Contact Form

Name

Email *

Message *

Showing posts with label SLT. Show all posts
Showing posts with label SLT. Show all posts

Friday, 26 June 2020

SLT Profession; Setting the Record Straight

Over the years, there has been a lot of misconception and  mis-information about this noble profession some of which are from member of a sister profession who perceived SLT profession as one of their  rivals and thus chooses to be their die hard enemy, others are  from those that are doing it out of  ignorance and lack of knowledge due to the multidisciplinary nature of the profession.

However, this article will help in providing illumination to several aspects of this profession which appear shady and needs greater illumination.
Based on the arguments of some people who will erroneously  say that SLT  is not a professional career, I will like to start from the definition of a profession and we will thereafter set the ball rolling.         Merriam Webster Dictionary defined a Profession as “a calling requiring specialized knowledge and often long and intensive academic preparation”. 
According to the information available on Wikipedia, the term “Professional” is used to describe the standards of education and training that prepare members of the profession with the particular knowledge and skills necessary to perform their specific role within that profession. In addition, most professionals are subject to strict codes of conduct, enshrining rigorous ethical and moral obligations which are setup and agreed upon by the governing body or Council of the Professional body.
With the above explanation ,  what makes a course or career a professional one includes but not limited to:
√ Intensive and specialized training (in School and during working period)
√ Practical approach in their Academic system
√ Regulatory Body and Professional Association
√ Ethical and Moral obligations guiding members 
√ Establishing Act by the government

Picking them one after the other, I will explain briefly how SLT Profession meet and surpasses all the listed above.
For you to be licensed as a chartered Science Laboratory Professional, you must have  concluded a five (5) years B.sc or B.Tech degree in the university or spend five (5) years cumulative in a polytechnic ( two  years OND, one year Industrial Training and two years for HND). Either in the Polytechnic or University, everyone must have undergone rigorous and intensive training program before they can graduate. It is a specialized program with a robust curriculum that equips them for the task ahead. This I will like to discuss in detail in the subsequent parts of this article.
Talk of practical approach, there is no doubt that everyone who had accessed  SLT training program either in university or polytechnic will agree to the fact that the curriculum contains an in-depth practical skills and techniques. Aside the several hours they will spend in the laboratory and on the field for these practical courses, the six month  SIWES and a year I.T program is another great exposure to  the practical aspect of this profession.

In line with the specialized training  of SLT  graduates, they come out with competency  under different sectors such as clinical sector with options such as Biomedical technique, physiology and pharmacology technique, histology and cytology technique, Microbiology/virology technique etc; Biological sector with options in Biochemistry technique, microbiology technique, Biotechnology technique, biological technique etc; Agricultural/Environmental sector such as Aquaculture technique, Aquaculture and fishery technique, plant science technique, environmental biology technique, environmental science technique, marine science technique, hydrobiology/ fishery technique etc; Physical/ natural sector with options such as Applied Geology technique, Geology and Mining technique, Geology technique etc; Chemical/ Petrochemical sector having options like Industrial chemistry/petroleum technique, applied chemistry technique etc; Engineering Technology sector with options in Physics with production, Physics and Electronics Engineering etc.

These had made  SLT profession to be so viable and a necessity  in every sector of the economy among which are medical, pharmaceutical , engineering , oil and gas, environmental,  agricultural  and in all ministries where laboratory services are found.

The Nigeria Institute of Science Laboratory Technology (NISLT) is the regulatory agency established by the act of parliament which was enacted into law in the year 2003. On the professional Association, the same act identified and put into existence the Association of Science Laboratory Technologist of Nigeria (ASLTON). The Institute which has it headquarters in Ibadan and Abuja is charged amongst other roles, the responsibility of advancing the Science Laboratory Technology Profession in the country.
Both NISLT and ASLTON have ethical and moral guidelines in form of code of conducts which must be complied with by all practicing and licensed members. The guiding principles, most of which has been fully introduced and learned while they are in school will help to discharge the duties of the profession with all fairness and high level of excellence.
Lastly, as earlier stated that the profession is duly backed up by the act of government. The Nigeria Institute of Science Laboratory Technology (NISLT) Act 2003 was assented to by the then President Olusegun Obasanjo and had since then become the legal backing of this noble profession. You can easily visit any of the search engine to get a copy while you can also get one from the NISLT website www.nislt.gov.ng. You will see clearly how the act fully describe the existence of  SLT in detail.
It’s time to correct the erroneous impression of this profession with this informative piece. We are distinguished and our profession is a great one  indeed.

Written by
Peter Oni (Biochemistry Technique)

Contributors
Akpede Akpevwe (Biomedical Technique)
Olagbaju Olugbenga (Geology & Mining Technique)

Monday, 18 May 2020

THE ROLE OF A SCIENCE LABORATORY TECHNOLOGIST IN THE RACE FOR A VACCINE FOR COVID 19.

CHIEF IRIKEFE AKPORIDO (B.sc. SLT. BIOLOGICAL TECHNOLOGY -DELSU., M.sc PUBLIC HEALTH -U.S.A, F.NISLT, NISP, NEBOSH, APHA AND SOPHE MEMBERSHIP-#31682).


Vaccine developers are fast-tracking new constructs of various kinds—traditional vaccines, RNA vaccines, DNA vaccines, and others, in hopes of catching up with COVID-19, the deadly respiratory disease that already circles the globe. Developers are also interested in trying to trip up COVID-19 by repurposing vaccines already developed to counter pathogens like SARS-CoV-2. The worldwide scientific mobilization to produce a SARS-CoV-2 vaccine has become a race against time and an escalation in the heated rivalry among competing companies. All are scrambling toward the same goal: producing a vaccine against a viral menace that emerged in central China late last year and is now circling the globe.

As at today 12th May 2020, more than 2 million people around the world had become infected with covid 19, and unfortunately over 4 thousand of these infected people are from my home country NIGERIA., also global deaths had already breached the 100,000 mark, and over a 100 of them are also from my country NIGERIA according to report from the Nigeria Center For Disease Control (NCDC), with no end to the pandemic’s exponential growth in sight. It will be months, before laboratory technologist and public health officials say or known whether either of the vaccines entering clinical trials will be widely used to effectively immunize populations against SARS-CoV-2. Multiple other candidate vaccines are being studied by research teams globally, and several are set to be launched into clinical testing within the next few weeks to months.

Finding a safe and effective vaccine to prevent an increase in the spread of SARS-CoV-2 infection is an urgent laboratory technologist and a public health officer's priority. it is impossible to give a precise date when a vaccine will be ready for what will amount to tens of millions of immunizations. The types of SARS-CoV-2 vaccines under development worldwide are mostly genomic, DNA or RNA. However, the novel coronavirus differs in subtle, yet significant ways compared with previous members of the coronavirus family, SARS-CoV-1 and Middle East respiratory syndrome–related coronavirus (MERS-CoV). These viruses seem to primarily infect the lower respiratory tract, and lightly makes it difficult to spread between humans. But the new SARS-CoV-2, however, seems to replicate well in the upper respiratory tract, grows there quickly to high viral loads, and is able to spread between humans, who transmit it simply by droplets produced during breathing and coughing.

Therefore in conclusion, if all proceeds as planned, the federal government of Nigeria, through the institute of science laboratory technology, under the federal ministry of science and technology, should immediately make available an estimated sum of $9million or more to support science laboratory technology preclinical and clinical research work. This fund will be used to setup a vaccine development plant, which will accelerate vaccine production and testing in Nigeria.

Feel free to forward any question you might have to the email below or call the number to ask your question.
Thank you.

M.D IRIKEFE CORPORATE SERVICES

YOU CAN LIKE OUR FACEBOOK PAGE : IRIKEFE CORPORATE SERVICES 

Irikefeman@yahoo.com

Sunday, 4 August 2019

Science Laboratory Technology Program in Nigeria


Science Laboratory Technology program is a course studied in polytechnics, colleges of Health Technology and universities.  It is studied in the united kingdom (UK),  South Africa, Indian, china,  Nigeria etc. In Nigeria,  it is offered in polytechnics and colleges of health technology leading to a diploma degree (OND & HND)  and in the university leading to a Bachelor of science (B.  Sc) or Bachelor of Technology (B. Tech) degree.

An SLT graduate with OND is classified uncategorised because at this level he/she is just unspecialised but as he/she further his/her studies (HND), he/she then chooses an option for specialization and focus on it. For university students their road path is almost similar though chooses hi/her option of specialization at the beginning of hi/her career,  will do same course content with his/her fellow counterparts till 2nd year before specialization in his/her 3rd, 4th and 5th year.  SLT in the university is a five (5) year course.

SPECIALISATION IN SLT INCLUDE
Aquaculture and fishery
Biological
Biomedical
Biochemistry
Biochemistry and chemical
Biochemistry and chemistry
Microbiology
Microbiology and virology
Microbiology and mycology
Chemistry
Chemical petroleum
Physics and electronic
Physics with production
Physiology and pharmacology
Zoology
Geology
Geology and mining
Industrial chemistry and petrochemical
Biology
Biotechnology
Plant science
Environmental science
Histopathology
Immunology and blood transfusion etc

The Science Laboratory Technology Program provides students with the necessary skills and techniques for standard everyday science laboratory work. Science Laboratory Technology Program focuses on the fundamental  and applied principles of the biological, chemical and physical sciences and emphasizes on analytical laboratory techniques and applications, specifically in the realms of physical and engineering (soil,  earth,  meteorological and atmospheric, Polymer, nanotechnology, radiological sciences),  chemistry (Petroleum, metals, chemicals,) and biology (clinical and life sciences, applied sciences, natural sciences, plant). The curriculum also enables students to explore a variety of laboratory testing techniques and to prepare and operate various types of tools and electronic analysis equipment.

 The Science Laboratory Technology Program prepares graduates for employment in chemical, biological, clinical,  pharmaceutical, agricultural and associated science laboratories.

The science laboratory technology fields of opportunity include chemical, biological, agricultural and food science, clinical and pharmaceutical  sciences, environmental science and prevention, forensic, water, petrochemical, electronical,  forest and conservation, geological, and energy technology area.

As a graduate of SLT, you should be proud of belonging to a multidisciplinary profession. Graduates are licensed to practice as certified laboratory scientist/technologist all over the country in any area where there is a laboratory. Registration with the regulatory body, Nigeria Institute of Science Laboratory Technology (NISLT) gives you the title of an Associate,  which is an equivalent of a Masters degree holder in the academic world.

SLT is not just a degree like most courses out there but a professional multidisciplinary course where you can't practice unless you are licenced.

This excerpts is written by:
Akpede Akpevwe
Biomedical technologist
Delta State.

Sunday, 4 November 2018

Good Clinical Laboratory Practices (GCLP)

By Disu Tajudeen

Laboratories are a fundamental source of scientific evidence critical for clinical and industrial research and decision making in clinical diagnostics, product development and improvement and patient care, and epidemiological responses. High quality laboratory results, from patients, epidemiological survey, clinical trials participants are a key part of the diagnostic, epidemiological response and clinical trial process.
They provide critical data that is used for evidence-based decision making about an investigational medicinal product’s safety, efficacy and mechanism of action, and to improve standard care. This data is also required to protect the health and safety of the patients and the participants involved. Because of this, it is essential that laboratories meet quality and management standards so that the results they produce are unbiased, accurate and complete.
GxP is a general abbreviation for the "good practice" quality guidelines and regulations. The "x" stands for the various fields, including the pharmaceutical and food industries.  
Examples of GxPs include but not limited to
· Good agricultural practice, or GAP
· Good automated laboratory practice, or GALP
· Good automated manufacturing practice, or GAMP
· Good clinical data management practice, or GCDMP
· Good clinical practice, or GCP
· Good cell culture practice, or GCCP
· Good clinical laboratory practice, or GCLP
· Good documentation practice, or GDP, or GDocP (to distinguish from "good distribution practice")
· Good engineering practice, or GEP
· Good hygiene practice, or GHP
· Good horticultural practice, or GHP
· Good laboratory practice, or GLP
· Good microbiological practice, or GMiP
· Good pharmacovigilance practice, or GPvP or even GVP
· Good pharmacy practice, or GPP
· Good policing practice, or GPP
· Good research practice, or GRP
· Good safety practice, or GSP
· Good tissue practice, or GTP
Good Clinical Laboratory Practice guidelines, first described in 2003 by the British Association of Research Quality Assurance (BARQA), were created to bridge the gap between guidelines for good clinical practice (GCP) and good laboratory practice (GLP)

Good Clinical Laboratory Practice (GCLP) is a set of standards that provide guidance on implementing Good Laboratory Practice (GLP) and Good Clinical Practice (GCP) principles to the analysis of samples from a clinical trial. GLP is a quality system that covers the organizational process and the conditions under which non-clinical laboratory studies are planned, performed, monitored, recorded, archived and reported (OECD 1998). This with the aim of promoting the generation of valid, high quality test data.
On the other hand, GCP is an international ethical and scientific quality standard for designing, conducting, performing, monitoring, auditing, recording, analyzing and reporting clinical trials that involve the participation of human subjects. Compliance with this standard provides assurance that the data and reported results are credible and accurate, and that the rights, safety and confidentiality of trial subjects are protected (ICH 1996 GCP Guideline).

By combining the GLP and GCP sets of guidelines, GCLP ensures the quality and reliability of the results and clinical trial data generated by laboratories. Consequently, GCLP is critical for diagnostic and clinical trial laboratory operations and it is expected that compliance with the GCLP standards, monitored annually by external audits, will help laboratories to maintain data integrity, provide safety to the personnel and related environment and produce effective results that are consistent, auditable, and repeatable. 
GCLP provides a bridge between GCP and GLP. It is also a framework in which organizations can base to develop facilities, systems and procedures that guarantee the laboratory work and results fulfil the GLP and GCP expectations.
GCLP encompass all aspects of clinical trial laboratory operations, namely: organization and personnel; facilities; equipment, materials and reagents; standard operating procedures; planning of the work; sub-contracting; trial materials; conduct of work; reporting results; quality control & quality audits; storage and retention of study records and reports; and confidentiality.

 There are many benefits to laboratories that are GCLP compliant, the main benefits include:
· Laboratory results (research or diagnostic) that are reliable, reproducible and auditable
· The incidences of false negatives and false positives are reduced
· Results are assured to be of the highest quality
· Results are comparable to those obtained in other compliant laboratories around the world
· Building the confidence of staff, sponsors and clients
· Resources are efficiently managed therefore minimizing waste
· Uniformity and standardization of systems
· International standards are generally followed and easily achieved ( ISO 15189)

Saturday, 3 November 2018

2018 Conference 34th Annual National Conference/Scientific Workshop



Theme: Science and Technology: A Competitive Edge for National Economic Development


Sub-Theme:
The Role of Science Laboratory Technology in the Bioprocess of Food and Allied Products: GMOs Inclusive
Empowering Science Laboratory Technology to Enhance S&T Services: A Fundamental Requirement

Venue:
Federal Polytechnic (North Campus), Ede, State of Osun, Nigeria

Date: From Nov 6, 2018 to Nov 10, 2018
Programme:
Tuesday 6th November, 2018

1. Arrival of Council Members, NISLT Officials, FMST Officials and  ASLTON Executives.

2. LOC Meeting with NISLT Management


Wednesday 7th November, 2018

1   Arrival of Conference Participants

2   Registration Starts at the Conference Venue

3   Courtesy Visits by Council Members, NISLT Management Team and FMST Officials to Important Dignitaries and Places in Ede

4   ASLTON Assembly



Thursday 8th November 2018

8.00 a.m.  - 10.00 a.m - Arrival and Registration continues

                                  - Tea break

10.00 a.m - 11.30 p.m - Conference Opening Ceremony/ Refreshment

11.30 p.m - 12.30 p.m - 1st Plenary Session

12.30 p.m - 1.30 p.m   - Lunch/Prayers

1.30 p.m   - 3.30 p.m   - 2nd Plenary Session

3.30 p.m   - 4.30 p.m   - Induction Ceremony



Friday 9th November, 2018

8.00 a.m   - 9.30 a.m - Tea break

9.30 a.m   - 12.30 p.m - Scientific Syndicate Sessions in Subject Groups

12.45 p.m - 2.00 p.m - Lunch

4.00 p.m   - 6.00 p.m - AGM



Saturday 10th November, 2018 – Departure

Accommodation:
There are affordable hotels around the conference venue. The list of hotels and prices will be uploaded soon.

Other Details:


HIGHLIGHTS

1. Plenary Sessions

2. Scientific sessions – Presentation of scientific research papers.

3. Exhibitions: Members, NISLT Branches, Suppliers of laboratory equipments and chemicals and other corporate organisations will have opportunity to exhibit their products, scientific inventions and innovations.

4. Annual General Meeting (AGM)



SUBMISSION OF ABSTRACTS

Members wishing to present scientific research papers should submit their abstracts which should be limited to one A4 size paper text only without figures, tables and references but containing titles, authors and co-authors full names i.e. surname, first name and other names, membership number (for members) and the main text. The main text should be single spaced text, Times New Roman 10 point and no sectional headings. The deadline for submission of abstracts is 28th September, 2018 and for actual paper is 19th October 2018. The actual paper must be in MS PowerPoint and submitted only after the acceptance of abstract by the ABSTRACT Review Committee. All papers should be sent as an attachment to the e-mail address: inform@nislt.gov.ng or enquiry@nislt.gov.ng. Only quality scientific papers will be accepted for presentation at the conference.



PAPER PRESENTATIONS

Authors whose papers are accepted will be allowed only ten minutes to present the highlights of their papers. The full paper earlier submitted will be projected for presentation. Papers not previously accepted will not be allowed for presentation at the



FOR FURTHER ENQUIRIES, PLEASE CONTACT:

The DG/Registrar/CEO

Nigerian Institute of Science Laboratory Technology National Secretariat,

P.O. Box 9764, U.I. Post Office, Ibadan.

(08030787747, 08062117814) e-mail: inform@nislt.gov.ng or enquiry@nislt.gov.ng





Dr. Abdulllahi K. Mu'azu

Assistant Registrar/Director Planning, Research & Development

NISLT, Samonda, Ibadan, Oyo State.

E-mail: naslton2002@yahoo.com Tel: 08023885161





Alh. Adiat S.A.

Chairman, LOC

Tel: 08030863940



Mr. Ben Festus

Secretary, LOC

Tel: 07030067492



Members' Registration Fees: =N=10,000.00
Non-Members' Registration Fees: =N=15,000.00

However, if you apply for this Conference and pay between Aug 1, 2018 and Aug 30, 2018, the fees would be as follows:
Members' Registration Fees: =N=10,000.00
Non-Members' Registration Fees: =N=15,000.00
Click Here to Apply for this Conference

PRESS RELEASE BY NISLT ON THE CONFERENCE