stained with Hematoxylin and Eosin stain and examined under light microscopy. Morphometric measurements were taken to determine the CIMT. 

Results: High-salt diet increased CIMT from 497.86 µm to 697.85 µm in 8 weeks. In Hibiscus sabdariffa extract fed rats, the CIMT decreased to 542.85 µm (p<0.05) by week 8. 

Conclusion: Hibiscus sabdariffa extract ameliorates salt-induced increase in CIMT in rats in a time-dependent manner. This implies that Hibiscus sabdariffa products may have therapeutic value in salt-induced vascular morbidity.



Keywords

References

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Details

Primary Language

English

Subjects

Health Care Administration

Journal Section

Research Article

Authors

Beda O. Olabu This is me
Kenya

Anne N. Puleı This is me
Kenya

Julius A. Ogeng’o This is me
Kenya

Publication Date

August 31, 2019

Submission Date

April 9, 2019

Acceptance Date

May 16, 2019

Published in Issue

Year 2019 Volume: 13 Number: 2

APA
Gwala, F., Sibuor, W., Olabu, B. O., Puleı, A. N., & Ogeng’o, J. A. (2019). Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats. Anatomy, 13(2), 92-97. https://izlik.org/JA88MR67CU
AMA
1.Gwala F, Sibuor W, Olabu BO, Puleı AN, Ogeng’o JA. Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats. Anatomy. 2019;13(2):92-97. https://izlik.org/JA88MR67CU
Chicago
Gwala, Fidel, William Sibuor, Beda O. Olabu, Anne N. Puleı, and Julius A. Ogeng’o. 2019. “Hibiscus Ameliorates Salt-Induced Carotid Intima-Media Thickness in Albino Rats”. Anatomy 13 (2): 92-97. https://izlik.org/JA88MR67CU.
EndNote
Gwala F, Sibuor W, Olabu BO, Puleı AN, Ogeng’o JA (August 1, 2019) Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats. Anatomy 13 2 92–97.
IEEE
[1]F. Gwala, W. Sibuor, B. O. Olabu, A. N. Puleı, and J. A. Ogeng’o, “Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats”, Anatomy, vol. 13, no. 2, pp. 92–97, Aug. 2019, [Online]. Available: https://izlik.org/JA88MR67CU
ISNAD
Gwala, Fidel - Sibuor, William - Olabu, Beda O. - Puleı, Anne N. - Ogeng’o, Julius A. “Hibiscus Ameliorates Salt-Induced Carotid Intima-Media Thickness in Albino Rats”. Anatomy 13/2 (August 1, 2019): 92-97. https://izlik.org/JA88MR67CU.
JAMA
1.Gwala F, Sibuor W, Olabu BO, Puleı AN, Ogeng’o JA. Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats. Anatomy. 2019;13:92–97.
MLA
Gwala, Fidel, et al. “Hibiscus Ameliorates Salt-Induced Carotid Intima-Media Thickness in Albino Rats”. Anatomy, vol. 13, no. 2, Aug. 2019, pp. 92-97, https://izlik.org/JA88MR67CU.
Vancouver
1.Fidel Gwala, William Sibuor, Beda O. Olabu, Anne N. Puleı, Julius A. Ogeng’o. Hibiscus ameliorates salt-induced carotid intima-media thickness in albino rats. Anatomy [Internet]. 2019 Aug. 1;13(2):92-7. Available from: https://izlik.org/JA88MR67CU

Anatomy is the official journal of Turkish Society of Anatomy and Clinical Anatomy (TSACA).