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   <dc:title>Cytotoxicity and gene expression of selected apoptotic markers in the human laryngeal carcinoma cell line (HEp-2) by Bulbine spp. fractions</dc:title>
   <dc:creator>Singh, Rishan</dc:creator>
   <dc:contributor>Reddy, Lalini</dc:contributor>
   <dc:contributor>Permaul, Kugen</dc:contributor>
   <dc:subject>Apoptosis</dc:subject>
   <dc:subject>Larynx--Cancer--Alternative treatment</dc:subject>
   <dc:subject>Cytology</dc:subject>
   <dc:subject>Genetics</dc:subject>
   <dc:subject>Gene expression</dc:subject>
   <dc:description>Dissertation submitted in fulfilment of the requirements for the Degree of Master of Technology: Biotechnology, Durban University of Technology, Durban, South Africa, 2013.</dc:description>
   <dc:description>Apoptosis, or programmed cell death, is a process which is pivotal in eliminating damaged,&#xd;
infected, or unwanted cells from the body. It has been studied in numerous types of cell lines&#xd;
ranging from normal to infected cell lines, and there have been a wide range of studies on&#xd;
apoptosis in laryngeal cancer because this type of cancer has become one of the most&#xd;
common types of head or neck cancer due to the high incidence of alcohol consumption,&#xd;
tobacco smoking and chewing of betel quid amongst populations. Laryngeal cancer is usually&#xd;
treated with radiotherapy or is surgically removed, but due to the loss of the function of the&#xd;
larynx after surgery, it has been suggested that alternative strategies or ways of treating&#xd;
laryngeal cancer are required. This has prompted the use of, and research in the field of, plant&#xd;
medicine to combat laryngeal cancer.&#xd;
Plant medicine has been used for centuries by the Chinese, Indian and Arabian population in&#xd;
Uhani, Ayurveda and Siddha as a form of replacing conventional medicine with&#xd;
complementary and alternative medicine, these include many plants from the family&#xd;
Asphodelaceae, which have become marketable commodities owing to their medicinal values&#xd;
and traditional uses. Amongst these plants, the genus Bulbine has been used as a form of&#xd;
natural medicine in rural Africa and they are also exploited for their aloe vera properties as&#xd;
well as their possession of phytochemical compounds such as isoflavanoids, nor-lignans,&#xd;
naphthalene derivatives, anthracene and poly prenylated flavonoids. There has been a&#xd;
compelling amount of literature on the traditional uses of the Bulbine spp. because these are&#xd;
linked to the Bulbine spp. having secondary metabolites such as pyroles, chromones,&#xd;
coumarins, bianthraceane, benzene as well as alkaloids. However, for Bulbine natalensis and&#xd;
B. frutescens, the plants of interest in this study, the location of anticancer compounds in&#xd;
them are the only amounts of information available. It has been reported, traditionally, that B.&#xd;
natalensis possesses the anticancer potential in the roots, while the anticancer potential for B.&#xd;
frutescens is in the leaves. However, this requires scientific clarification. Therefore, this study&#xd;
was conducted to assess programmed cell death or apoptosis by analysing the responses of&#xd;
the human laryngeal carcinoma cell line (HEp-2) to crude aqueous and organic (50% and&#xd;
100% ethanol) fractions of B. natalensis and B. frutescens. In order to have achieved this, the&#xd;
HEp-2 cell line was exposed to the above mentioned fractions at three different final&#xd;
concentrations (20, 2 and 1μg/ml) and assessed for cytotoxicity using the 3-(4,5-&#xd;
dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) cytotoxicity assay as an&#xd;
indicator of cell death after fraction utilisation (3 days) for 5 and 8 days. The differences in&#xd;
the potency of the Bubline spp. fractions were confirmed using the non-parametric ANOVA&#xd;
test. Thereafter, selected fractions were screened for apoptotic potential using reverse&#xd;
transcriptase-polymerase chain reaction (RT-PCR) to determine the expression of bax and&#xd;
caspase-3 biomarkers, which are the biomarkers that participate in mitochondrial,&#xd;
endoplasmic reticulum and receptor-ligand mechanism of apoptosis. The fractions of B.&#xd;
frutescens were selected relative to those of B. natalensis for the RT-PCR procedure (read&#xd;
section 3.4.1. for the selection procedure) and links between the cytotoxicity and gene&#xd;
expression results were analysed.&#xd;
It was found that the B. natalensis fractions had a much greater cytotoxic effect on the HEp-2&#xd;
cell line compared to fractions of B. frutescens by the fifth day of the MTT assay. On the&#xd;
eight day of incubation, there was an increase in HEp-2 cell line proliferation by the fractions&#xd;
of both plant species administered. The fractions selected for bax and caspase-3 gene&#xd;
expression analysis for B. natalensis were the: 20 μg/ml root and corm aqueous fractions, 20&#xd;
μg/ml leaf and corm 100% ethanol fractions, 20 μ g/ml corm 50% ethanol fraction, 2 μg/ml&#xd;
root aqueous fraction, 2 μg/ml leaf 100% ethanol fraction and the corm 1 μg/ml aqueous and&#xd;
50% ethanol fractions. The fractions that were compared to B. natalensis were the 20 μg/ml&#xd;
root and leaf aqueous and 100% ethanol fractions respectively, the 2 μg/ml root aqueous&#xd;
fraction and the 2 μg/ml leaf 100% ethanol fraction. It was found from RT-PCR analysis that&#xd;
all of the B. natalensis fractions tested induced expression of caspase-3, which indicated that&#xd;
those fractions were capable of inducing apoptosis in laryngeal carcinoma in vitro, since&#xd;
caspase-3 is the molecular indicator of apoptosis. The aqueous B. frutescens root fraction, did&#xd;
not induce expression of caspase-3 gene, although it caused expression of bax. This implied&#xd;
that the root aqueous B. frutescens fraction, may be involved in some other form of cell&#xd;
death, other than apoptosis. It was also found that there was variability in the response of the&#xd;
HEp-2 cell line to the Bulbine spp. fractions because of the variation in bax expression among&#xd;
fractions of different concentration. It was difficult, from this study, to classify fractions into&#xd;
categories for their mechanism of action, because not all of the fractions that caused the&#xd;
expression of capase-3, induced bax gene expression. Hence, proper conclusions were unable&#xd;
to be made, more so, because all the mechanisms of apoptosis mentioned, involve bax gene&#xd;
activation in order to proceed to completion. Therefore for those Bulbine spp. fractions to&#xd;
which the HEp-2 cell line exhibited a variable response to, it was postulated that cell death or&#xd;
apoptosis occurred through some other unknown mechanism. Overall, the cytotoxicity result&#xd;
didn’t correlate to the gene expression results because fractions that promoted HEp-2 cell line&#xd;
growth by day five, expressed apoptotic markers, which highlighted the sensitivity and&#xd;
accuracy of the cells-to-cDNATM II kit for detecting a few possibly apoptosed cells. This was&#xd;
confirmed by the fact that the HEp-2 cell line used in the MTT cytotoxicity assay and gene&#xd;
expression study had the same passage number and were viable, the latter being achieved&#xd;
because the MTT assay only measures the cytotoxicity of compounds once they have been&#xd;
taken up by viable cells – measuring mitochondrial activities expressed as absorbances.&#xd;
Therefore, the deduction that HEp-2 cell death may be due to bax/caspase-3 expression was&#xd;
valid because the mRNA was isolated from viable HEp-2 cells that had been killed by&#xd;
Bulbine spp. fractions of different polarity. Furthermore, the lack of correlation between the&#xd;
cytotoxicity and gene expression results indicated the amount of HEp-2 cell line proliferation&#xd;
by the fraction out-competes those that died, thereby producing a negative cytotoxicity result.&#xd;
There was a relationship between the traditional information about the anticancer potential&#xd;
for B. natalensis and B. frutescens. For example, the aqueous root fractions of B. natalensis&#xd;
were found to be non-toxic to the HEp-2 cell line, but did express caspase-3, which indicated&#xd;
the possibility of apoptosis. Similarly, the 100% ethanol leaf B. frutescens fractions were&#xd;
non-toxic to the HEp-2 cell line, but were able to induce apoptosis as well. This emphasised&#xd;
that the MTT cytotoxicity assay should be compared with other methods of measuring&#xd;
cytotoxicity when performing studies like this, because although literature has emphasised&#xd;
many advantages of using the MTT cytotoxicity assay in apoptotic studies, this study proved&#xd;
otherwise.&#xd;
When identical HEp-2 cells were treated with the same extract, only some cells were killed&#xd;
(apoptosis) whereas others proliferated. This was because although the cells were identical&#xd;
phenotypically, they were all probably at different phases of the cell cycle resulting in the&#xd;
HEp-2 cells responding variably to the same fraction at different concentrations. It was also&#xd;
found that the responses were concentration independent. For example, the 1 μg/ml B.&#xd;
natalensis corm fraction exhibited the highest toxicity of the three concentrations&#xd;
administered. The lowest cytotoxicity was achieved for the 20 μg/ml fraction – showing a&#xd;
proliferative effect on the HEp-2 cell line. Similarly, the 2 μg/ml aqueous B. natalensis leaf&#xd;
fraction induced the highest cytotoxicity level in the HEp-2 cell line followed by the 1 μg/ml&#xd;
and then the 20 μg/ml fractions. Apart from the genetic variation in identical HEp-2 cells;&#xd;
this indicated that the HEp-2 cell line was selective to particular fractions of the Bulbine spp.&#xd;
for utilisation. Concentration independence and HEp-2 cell preferential selection has been&#xd;
reported in many other studies involving plant fractions/extracts and natural products.&#xd;
This study demonstrated that although all the tested B. natalensis fractions were capable of&#xd;
inducing HEp-2 cell death possibly via. apoptosis (caspase-3 induction), a lack of any link&#xd;
between apoptosis and the cytotoxicity results (hence the 20 μg/ml corm fraction had a&#xd;
negative cytotoxicity but expressed both apoptotic markers), indicated the need for&#xd;
phytochemical screening of both Bulbine spp. in future, to determine the compounds that are&#xd;
responsible for the cytotoxicity and gene expression result outcomes of both Bulbine spp.&#xd;
fractions. Furthermore, procaspase genes also have to be analysed since genes are expressed&#xd;
to form procaspases, which then form active caspases.&#xd;
Although normal cells also express caspase-3 genes during apoptosis, this study focused&#xd;
exclusively on the effect of Bulbine natalensis and B. frutescens fractions (selected relative to&#xd;
the cytotoxicity results of B. natalensis) on the HEp-2 cell line (read cell culture and&#xd;
cytotoxicity discussion for selection of HEp-2 cell line). The validity of this study is&#xd;
confirmed by similar experimental designs that assayed the cytotoxicity of plant-derived or&#xd;
natural compounds on cancer cell lines only, and the detection of apoptosis through caspase-&#xd;
3 induction and other unrelated methods. This is the first study to report the induction of&#xd;
apoptosis in cancer cell lines by Bulbine spp. fractions using cytotoxicity and the expression&#xd;
of bax and caspase-3 apoptotic markers. It provides insight into the interaction between the&#xd;
HEp-2 cell line and the aqueous and organic fractions of B. natalensis and B. frutescens by&#xd;
analyzing links between cytotoxicity and bax and caspase-3 gene expression; which could&#xd;
probably contribute to drug design with selected Bulbine spp. fractions. Further investigations&#xd;
are required in future, to confirm the possible drug targets of the studied Bulbine spp.&#xd;
fractions in an attempt of assaying their therapeutic importance.</dc:description>
   <dc:description>National Research Foundation</dc:description>
   <dc:description>M</dc:description>
   <dc:date>2013-07-30T07:25:50Z</dc:date>
   <dc:date>2014-02-11T12:32:57Z</dc:date>
   <dc:date>2013-07-30</dc:date>
   <dc:type>Thesis</dc:type>
   <dc:identifier>447423</dc:identifier>
   <dc:identifier>http://hdl.handle.net/10321/878</dc:identifier>
   <dc:identifier>https://doi.org/10.51415/10321/878</dc:identifier>
   <dc:language>en</dc:language>
   <dc:format>204 p</dc:format>
   <dc:format>application/pdf</dc:format>
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