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SIWES REPORT FOR DEPARTMENT OF MEDICAL LABORATORY SCIENCE, CHEMISTRY AND BIO SCIENCE

Format: MS WORD  |  Chapter: 1-5  |  Pages: 59  |  3455 Users found this project useful  |  Price NGN5,000

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SIWES REPORT FOR DEPARTMENT OF MEDICAL LABORATORY SCIENCE, CHEMISTRY AND BIO SCIENCE

 

CHAPTER ONE

INTRODUCTION

1.1 Background of the Study

Tissue processing is a crucial step in histopathology, ensuring that biological tissues are preserved, embedded, and prepared for microscopic examination. Traditionally, xylene has been the gold standard clearing agent in tissue processing due to its high efficacy in clearing tissue blocks. However, xylene has been identified as a hazardous substance with potential adverse effects on health, including respiratory problems, headaches, dizziness, and long-term risks such as kidney and liver damage (Adeyemi et al., 2019). The search for safer and more environmentally friendly alternatives has thus become an area of focus in biomedical research.

The use of kerosene and olive oil-proportioned mixtures has emerged as a potential alternative to xylene. This combination promises to mitigate the toxic effects associated with xylene, especially for individuals working in histopathology laboratories (Chukwu et al., 2020). Kerosene, which is widely available and cost-effective, and olive oil, a natural product, could provide a safer alternative while maintaining the integrity of tissue samples. Various studies have examined alternative clearing agents, but the combination of kerosene and olive oil has not been extensively explored in tissue processing (Ogunyemi et al., 2021).

Histological clearing agents play a critical role in tissue processing by removing alcohol from tissue blocks and rendering them transparent, thus allowing for paraffin infiltration (Udo et al., 2021). While xylene has been the predominant agent, its toxicity has prompted a need for less hazardous alternatives. Research indicates that certain natural oils, like olive oil, can act as suitable clearing agents when mixed with other compounds like kerosene. Olive oil is biocompatible and less likely to cause the adverse reactions often associated with synthetic chemicals (Ibekwe et al., 2022).

Kerosene, a petroleum-based substance, is often used in household settings, but it also has a role in various industrial applications. In histopathology, its low viscosity and ability to penetrate tissues make it a viable candidate as a clearing agent when used in the appropriate proportions with olive oil (Nkwocha et al., 2021). Studies have shown that kerosene has sufficient clearing capabilities, although its use in medical applications must be carefully controlled to avoid any adverse effects (Ezeh & Ugwuanyi, 2023). The kerosene and olive oil mixture offers the advantage of reducing xylene usage without compromising tissue quality.

Olive oil, known for its antioxidant and anti-inflammatory properties, adds a natural element to this mixture. Its use in biomedical applications, particularly in non-invasive treatments, is well-documented (Olaniyi et al., 2020). Olive oil's ability to mix with kerosene provides an effective clearing medium that could replace more toxic options. Additionally, olive oil’s viscosity and clarity enhance the tissue processing outcome by maintaining the tissue’s morphology and allowing for clear microscopic observation (Adewole et al., 2022).

The introduction of kerosene and olive oil-proportioned mixtures into tissue processing is timely, given the increasing global focus on safety in laboratory environments. Regulatory bodies have expressed concerns about the long-term exposure of lab workers to chemicals like xylene, which necessitates a shift towards safer alternatives (Nwoke et al., 2019). As the healthcare industry continues to adopt environmentally friendly and health-conscious practices, the use of kerosene and olive oil mixtures could offer a viable and sustainable solution in histological procedures (Adetola et al., 2021).

Early results from experiments comparing the efficacy of kerosene/olive oil mixtures with xylene indicate that the alternative mixture provides comparable tissue clarity and preservation (Chinedu et al., 2023). These findings suggest that laboratories, particularly in low-resource settings, could adopt this mixture to minimize health risks and reduce costs associated with xylene disposal. While more comprehensive studies are required, initial data supports the feasibility of using this alternative in routine histopathological procedures (Uzochukwu et al., 2023).

In conclusion, the search for safer and more cost-effective clearing agents in tissue processing is ongoing. The kerosene and olive oil mixture represents a promising alternative to xylene, offering similar effectiveness while significantly reducing health hazards (Osagie et al., 2023). By transitioning to this alternative, histopathology laboratories can protect their workers' health and contribute to safer environmental practices, making it a significant advancement in tissue processing.

1.2 Statement of the Problem

Xylene, although effective, poses considerable health risks to laboratory personnel due to its toxicity. Prolonged exposure to xylene can result in a range of health issues, including neurological effects, respiratory problems, and potential carcinogenicity (Adeyemi et al., 2019). As the awareness of occupational health hazards grows, there is an urgent need to identify safer alternatives for tissue processing. The use of kerosene and olive oil-proportioned mixtures as an alternative clearing agent presents a possible solution to this issue. However, there is limited research on the effectiveness of this mixture in maintaining the clarity and integrity of tissue samples, making it necessary to explore its potential as a viable substitute for xylene (Chukwu et al., 2020). This study aims to fill that gap by evaluating the efficacy of kerosene and olive oil mixtures in tissue processing.

1.3 Objectives of the Study

The main objective of this study is to determine the effectiveness of kerosene and olive oil-proportioned mixtures as alternative clearing agents in tissue processing.

Specific objectives include:

i.               To evaluate the impact of kerosene/olive oil mixtures on tissue clarity compared to xylene.

ii.              To determine the safety and health implications of using kerosene/olive oil mixtures in histopathological laboratories.

iii.             To find out the cost-effectiveness of using kerosene/olive oil mixtures as an alternative to xylene in tissue processing.

1.4 Research Questions

i. What is the impact of kerosene/olive oil mixtures on tissue clarity compared to xylene?

ii. What is the safety and health implication of using kerosene/olive oil mixtures in histopathological laboratories?

iii. How does the cost-effectiveness of kerosene/olive oil mixtures compare to xylene in tissue processing?

1.5 Significance of the Study

This study will contribute to the field of histopathology by providing an alternative solution to the use of xylene in tissue processing. By identifying the potential of kerosene and olive oil mixtures as clearing agents, the study could help reduce the health risks associated with xylene exposure in laboratory environments (Nkwocha et al., 2021). Furthermore, the study could encourage the adoption of more sustainable and cost-effective practices in histopathological procedures, particularly in low-resource settings (Adetola et al., 2021). The findings could also inform policy changes regarding the use of hazardous chemicals in laboratories, promoting safer work environments (Uzochukwu et al., 2023).

1.6 Scope of the Study

This study focuses on evaluating the effectiveness of kerosene and olive oil-proportioned mixtures as alternative clearing agents in tissue processing. The research will be limited to histopathological procedures that involve tissue clearing, comparing the mixture's performance with that of xylene. The study will also assess the safety, health implications, and cost-effectiveness of using this alternative clearing agent. It will be conducted in selected histopathology laboratories where the kerosene/olive oil mixture can be tested in real-life scenarios (Osagie et al., 2023).

1.7 Limitations of the Study

One of the limitations of this study is the availability of resources to conduct extensive laboratory tests across multiple facilities. The study will be limited to a few selected laboratories, which may affect the generalizability of the findings. Additionally, the study will rely on existing laboratory personnel's compliance with the alternative mixture, which could introduce variability in the results (Chukwu et al., 2020). Finally, the long-term effects of kerosene and olive oil on tissue integrity will not be fully explored in this study due to time constraints (Ibekwe et al., 2022).

1.8 Definition of Terms

Clearing Agent: A chemical used in tissue processing to render tissue transparent and allow for paraffin infiltration (Udo et al., 2021).

Kerosene: A flammable hydrocarbon liquid used in various industrial and household applications (Ezeh & Ugwuanyi, 2023).

Olive Oil: A natural oil extracted from olives, used in both culinary and medical applications (Olaniyi et al., 2020).

Tissue Processing: The procedure used to prepare biological tissue for microscopic examination, involving fixation, dehydration, clearing, and embedding (Adeyemi et al., 2019).

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