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01 February 2021 | Story Prof Felicity Burt, Prof Dominique Goedhals & Dr Sabeehah Vawda | Photo istock

Opinion article by Prof Felicity Burt, Prof Dominique Goedhals, and Dr Sabeehah Vawda, Division of Virology, Faculty of Health Sciences, University of the Free State and National Health Laboratory Service, Bloemfontein. 

As we optimistically embarked on a new year with hopes of seeing an end to the global pandemic, masks, and social restrictions, our news channels were consumed with stories about virus variants and vaccine roll-out. What do these variants mean and will the vaccines protect against the changes that have emerged in the virus and save us from the new normal?

The news of a ‘mutated’ virus most likely conjures movie-like images of an invisible, indestructible enemy causing massive disruption. The reality is fortunately much less dramatic, as these changes are actually expected. Just to reiterate, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has an RNA genome that codes for all the proteins which the virus produces. The exact details of how the virus replicates and produces new progeny, although of interest, are beyond the scope of this article. It is sufficient at this point to merely acknowledge that, during replication, the mechanism employed by viruses with an RNA genome allows for the introduction of mutations in the genes that code for the viral proteins. This is expected to occur and there is substantial evidence that the SARS-CoV-2 viral genes have evolved and adapted globally. Some mutations are silent, in other words, they do not change the viral proteins. However, in some instances the changes can affect the proteins encoded by the virus. If these changes occur in regions of the protein responsible for binding to the cell receptors that facilitate entry of the virus into the cell, or in regions of the protein that induce an immune response, the virus may show new characteristics, such as more successful transmission or escape from an existing immune response. 

Second wave of infections

South Africa and the United Kingdom are probably the two countries globally that have methodically sequenced the largest number of SARS-CoV-2 viruses isolated from patients. This technique allows the determination of the complete genome of each isolate and subsequent comparison, using bioinformatic software specifically designed to compare and identify changes and mutations in the nucleotide sequences. As we are all now aware, scientists in these two countries have identified virus variants with an accumulation of mutations and deletions occurring in the gene that encodes for the viral spike protein associated with binding to cell receptors and inducing protective immune responses. These variants have now become the predominant lineages circulating within local communities. 

In December 2020, scientists in South Africa revealed the presence of a variant of concern (VOC), now referred to as 501Y.V2. Sequence data confirmed that this variant initially emerged in October 2020, and by January 2021 it was present in multiple provinces in the country and is considered to be responsible for a significant number of cases occurring in the second wave of infections in the country. A second VOC reported by scientists in the United Kingdom in December 2020, (202012/01) likely emerged during September 2020. A third VOC has been reported from Brazil and is simply known as variant P1. To date, variant 501Y.V2 has been reported from at least 23 countries. VOC 202012/01 has been reported in at least 60 countries, and although the cases were initially associated with travellers, there is an increasing number of clusters of cases occurring in people with no history of travel. The United States, Israel, and India currently have the highest number of cases associated with this variant outside of the UK, keeping in mind that at the rate at which the pandemic unfolds, these statistics quickly become outdated. In contrast, variant P1 has only been reported from Brazil, and outside of Brazil it has been associated with travellers in a small number of countries. 

Immune responses

Changes in viral proteins may or may not influence certain characteristics of a viral infection. Current epidemiological data and modelling have all suggested that the VOC circulating in South Africa and the UK are more transmissible than previous lineages of the SARS-CoV-2. Despite the increased transmissibility, to date the severity of illness and the proportion of severe disease in different age groups appear to be unaffected by the changes in the protein. The increased transmissibility has increased the burden on the public and private health systems, emphasising the importance of rolling out a vaccine to healthcare workers and persons at increased risk of severe illness. 

The changes in the spike protein responsible for inducing immune responses have sparked research studies to determine whether the vaccines will be able to protect against the new variants.  It must be remembered that there are two arms to the immune response with complex interactions, and that natural protection will likely be a combination of responses. However, the presence of antibodies that neutralise the virus, in other words, block it from entering cells, and the ability of these neutralising antibodies to block new variants from entering the cells, can be investigated in the laboratory. Although the exact responses required for protection are not fully understood and will require studies that take more time to complete, an indication of neutralising capacity provides some information with regard to the potential efficacy of the vaccine against variants. What we currently know from laboratory research is that there is a reduction in the ability of antibody from people previously infected during the first wave of cases to neutralise the new variant circulating in South Africa. This reduction varied among the cohort of samples tested, but overall, there was a weaker neutralising capability. Similar results were demonstrated using pseudoviruses representing the variant virus. Studies looking at antibodies in people who have been vaccinated show similar reductions in neutralisation. The answer is unfortunately not clear at this stage, with many pieces of the puzzle still to be determined. The reduced capacity to neutralise in a laboratory was not what we wanted to hear, but it must be remembered that vaccines induce a broad immune response and not only neutralise antibody, and hence there are other components to the immune response that will likely contribute to protection. Nonetheless, even a reduced immune response will contribute towards vaccine-induced herd immunity and saving lives by preventing severe disease. 

Vaccine trials

In addition to the vaccines currently in use, results were released from clinical trials using vaccines from Novavax and Johnson & Johnson. Although a lower efficacy was shown among the South African population compared to results obtained in the UK, the efficacy was still in the region of 57% to 60%, which is certainly encouraging in view of the new variant circulating. The differences observed illustrate the importance of conducting vaccine trials in local populations. An efficacy of 60% will still contribute towards herd immunity and the prevention of severe disease, emphasising the importance of a rapid roll-out and hopefully a high uptake of the vaccine. Vaccination will not only protect the vaccinee but should contribute to minimising the risk of further variants emerging. 

The roll-out of vaccine, further research on immune responses in vaccinated communities, epidemiological data, and sequence data will all contribute towards monitoring the evolution of the outbreak. Flu vaccines are modified annually and if the COVID-19 vaccine needs to be modified, manufacturers have the capability to do this, and some have already started this process. 

Additional waves of infection are predicted to occur until herd immunity can be achieved. Whether the current variants will be responsible for the next wave is not possible to predict, and continued research analysing the gene sequences of future isolates will play an important role in determining how the virus is evolving. 

In the interim, until we have sufficient vaccine-induced herd immunity to provide protection, non-pharmaceutical interventions and human behaviour will continue to play the important role of minimising new infections. To quote CS Lewis: “You can’t go back and change the beginning, but you can start where you are and change the ending.”

 

News Archive

Graduates challenged to fulfil their leadership obligations
2017-12-08


 Description: 2017 December summer graduation Tags: 2017 December summer graduation 

Photo: Johan Roux

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6 December: Morning
6 December: Afternoon
7 December: Morning
7 December: Afternoon

A total number of 1 226 qualifications, including diplomas, certificates, and degrees, were conferred during the two days of the 2017 End-of-Year Graduation Ceremony which took place on the Bloemfontein Campus of the University of the Free State (UFS). Forty doctorates and 109 master’s degrees were awarded. Most doctorates (19) were awarded in the Faculty of Natural and Agricultural Sciences which  also conferred the biggest number of master’s degrees (27).

Celebrating excellence
Some of the highlights at this year’s graduation ceremonies were when the university honoured Prof Paul Holloway and Marius Botha with honorary doctorates and Joyene Isaacs with the Chancellor’s Medal. 

Isaacs, Head of the Department of Agriculture in the Western Cape, who was nominated by the Centre for Sustainable Agriculture in the Faculty of Natural and Agricultural Sciences for the Chancellor’s Medal, said: “Agriculture is one of those areas people take for granted. With this medal, agriculture can come to the fore. Agriculture is placed in the spotlight and it is important for this country, but also globally, because we look after the food supply. For me agriculture has been a sustainable livelihood but also a career. Everything about agriculture excites me! I hope that through this award I can take agriculture to the next level.”

Prof Holloway, internationally acclaimed expert in the science and technology of surfaces, thin films, and nanoparticles, who received the Honorary Doctorate in Science degree, said: “This award recognises the efforts we (the UFS and the University of Florida in the US) have jointly developed. We introduced the UFS to phosphors and today it (the UFS) has world-wide recognition expertise in this field. We also learnt from them. They brought us technology we did not have before. It was a mutual growth technique and we all benefit from that. If you work together you can achieve remarkable things.”

“It is the greatest honour of my life. I’ve been associated with the UFS for 17 years in the capacity of moderator, examiner and sometimes lecturer.” These were the words of Botha, author and expert in the financial planning circles of South Africa who was nominated for an honorary degree by the School of Financial Planning Law.

Botha told graduates that a qualification in the financial planning field would give you many opportunities. “If you enter almost any financial services organisation in South Africa, you will find senior people there that completed the postgraduate diploma in Financial Planning Law at the UFS,” he said.

During a luncheon that was hosted by Prof Francis Petersen, the UFS Rector and Vice-Chancellor, in honour of these esteemed graduates, he thanked them for the contribution they had made, not only for the UFS, but for advancing science, technology, and the better of society. “The Honorary degrees and Chancellor’s Medal are the highest accolades and recognition that the university can bestow on individuals who have excelled in science or scholarship or have contributed to service to this country. You are exemplary individuals and you make the UFS, our country and the world proud,” he said. 

 Description: 2017 Summer Graduation read more Tags: 2017 Summer Graduation read more 

Photo: Johan Roux

Inspiration for the future
Likeleli Monyamane, a UFS Council member, addressed graduates during the morning ceremony on 6 December 2017. She motivated graduates to walk tall and learn to serve our country. “Finding your voice comes with a responsibility to speak for those who do not have a voice,” Monyamane said. 

Leah Molatseli, who launched South Africa’s first legal e-commerce website, Lenoma Legal, was the guest speaker at the afternoon session on 6 December 2017. “You are going to start afresh. It is going to feel like you know absolutely nothing and it’s ok. You need to make peace with that in order for you to learn. 

“A lot of young people expect instant success when they enter a job. I am 29 and have had three jobs, two side jobs and numerous certificates. But I decided to create my own future. That is what I did with Lenoma Legal. Some people are meant to be ordinary and some extraordinary,” said this young entrepreneur and Kovsie Alumnus.

On the second day of the graduation ceremonies Dr Imtiaz Sooliman, founder and Director of the Gift of the Givers Foundation, challenged the newly graduated alumni to be carriers of hope for Africa. “We need people of skill, spirituality and heart,” he said. 

“How do you want others to believe in you if you don’t believe in yourself? We South Africans, we can make things happen. Believe in yourself,” he said. 

“The best science you can do is for others. The moment you achieve that, you mean something to someone,” he said. 

Prior to dissolving the congregations, Dr Khotso Mokhele, the Chancellor of the UFS, said: “It has taken hard work, commitment, dedication, to walk across the stage. You deserve all of that.” 

Interesting facts of the graduation
Among the graduates at these ceremonies was former Miss World 2014, Rolene Strauss. She received a Bachelor of Medicine and Bachelor of Surgery Degree. 

The Faculty of Natural and Agricultural Sciences is also very proud of the first group of BAgric students who graduated on the Agricultural College Programme. The eight agriculture students all received the Bachelor of Agriculture degree, majoring in Agricultural Management.

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