Sains Malaysiana 46(6)(2017): 909–915
http://dx.doi.org/10.17576/jsm-2017-4606-10
Kesan Penyimpanan Sampel Air Liur
Terhadap Kualiti DNA Genom
(Storage Effect of Saliva Sample on Quality of Genomic DNA)
ROHAYA MEGAT ABDUL WAHAB1, FARAH AMIRAH MOHD NASRI2, INTAN ZARINA ZAINOL ABIDIN3, ZAIDAH ZAINAL
ARIFFIN4,5, MUHAMMAD DAIN YAZID6 & SHAHRUL HISHAM ZAINAL ARIFFIN2*
1Jabatan Ortodontik, Fakulti Pergigian, Universiti Kebangsaan Malaysia, 50300 Kuala Lumpur, Wilayah
Persekutuan, Malaysia
2Pusat Pengajian Biosains dan Bioteknologi, Fakulti Sains dan Teknologi, Universiti Kebangsaan Malaysia, 43600 UKM Bangi,
Selangor Darul Ehsan, Malaysia
3Pusat Sumber Penyelidikan, Cyberjaya University College of Medical Sciences, 63000 Cyberjaya, Selangor Darul Ehsan, Malaysia
4Jabatan Biologi, Fakulti Sains Gunaan, Universiti Teknologi MARA, 40450 Shah Alam,
Selangor Darul Ehsan, Malaysia
5Atta-ur Rahman, Institut Kajian Ubat Semulajadi, Fakulti Farmasi, Universiti Teknologi MARA, 42300
Bandar Puncak Alam, Selangor Darul Ehsan, Malaysia
6Pusat Kejuruteraan Tisu, Tingkat 12,
Blok Klinikal, Pusat Perubatan Universiti Kebangsaan Malaysia, Jalan Yaacob Latiff, 56000 Cheras, Kuala Lumpur, Wilayah Persekutuan, Malaysia
Received: 3 July 2016/Accepted:
20 December 2016
ABSTRAK
Air
liur berpotensi menjadi
punca DNA yang mudah
diambil bagi
kajian klinikal kerana tidak invasif
berbanding sampel
darah. Kajian ini dijalankan untuk memencilkan dan menulenkan DNA genom daripada sampel air
liur manusia serta mengkaji kesan penyimpanan terhadap kualiti DNA genom. Sampel air
liur (n=5) disimpan dalam
penimbal Tris-NaCl
EDTA
(TNE) pada
suhu bilik (25°C) mengikut tempoh masa yang ditetapkan iaitu, segar (tanpa penyimpanan),
1,2,3 dan
4 bulan. Pemencilan dan penulenan
DNA
dilakukan menggunakan kaedah fenol-kloroform.
Seterusnya,
PCR
telah dijalankan untuk mengetahui ketulenan DNA yang diekstrak
menggunakan amplifikasi
pada kawasan jujukan
beta-globin dan mengenal
pasti kehadiran bakteria melalui jujukan yang mengekod 16S rDNA.
Keputusan menunjukkan
fragmen DNA gen beta-globin manusia hanya berjaya
diamplifikasi daripada
sampel segar.
Sampel
air
liur yang disimpan
dalam penimbal TNE pada
suhu bilik
tidak mampu menstabilkan
DNA
genom manusia
untuk jangka
masa lama dan hanya berkesan
untuk tempoh
yang singkat iaitu, kurang daripada 1 bulan. Kesimpulannya,
hanya sampel air
liur segar sahaja
yang berupaya memencil
DNA
genom.
Kata kunci: Ketulenan DNA; PCR; penimbal TNE; suhu bilik
ABSTRACT
Saliva is a potential
source of DNA easily obtained for clinical studies because it is
non-invasive compared to blood samples. This study was carried out to isolate
and purify genomic DNA from human saliva sample and to
study storage effect on the quality of genomic DNA.
Saliva samples (n=5) were kept in Tris-NaCl EDTA (TNE) buffer at room temperature (25°C)
according to fixed time period which are; fresh (without storage), 1,2,3 and 4
months. Isolation and purification of DNA was carried out using
phenol-chloroform method. Next, PCR was conducted to determine
the purity of extracted DNA by using amplification of
beta-globin sequence region and identify bacterial existence using the sequence
that codes for 16S rDNA. Only human beta-globin genomic DNA fragment
was successfully amplified from fresh sample. Saliva sample kept in TNE buffer
at room temperature was not able to stabilize human genomic DNA at
long term and worked for short term storage which was less than a month. In
conclusion, fresh saliva sample is needed to isolate genomic DNA.
Keywords: DNA purity; PCR; room temperature; TNE buffer
REFERENCES
Cheng,
T.H., Chen, S.P., Lu, T.C., Chen, W.C., Sher, J.S. & Shieh, Y.S. 2010. Optimal DNA extraction from buccal swab samples. Journal
of Medical Sciences 30(4): 149-154.
Chiappin,
S., Antonelli, G., Gatti,
R. & De Palo, E.F. 2007. Saliva specimen: A new
laboratory tool for diagnostic and basic investigation. Clinica Chimica Acta383(1):
30-40.
Cuhadar,
S., Koseoglu, M., Atay, A.
& Dirican, A. 2013. The
effect of storage time and freeze-thaw cycles on the stability of serum
samples. Biochemia Medica 23(1): 70-77.
Gu, F., Li, Y.,
Zhou, C., Wong, D.T.W., Ho, C.M., Qi, F. & Shi, W. 2009. Bacterial
16S rRNA/rDNA profiling in the liquid phase of human
saliva. The Open Dentistry Journal 3: 80-84.
Hebels,
D.G.A.J., Georgiadis, P., Keun,
H.C., Athersuch, T.J., Vineis,
P., Vermeulen, R., Portengen,
L. & Ingvar, A. 2013. Performance in omics analyses of blood
samples in long-term storage: Opportunities for the exploitation of existing
biobanks in environmental health research. Environmental Health Perspectives 121(4): 480-487.
Javaid,
M.A., Ahmed, A.S., Durand, R. & Tran, S.D. 2015. Saliva as a diagnostic tool for oral and systemic diseases. Journal
of Oral Biology and Craniofacial Research 6: 67-76.
Lima,
D.P., Diniz, D.G., Moimaz,
S.A., Sumida, D.H. & Okamoto, A.C. 2010. Saliva:
Reflection of the body. International Journal of Infectious Diseases 14(3):
184-188.
Luke,
R., Khan, S.N., Iqbal, P.S., Soman, R.R., Chakkarayan, J. & Krishnan, V. 2015. Estimation of specific salivary enzymatic biomarkers in individuals with
gingivitis and chronic periodontitis: A clinical and biochemical study. Journal
of International Oral Health 7(9): 54-57.
Madalli,
V.B., Basavaraddi, S.M., Burde,
K. & Horatti, P. 2013. Saliva-a
diagnostic tool. IOSR Journal of Dental and Medical Sciences 11(6):
96-99.
Malathi,
N., Mythili, S. & Vasanthi,
H.R. 2014. Salivary diagnostics: A brief review. ISRN
dentistry 2014: 1-8.
Maron,
J.L. & Johnson, K.L. 2015. Comparative performance analyses
of commercially available products for salivary collection and nucleic acid
processing in the newborn. Biotechnic & Histochemistry90(8): 581-586.
Mohd Faiz, E., Shahrul Hisham, Z.A., Saiful Anuar, K., Maryati, A.R., Sahidan, S. & Rohaya, M.A.W.
2012. Proteomic analysis of saliva identifies potential biomarkers for orthodontic
tooth movement. The Scientific World Journal 2012: Article ID. 647240.
Pham,
T.V., Huynh, L.T.T. & Nguyen, T.H. 2015. Modified DNA extraction method for the detection of Aspergillus flavusand Aspergillus parasiticus in dried food. Proceedings of the 5th International Conference on
Biomedical Engineering in Vietnam 46: 339-342.
Rathnayake,
N., Åkerman, S., Klinge,
B., Lundegren, N., Jansson,
H., Tryselius, Y., Sorsa,
T. & Gustafsson, A. 2013. Salivary biomarkers for detection of systemic diseases. PLoS ONE 8(4): 1-5.
Romanazzi,
V., Traversi, D., Lorenzi,
E. & Gilli, G. 2015. Effects of freezing storage on the DNA extraction and microbial evaluation from
anaerobic digested sludges. BMC Research Notes 8:
1-8.
Rus Dina, R.D., Shahrul Hisham,
Z.A., Sahidan, S., Rohaya,
M.A.W. & Intan Zarina,
Z.A. 2014. Molecular mitochondrial DNA and
radiographic approaches for human archaeology identification. Sains Malaysiana43(10):
1523-1535.
Rusterholz,
H.P., Ursenbacher, S., Coray,
A., Weibel, U. & Baur,
B. 2015. DNA quantity and quality in remnants of traffic-killed specimens of an
endangered longhorn beetle: A comparison of different methods. Journal of
Insect Science 15(1): 1-5.
Shahrul Hisham, Z.A., Mohd Faiz, E., Rohaya, M.A.W., Yosni, B. & Sahidan, S. 2010. Profil aktiviti laktat dehidrogenase, asid fosfatase rintang tartarat dan alkalin fosfatase pada air liur semasa rawatan ortodontik. Sains Malaysiana39(3): 405-412.
Smith,
S. & Morin, P.A. 2005. Optimal storage conditions for highly
dilute DNA samples: A role for trehalose as a
preserving agent. Journal Forensic Science 50(5): 1101-1108.
Spielmann, N.
& Wong, D.T. 2011. Saliva: Diagnostics and therapeutic perspectives. Oral Diseases 17(4):
345-354.
Steven,
A.W., Barton, E.S. & John, R.M. 2007. Laboratory
Investigations in Molecular Biology. Sudbury: Jones and Bartlett
Publishers.
Streckfus,
C., Bigler, L., Dellinger, T., Dai, X., Kingman, A.
& Thigpen, J.T. 2000. The presence of soluble c-erbB-2 in saliva and
serum among women with breast carcinoma: A preliminary study. Clinical
Cancer Research 6(6): 2363- 2370.
Tina, P., Justin,
C.W., Peter, B., Karam, K. & Chamindie,
P. 2011. Diagnostic potential of saliva: Current state and future application. Clinical
Chemistry 57(5): 675-687.
Wong, D.T. 2006.
Salivary diagnostics powered by nanotechnologies, proteomics and genomics. The
Journal of the American Dental Association 137(3): 313-321.
Zulham,
Y., Ikmal, M.J., Rohaya,
M.A.W., Intan Zarina, Z.A., Sahidan, S. & Shahrul Hisham, Z.A. 2013. Orthodontic treatment effects on
inflammatory marker profiles in saliva before and after 2 archwire changes. AIP Conference Proceedings 1571: 208-214.
*Corresponding
author; email: shahroy8@gmail.com