Sains
Malaysiana 50(3)(2021): 711-721
http://doi.org/10.17576/jsm-2021-5003-13
Acute Toxicity Evaluation of a Crude Sap Isolated from Nypa fruticans Wurmb. in Sprague Dawley
Rats
(Penilaian Ketoksikan Akut Air Nira yang dipencilkan daripada Nypa fruticans Wurmb. pada Tikus Sprague Dawley)
SITI FATIMAH ROQIAH YAHAYA1*, NIZA SAMSUDDIN1,
SUHANA MAMAT1, ROZITA HOD2, NOR ZAMZILA ABDULLAH3,4 &
NOR AZLINA A RAHMAN5
1Department of Biomedical Sciences, Kulliyyah of Allied
Health Science, International Islamic University Malaysia, Bandar Indera
Mahkota, 25200 Kuantan, Pahang Darul Makmur, Malaysia
2Department of Community Health, Faculty of Medicine, UKM
Medical Center, Jln Yaakob Latif, Bandar Tun Razak, 56000 Cheras, Kuala Lumpur,
Federal Territory, Malaysia
3Department of Pathology & Laboratory Medicine, Kulliyyah
of Medicine, International Islamic University Malaysia, Bandar Indera Mahkota,
25200 Kuantan, Pahang Darul Makmur, Malaysia
4Consultant Chemical Pathologist, International Islamic
University Malaysia Medical Center, Bandar Indera Mahkota, 25200 Kuantan,
Pahang Darul Makmur, Malaysia
5Department of Physical
Rehabilitation Sciences, Kulliyyah of Allied Health Science, International
Islamic University Malaysia, Bandar Indera Mahkota, 25200 Kuantan, Pahang Darul
Makmur, Malaysia
Received: 22 January 2020/Accepted: 21 August 2020
ABSTRACT
Nypa fruticans Wurmb.
(nipa palm) sap, locally known as air nira or tuak, is a sweet natural
beverage in Malaysia with antioxidant potency beneficial for human health.
However, nypa sap lacks scientific attention with no toxicity study has been
established. Therefore, this study was performed to evaluate the acute toxicity
of nypa sap in the female Sprague Dawley rats. Twenty-five female rats were
randomly divided into one control group and four treated groups. Treated groups
were orally administered with doses of 5, 50, 300, and 2000 mg/kg of nypa sap,
while the control group had received normal saline solution. The animals’ vital
signs and mortality were recorded daily at an interval of 30 min and continued
up to 14 days. Their blood samples and organs were harvested for toxicity
analysis to assess liver and kidney function, lipid profile, and full blood
count. The acute toxicity test via measurement of the biochemical and haematological parameters had shown that
there was no significant difference between the treated and control groups.
However, the blood glucose level in the treated groups (at higher doses of 300
and 2000 mg/kg, respectively) was significantly decreased. A similar trend was
recorded for mean corpuscular volume (MCV) albeit in the treated group of 50
mg/kg doses. Histopathological examination of the organs showed no signs of
abnormality in both treated and untreated groups. Overall, the results showed
that consumption of nypa sap is potentially safe with no acute toxic effect on
the laboratory rat models.
Keywords: Acute toxicity; biochemical parameters;
haematological parameters; histopathology; Nypa fruticans Wurmb.
sap
ABSTRAK
Cairan tumbuhan daripada pokok Nypa fruticans Wurmb.
(nipah) atau dikenali sebagai air nira atau tuak adalah minuman semula jadi
yang manis di Malaysia dengan potensi antioksidan yang memberi manfaat untuk
kesihatan manusia. Walau bagaimanapun, air nira ini kurang mendapat perhatian
saintifik dengan kajian ketoksikan masih belum diterbitkan. Oleh itu, kajian
ini dilakukan untuk menilai ketoksikan akut air nira terhadap tikus Sprague
Dawley betina. Dua puluh lima ekor tikus dibahagikan secara rawak kepada satu
kumpulan kawalan dan empat kumpulan rawatan. Kumpulan rawatan diberikan air
nira secara oral pada dos 5, 50, 300 dan 2000 mg/kg, sementara kumpulan kawalan
diberikan larutan garam. Tanda-tanda vital dan kematian haiwan dicatat setiap
hari dalam selang masa 30 minit dan berterusan selama 14 hari. Sampel darah dan
organ semua tikus diambil untuk analisis ketoksikan untuk menilai ujian fungsi
hati dan ginjal, profil lipid serta ujian bilangan sel darah. Ujian ketoksikan
akut melalui pengukuran parameter biokimia dan hematologi telah membuktikan
bahawa tiada perbezaan yang ketara antara kumpulan rawatan dan kumpulan
kawalan. Walau bagaimanapun, tahap glukosa darah dalam kumpulan rawatan (pada
dos yang tertinggi 300 dan 2000 mg/kg) berkurangan secara ketara. Keputusan
yang sama telah direkodkan untuk purata isi padu min korpuskular (MCV) apabila
dirawat pada dos 50 mg/kg. Pemeriksaan histopatologi organ tidak menunjukkan
tanda keabnormalan dalam kedua-dua kumpulan rawatan dan kawalan.
Keseluruhannya, keputusan menunjukkan bahawa pengambilan air nira adalah
berpotensi selamat tanpa mempunyai kesan toksik akut ke atas model tikus
makmal.
Kata kunci: Air nira (Nypa fruticans Wurmb.); histopatologi; ketoksikan akut; parameter biokimia; parameter
hematologi
REFERENCES
Aziz, A. & Jack, R. 2015. Total
phenolic content and antioxidant activity in Nypa fruticans extracts. Journal
of Sustainability Science and Management 10(1): 87-91.
Bakoma, B., Berké, B.,
Eklu-Gadegbeku, K., Agbonon, A., Aklikokou, K., Gbeassor, M. & Moore, N.
2013. Acute and sub-chronic (28 days) oral toxicity evaluation of
hydroethanolic extract of Bridelia
ferruginea Benth root bark in male rodent animals. Food and Chemical Toxicology 52: 176-179.
Bandaranayake, W.M. 1998.
Traditional and medicinal uses of mangroves. Mangroves and Salt Marshes 2(3): 133-148.
Beh, B.K., Mohamad, N.E., Yeap,
S.K., Ky, H., Boo, S.Y., Chua, J.Y.H., Tan, S.W., Ho, W.Y., Sharifuddin, S.A.,
Long, K. & Alitheen, N.B. 2017. Anti-obesity and anti-inflammatory effects
of synthetic acetic acid vinegar and Nipa vinegar on high-fat-diet-induced
obese mice. Scientific Reports 7(1):
1-9.
Da Silva, A.R., Reginato, F.Z.,
Guex, C.G., Figueredo, K.C., Araldi, I.C.D.C., de Freitas, R.B., Boligon, A.A.,
Athayde, M.L., de Andrade Mazzanti, C.M., Hübscher, G.H. & Bauermann,
L.D.F. 2016. Acute and sub-chronic (28 days) oral toxicity evaluation of
tincture Baccharis trimera (Less)
Backer in male and female rodent animals. Regulatory
Toxicology and Pharmacology 74: 170-177.
Ebana, R.U.B., Etok, C.A. &
Edet, U.O. 2015. Phytochemical screening and antimicrobial activity of Nypa fruticans harvested from Oporo
river in the Niger Delta Region of Nigeria. International
Journal of Innovation and Applied Studies 10(4): 1120-1124.
Giknis, M.L.A. & Clifford, C.B.
2006. Clinical Laboratory Parameters for
Crl: CD (SD) Rats. Charles River Laboratories.
https://www.criver.com/sites/default/files/Technical%20Resources/Clinical%20Laboratory%20Parameters%20for%20Crl-CD_SD_%20Rats%20-%20March%202006.pdf.
Hafizi, S.A., Razip, A.M., Aliana,
W.S. & Tarmizi, W.Y. 2018. Crystallization and biological studies of Nypa fruticans Wurmb. sap. Indonesian Journal of Pharmaceutical Science
and Technology 1(1): 37-42.
Ho, C.W., Aida, W.W., Maskat, M.Y.
& Osman, H. 2007. Changes in volatile compounds of palm sap (Arenga pinnata) during the heating
process for production of palm sugar. Food
Chemistry 102(4): 1156-1162.
Hossain, M.F. & Islam, M.A.
2015. Utilization of mangrove forest plant: Nipa palm (Nypa fruticans Wurmb.). American
Journal of Agriculture and Forestry 3(4): 156-160.
Kojima, S., Haruta, J., Enomoto, A.,
Fujisawa, H., Harada, T. & Maita, K. 1999. Age-related haematological
changes in normal F344 rats: During the neonatal period. Experimental Animals 48(3): 153-159.
Lu, S.Y. & Wu, H.C. 2004.
Initial diagnosis of anaemia from sore mouth and improved classification of
anaemias by MCV and RDW in 30 patients. Oral
Surgery, Oral Medicine, Oral Pathology, Oral Radiology, and Endodontology 98(6): 679-685.
Martin, F., Boris, N.S., Kengne,
S.R., Chia, T.E. & Guy, T.N. 2017. Antioxidant and postprandial
glucose-lowering potential of the hydroethanolic extract of Nypa fruticans seed mesocarp. Biology and Medicine Journal (Aligarh) 9(407): 1-6.
Minh, N.P. 2014. Various factors
influencing to the nipa (Nypa fruticans)
wine fermentation. International Journal
of Multidisciplinary Research and Development 2(2): 78-84.
Mohd, Z.M.S., Mohamed, R.O. &
Mohd, W.S. 2011. Determination of hydrocyanic acid in Nipah fruit (Nypa fruticans). Malaysian Journal of Analytical Sciences 15(2): 258-264.
Nakano, M., Takahashi, H., Koura,
S., Chung, C., Tafazoli, S. & Roberts, A. 2014. Acute and subchronic
toxicity studies of pyrroloquinoline quinone (PQQ) disodium salt (BioPQQ™) in
rats. Regulatory Toxicology and
Pharmacology 70(1): 107-121.
Nur Aimi, R., Abu Bakar, F. &
Dzulkifly, M.H. 2013. Determination of volatile compounds in fresh and
fermented Nipa sap (Nypa fruticans)
using static headspace gas chromatography-mass spectrometry (GC-MS). International Food Research Journal 20(1): 369-376.
Nguyen, D.V., Sethapokin, P.,
Rabemanolontsoa, H., Minami, E., Kawamoto, H. & Saka, S. 2016. Efficient
production of acetic acid from Nipa (Nypa
fruticans) sap by Moorella
thermoacetica (f. Clostridium
thermoaceticum). International
Journal of Green Technology 2: 1-12.
OECD. 2001a. Guideline for Testing of Chemicals: Acute Oral Toxicity-Fixed Dose
Procedure Test No 420. Organisation for Economic Co-operation and
Development (OECD).
OECD. 2001b. Guideline for Testing of Chemicals: Acute Oral Toxicity-Acute Toxic
Class Method Test No 423. Organisation for Economic Co-operation and
Development (OECD).
Osabor, V.N., Egbung, G.E. &
Okafor, P.C. 2008. Chemical profile of Nypa
fruiticans from cross river estuary, South Eastern Nigeria. Pakistan Journal of Nutrition 7(1):
146-150.
Phetrit, R., Chaijan, M.,
Sorapukdee, S. & Panpipat, W. 2019. Characterization of nipa palm’s (Nypa fruticans Wurmb.) sap and syrup as
functional food ingredients. Sugar Tech 22(1): 191-201.
Prasad, N., Yang, B., Kong, K.W.,
Khoo, H.E., Sun, J., Azlan, A., Ismail, A. & Romli, Z.B. 2013.
Phytochemicals and antioxidant capacity from Nypa fruticans Wurmb. fruit. Evidence-Based
Complementary and Alternative Medicine 2013: 154606.
Rahmatullah, M., Sadeak, S.M.I.,
Bachar, S.C., Hossain, M.T., Abdullah-al-Mamun, M., Jahan, N., Chowdhury, M.H.,
Jahan, R., Nasrin, D., Rahman, M. & Rahman, S. 2010. Brine shrimp toxicity
study of different Bangladeshi medicinal plants. Advances in Natural and Applied Sciences 4(2): 163-167.
Ramsingh, D. 2010. The assessment of
the chronic toxicity and carcinogenicity of pesticides. Hayes’ Handbook of Pesticide Toxicology. Canada: Academic Press.
pp. 463-482.
Reza, H., Haq, W.M., Das, A.K.,
Rahman, S., Jahan, R. & Rahmatullah, M. 2011. Anti-hyperglycemic and
antinociceptive activity of methanol leaf and stem extract of Nypa fruticans Wurmb. Pakistan Journal of Pharmaceutical Sciences 24(4): 485-488.
Sabri, W.M., Asaruddin, M.R.A.R.,
Sukairi, A.H. & Yusop, S.A. 2018. Antioxidant and cytotoxicity studies of Nypa fruticans (Nypa Palm Sugar)
extract. Indonesian Journal of
Pharmaceutical Science and Technology 1(1): 65-69.
Tamizhazhagan, V. & Pugazhendy,
K. 2015. The toxicity effect of Monocrotophos 36% E. C on the Hematology, Labeo rohita (Hamilton, 1882). International Journal of Current
Pharmaceutical Research 7(4): 92-95.
Tripathy, R., Pradhan, M.R.,
Srivastava, V., Das, A., Jhajharia, S. & Mohapatra, T.M. 2016. Protective
efficacy of Tridax procumbens and Ficus religiosa against isoniazid and
rifampicin induced hepatocellular damage in rats: A preliminary comparative
evaluation on biochemical parameters. Asian
Journal of Pharmaceutical and Clinical Research 9(4): 362-364.
Yusoff, N.A., Lim, V., Al-Hindi, B.,
Abdul Razak, K., Widyawati, T., Anggraini, D., Ahmad, M. & Asmawi, M. 2017. Nypa fruticans Wurmb. vinegar’s
aqueous extract stimulates insulin secretion and exerts hepatoprotective effect
on stz-induced diabetic rats. Nutrients 9(9):
1-12.
Yusoff, N.A., Ahmad, M., al Hindi,
B., Widyawati, T., Yam, M., Mahmud, R., Razak, K. & Asmawi, M. 2015a.
Aqueous extract of Nypa fruticans Wurmb.
vinegar alleviates postprandial hyperglycemia in normoglycemic rats. Nutrients 7(8): 7012-7026.
Yusoff, N.A., Yam, M.F., Beh, H.K.,
Razak, K.N.A., Widyawati, T., Mahmud, R., Ahmad, M. & Asmawi, M.Z. 2015b.
Anti-diabetic and antioxidant activities of Nypa
fruticans Wurmb. vinegar sample from Malaysia. Asian Pacific Journal of Tropical Medicine 8(8): 595-605.
*Corresponding author; email: sitifatimahroqiah@gmail.com
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