Monday, 25 October 2021

Types of PCR Workstation

PCR workstation are designed to keep sensitive PCR amplification and manipulation of DNA or RNA free of contamination. PCR cabinets and hoods are useful additions to the molecular biology and genomics lab because they reduce cross-contamination, which reduces incorrect findings. UV sterilisation and overlapping seams or seamless construction ensure that hazardous energy does not leave the chamber.

Laminar flow and dead air are two types of PCR workstations or PCR hoods that help the researcher by reducing background and cross-contamination. Laminar Flow circulates and filters air smoothly and constantly in parallel layers while Dead Air is circulation-free air.

Filtration efficiency is 99.999 percent and particles 0.3 m and bigger are retained in units with built-in laminar flow and integrated HEPA or ULPA filters. A circulation-free atmosphere is provided by dead-air or still-air boxes. Digital timers for automated UV light management, ergonomic design, and hinged sashes for quick access are all useful features. If you need extra workspace, take in mind that PCR workstation are often bigger than PCR cabinets.

The area for conducting DNA and RNA amplification is provided by a polymerase chain reaction (PCR) workstation, which is a workspace enclosed on three sides. These workstations, which are often seen in biology and genetic laboratories, avoid cross contamination between samples and UV sterilising lamps.

The contamination-free environment necessary for the most sensitive DNA/RNA segment identification is provided by PCR workstation enclosures. The safety glass sash is commonly used in laboratory testing to provide handlers with the best optical capabilities while magnifying cellular components. The air quality is maintained (either naturally or using circulators and filters) to ensure that no particles that might affect the results are present. For simple disinfection, the PCR workstation enclosures emit strong UV light in scheduled increments between usage.

The air filtration capacity

The quality of pre filters and HEPA filters determines the effectiveness of a PCR workstation. The Air filtering technology in Igene Labserve's PCR cabinet is designed to operate well even in a high-pressure environment. It utilises box type pleated pre filters that have a 95 percent efficiency down to 5 micron and are comprised of HDPE + Non-woven + HDPE mesh media and are housed in an aluminium container. The HEPA filters are of excellent quality, with a 99.99 percent efficiency down to 0.3 micron and are housed in an anodized aluminium housing. The blower assembly features an aluminium anodized impeller and a 14 HP, 1400 RPM branded motor.

The work space has been thoughtfully constructed for ease of use and cleaning. Stainless steel is used to construct the workstation. Air / gas cock and electricity outlet have standard fittings. Fluorescent bulbs are used for lighting. A manual sliding door (sash) constructed of clear acrylic plastic covers the front side of the working space.

If the buyer so desires, several optional functions can be incorporated. It has an LCD display for air velocity, time, and lamp on/off status. If needed, a germicidal UV lamp, an additional electrical outlet, and a Magnehelic gauge are also included.

Germicidal UV lamp

A UV lamp is an optional feature that is used to disinfect the work area before it is utilised. During this period, it is recommended that no contact be made in the chamber.

Igene Labserve is PCR manufacturers and suppliers in India who are ISO and CE certified. For laboratory usage, our firm creates both horizontal and vertical pcr benches that satisfy ISO (class 100) requirements. These units are composed of stainless steel sheet (304/316) or powder coated mild steel or GI sheets and are built to last for years of worry-free operation.

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What should you look for in PCR machines?

Tuesday, 5 October 2021

What should you look for in PCR machines?

 

What is PCR?

PCR helps in the understanding of many environmental issues especially the detection of microorganisms in the environment, identification, and quantification of specific target species, even when they exist in low numbers. 

What is the function of a PCR machine?

  • The PCR enclosed cabinet workstations are ideal for particle and bacteria-free working environments in laboratories. These HEPA filtered air cabinets transmit unidirectional steady and constant airflow with zero turbulence. 
  • The PCR cabinets perform sterilized work. The units however do not ensure protection to the user but protect the samples and products from room contamination. 
  • The vertical laminar airflow PCR cabinets allow room air in the work area, through the HEPA filters. The air flows in a downward direction on the work surface leaving the cabinet and sweeping bacteria and other particles with it. 
  • The cabinet ensures high longevity as it is constructed with thick metal sheets and pipes enabling safety. The efficient inclusion of HEPA filters garners work efficiency even when the most critical particles are handled. The prefilters demonstrate the efficiency of up to 95% to 5 microns. The Aluminum case bears non-woven and meshes HDPE. The HEPA filters fitted in aluminum anodized case can go down to 0.3 microns with 99.99% efficiency. The blower motor includes aluminum anodized impellers, and the assembly has 1/4HP, 1400RPM. 
  • The work surface is made of stainless steel for regular and easy cleaning and is fitted with standard components like an air gas cock and an electric outlet. Florescent lamps illuminate the cabinet interior. Manual sliding acrylic transparent door covers the front side of the cabinet. If you purchase your PCR cabinet from IgeneLabServe, you can add more customized features like LCD air velocity display, lamp on/off time status display, Germicide UV lamp, that sterilize your workspace before you start work, you can add extra electric sockets and Magnehelic gauge according to requirement.  

Why choose IgeneLabServe?

  • The company is ISO and CE certified.
  • You can order horizontal and vertical PCR benches according to your lab need and space.

With the capacity of sustaining years of operations, they display high longevity and efficiently serve the labs they belong to. The powder-coated mild steel or GI sheet bodies add to the cabinet’s life. If you require a PCR machine order the most reliable one from https://www.igenels.com/. Call 1800 5720 603 for details.

Tuesday, 14 September 2021

Scientific Equipment Manufacturer

 

 

Our Motto is to Innovate, Interact and Intuit with our customers to make the world healthier, cleaner and safer. As our customers are accelerating life sciences research, solving complex analytical challenges, improving impatient diagnostics or increasing productivity in their laboratories, we are here to support them.

Thursday, 9 September 2021

How study of nucleic acid can help in disease identification

 

Nucleic acids are essential for cell activity and, by extension, life. DNA and RNA are the two kinds of nucleic acids. They keep track of a cell's genetic information so that it can sustain itself, develop, reproduce, and execute any specific duties it's designed to do. Nucleic acids therefore govern the information that determines the identity of each cell and organism.

Nucleic acids are a kind of macromolecule present in living organisms. Nucleic acids, like other macromolecules such as proteins and polysaccharides, are lengthy molecules made up of many similar connected units.

Nucleic acids are divided into two categories: deoxyribonucleic acid (DNA) and ribonucleic acid (RNA) (RNA). Adenine, cytosine, guanine, and thymine make up DNA, while adenine, cytosine, guanine, and uracil make up RNA.

Gel Documentation System from iGene Labserve offers a wide variety of imaging devices for detecting, quantifying, and analysing proteins and nucleic acids in gels and membranes. The advanced software in these gel documentation systems allows for rapid automated data acquisition, analysis, and validation. With all standard modalities of protein and nucleic acid staining and labelling: fluorescent, colorimetric, chemiluminescent, and radioisotopic, thegel imaging systems may be utilised for detection and automated data processing.

Nucleic acids are the sole means for a cell to retain and communicate information about its own activities to its progeny. Scientists were able to explain Darwin and Wallace's theories of evolution and Mendel's theory of genetics when nucleic acids were discovered to be the bearers of hereditary information.

Understanding how genes are read by the cell and used to make proteins opens up a world of possibilities for disease research. This is done with the help of Gel Documentation System. Genetic disorders arise when mistakes are introduced into the genes that DNA contains; these errors result in defective RNA, which leads to flawed proteins that don't function properly. Damage to DNA or interference with its replication or repair processes causes cancer. We can learn how illnesses develop and, eventually, how to treat them by studying nucleic acids and their mechanisms of action.

Rare illness research can lead to breakthroughs in common diseases.

Three rare illness studies, for example, have aided in the understanding and treatment of osteoporosis and osteoarthritis. The research of a rare illness termed familial hypercholesterolemia led to the creation of a cholesterol-lowering medication, which is now one of the most commonly prescribed drugs in the developed world and has saved countless lives.

The role of protein synthesis in rare genetic disease

Strong evidence shows that tRNA charging plays a key role in disease onset, most likely by preventing the production of functioning enzymes, which would result in poor protein translation in patient cells. It is providing plausible reasons for the observed tissue selectivity in certain studies, which might lead to strategies to improve gene function that would benefit patients. Another emphasis of the lab's research is the discovery that ARSs can attach to mRNA and that these mRNAs have tRNA-like structures. These structures can accelerate up or slow down the processing of mRNA, and they might be used to generate new ARS functions for medicinal development.

Studying the diseases and their origin and other possible factors can help to identify rare diseases. Visit https://www.igenels.com/ to find out the right equipment for your research.

Wednesday, 25 August 2021

Biosafety cabinets and its classification

 


Igenels products are designed and manufactured to fulfil specific workplace needs and to function within a performance envelope that ensures the broadest margin of safety and product protection for the most demanding laboratory circumstances, due to the crucial nature of such laboratory work.

biosafety cabinet (BSC) is not the same as a fume hood for chemicals. Chemical fumes and aerosols are removed from the work area using fume hoods. BSCs are designed to keep the workplace clean as well as safeguard individuals who work with biological dangers. BSCs establish a barrier against airborne particles like germs by using vertical laminar airflow.

They clean the air going into the work area and out to the environment with High Efficiency Particulate Air (HEPA) filters. Most BSCs have a HEPA filter that recirculates the air over the work area. Chemical vapours are not removed by the HEPA filter, which eliminates airborne particles but not chemical fumes.

When to use a biosafety cabinet?

When manipulating human infections or antineoplastics that are prone to produce aerosols, use a BSC (such as vortexing open tubes, pipetting, opening caps after centrifuging, sonicating, aspirating with a syringe, etc.). Use for all pathogen manipulation that is conveyed through the air (such as Brucella abortus, Mycobacterium tuberculosis, etc.). In a BSC, improper airflow or filter leaks could expose lab staff to biohazardous chemicals. It is critical to inspect BSCs on campus on a regular basis to verify that they are providing the required protection to workers and the environment.

Cabinet Purpose

A laminar flow biological safety cabinet is designed to give three fundamental types of protection in increasing degrees:

  • Inside the cabinet, personnel are protected from dangerous chemicals
  • To avoid contamination of the task, experiment, or process, use product protection
  • Contaminants contained within the cabinet are protected from the environment

How Biological Safety Cabinets Are Classified?

When it comes to choosing a biological safety cabinet, classification is crucial. The scientific community has developed standard classification criteria to distinguish containment capabilities and performance aspects throughout time. Biological safety cabinets are classified into three groups.

Class I - Personnel and Environmental Protection Only

Because dirty room air constantly enters the cabinet front and flows across the work surface, a Class I cabinet does not shield the product from contamination. The Class I cabinet, as a partial containment device, is ideal for operations with low to moderate risk agents (biosafety levels 1,2, and 3) where confinement is required but not product protection. The HEPA filter in the Class I cabinet safeguards the environment by filtering air before it is vented, unlike traditional fume hoods. The steady circulation of air into the cabinet and away from the user allows for personnel protection.

Class II - Product, Personnel and Environmental Protection

A Class II cabinet must meet criteria for product, personnel, and environmental protection. Clinical, hospital, life science, research, and pharmaceutical laboratories all employ this style of cabinet. The technique through which air volumes are recirculated or exhausted is how cabinets are categorised in general.

Class III Total Containment Cabinets

Class III biological safety cabinets are gas-tight and suited for use with biological agents that pose a high risk of infection. Class III cabinets provide the maximum level of protection for people, products, and the environment. Baker develops each BSC system to exact customer specifications due to the delicate nature of most procedures done within a Class III cabinet.

iGene Labserve is one of the trusted names in professional scientific equipment manufacturer company in India. It has equipment supplies required for many areas such as Molecular Biology, Analytical Chemistry, Microbial Technology and other areas of science related field.

Visit https://www.igenels.com/ to find out more.

Saturday, 14 August 2021

Base your decision of buying a Stability Chambers on aspects that matter

 


Stability chambers are built on stainless-steel frames and insulated with PFU density filled between the inner and outer chamber.  Suitable steel wire meshes, and cable trays complete this chamber. They are removable for the convenience of sample positioning inside the chamber.

The chamber offers a temperature range of 10°C to 60°C; with humidity ranging from 35%to 95%. The chamber can provide storage conditions for substances at the desired humidity and temperature level for the best culture results.

The refrigeration standards are met with the CFC compressors which are hermetically sealed with noiseless performance.

The humidity of the chamber is preserved in the stainless-steel tank ISI marked immersion heater facilities that have an automatic water filling feature with a device that stores less water for overflowing safety.

The chamber features a motorized blower assembly for air safety to maintain uniformity of temperature. Running in silence the system affords peaceful operation and long service life.

The system is equipped with a self-programed control panel that has advanced features with a colored touch screen display helping in data logging and transfer to a pen drive or printer. Thus, the smart device can be programmed, and HMI configured for customized use.

The LED/Fluorescent lights are maintained by cycle timers that can automatically respond to the timing of illumination for a week.

The chambers are protected against high voltage and high and very low-temperature limits. The data logging facility of the chamber creates high accountability and recording, enabling, and enhancing its usability.

Choosing the right stability chamber can effectively improve your laboratory findings and accurate results that can lead to exact conclusions. The choice of the best stability chamber is indisputably iGeneLabserve Pvt. Ltd. Visit their website https://www.igenels.com/ to and place your order for one of the finest equipment in the industry today.

Tuesday, 10 August 2021

Molecular Biology Laboratory Equipment

 

Instruments designed for microbe free working environment for specialized work responding to high resolution and sensitive scientific conditions. Increases experimental efficiency by eliminating complications in the operation process. Excellent temperature uniformity & accurate annealing for experimental requirements.

Friday, 30 July 2021

Analytical Lab Instruments for Multidisciplinary Applications | iGene Labserve

 

A wide range of equipment that analyze samples qualitatively and quantitatively through chemical, clinical and environmental testing for study that includes, not limit to forensic, Life Science Research (e.g., metabolomics, genomics, proteomics), material research and characterization, petrochemical analysis.

Wednesday, 28 July 2021

Understanding biosafety cabinet and their types

 


Biological safety cabinets, or BSCs, are vented hoods or workplaces that allow pathogens, pollutants, and other potentially dangerous materials to be handled safely.

Biosafety cabinets and microbiological safety cabinets are terms used to describe this type of equipment. They're also known as gloveboxes when they're equipped with glove systems.

The primary goal of a biosafety cabinet is to keep biological pollutants and other dangerous items away from the operator and the surrounding environment. There are several types of biological safety cabinets, each with its own set of requirements for biosafety and containment, as well as cabinetry configuration. The appropriate class and type are chosen based on the needs of the specific application and the required level of bio-containment.

Classes and Types of Biological Safety Cabinets (BSC)

  • Class I Biological Safety Cabinet

Personnel and environmental protection are provided by Class I BSCs, however product protection is not provided. In terms of air circulation, the Class I BSC is comparable to a chemical fume hood. The Class I BSC, unlike a chemical fume hood, features a HEPA filtration system that manages the air leaving the unit, protecting the environment.

  • Class II Biological Safety Cabinet

For a variety of low- to moderate-risk products, Class II hoods provide people, environmental, and product protection. In research, clinical, industrial, and pharmaceutical settings, these biological safety cabinets are used. Airflow is drawn into the front grille of Class II cabinets, providing personnel protection. Furthermore, the downward flow of HEPA-filtered air protects products by reducing the risk of cross-contamination across the hood's work surface. Exhaust air is filtered with a certified HEPA filter to safeguard the environment from particulates. In addition to a wide range of therapeutic and research applications, these hoods are often utilised in hospital pharmacies.

  • Class III Biological Safety Cabinet

In addition to a wide range of therapeutic and research applications, these hoods are often utilised in hospital pharmacies. A gas-tight enclosure with a non-opening view window, the Class III BSC is a gas-tight enclosure with a non-opening view window. Materials are passed into the cabinet by a dunk tank accessible via the cabinet floor or a double-door pass-through box (e.g., an autoclave steriliser) that can be decontaminated in between uses. Materials can be safely withdrawn from the cabinet by reversing the process.

Clean air workbenches and ordinary laminar flow workstations are not the same as biosafety cabinets (BSCs). BSCs are not the same as standard horizontal or vertical laminar flow clean benches. HEPA filtration and positive pressure air are employed to safeguard the product in a typical laminar flow clean bench, but not the user. The primary goal of a basic biological safety cabinet is to guard both the worker and the environment from risks within the cabinet, rather than the product itself. The Class I BSC isn't meant to protect products.

BSCs in Class II and III are designed to safeguard both the product and the worker as well as the environment. According to specific regulatory requirements for product protection, worker protection, and environmental protection, the right class and type of BSC is chosen.

Tuesday, 20 July 2021

Biosafety Cabinet- what are the lookouts?

 

Biosafety cabinets come in different levels; level 1, which is the lowest of the four levels, is required when working with defined strains of communicable biological agents and low-risk microbes that pose little to no threat of infection in healthy adults.

Biosafe level 2 is required for working with agents that pose a moderate health hazard. This includes microbes that cause mild disease in people.

Biosafety Level 3 is required for those working with agents that can cause serious or potentially lethal disease through inhalation and are of uncommon varieties.

Biosafety level 4 labs are rare and offer the highest level of biological safety. They are required to work with highly dangerous and exotic microbes. Infections caused by these types of microbes are frequently fatal as there is no existing treatment available.

Picking the right biosafety cabinet for your lab is therefore necessary. The class one biosafety cabinet can be ducted or ductless. It provides protection for the user and surrounding environment, but no protection for the sample. This cabinet is ideal for containment.

A Class 2 BSE cabinet performs the task of Class 1 but at the same time affords sample protection. These have several subcategories: these include type A1, A2, B1, B2. The unique feature of these biosafety cabinets is they have a bio compare page. The minimum inflow velocity and exhaust system distinguishes the different types of class 2 cabinets.

The class 3 BSE cabinet is an enclosed box that is also sometimes known as the glovebox and provides maximum protection. The enclosure is air-tight, and all materials enter and leave through a double-door autoclave. This cabinet can be used as a BSL 1-4 application.

Conclusion

If you are looking for quality Biosafety cabinets that fulfil the requirement of your lab demands visit, https://www.igenels.com/. They offer Biosafety Cabinet Class II A2 and Biosafety Cabinet Class II B2. Other sample incubators like their Laminar Air Flow Bench is equally efficient.

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