![]() ![]() Amplified fragment sizes were 122, 118 and 145 bp for Caspase 3, Caspase 8 and HPRT, respectively. The nucleotide sequences for the primers were: Caspase 3 (NM_009810.2) forward 59- TGA CTG GAA AGC CGA AAC TC 39 and reverse 59- AGC CTC CAC CGG TAT CTT CTV39 Caspase 8 (NM_009812.2) forward 59- CCG AGC TGG ACT TGT GACC -39 and reverse 59- CTG CCC AGT TCT TCA GCA AT-39 and HPRT (NM_013556.2) forward 59 CTT CCT CCT CAG ACC GCT TT -39 and reverse 59- TTT VCCA AAT CCT CGG CAT AA – 39. Primers were designed to have similar GC content and melting temperatures using the Primer3_cgi v 0.2 program. ![]() Gene-specific primer pairs were located on two adjacent exons to achieve a high level of specificity and to avoid detection of genomic DNA. Specificity of amplicons was also ensuredby agarose gel electrophoresis to visualize a unique product fragment of appropriate size. Fluorescence changes were monitored after each cycle, and melting curve analysis was performed at the end of cycles to verify PCR product identity (72uC ramping to 99uC at 0.2uC/second with continuous fluorescence readings). Reactions were carried out under the following cycling conditions: 50uC for 30 min, 95uC for 15 min, and 40 cycles of 95uC for 20 s, followed by 56uC for 30 s and 72uC for 30 s before a final primer sequence extension incubation at 72uC for 5 min. Negative samples were run for each qRT-PCR assay consisting of no RNA in the reverse transcriptase reaction and no cDNA in the PCR. Reaction mixture contained 50 ng of total RNA from each sample, 1.0 mM 25033180 of each primer, 12.5 mL of 2X SYBRH Green Reaction Mix and 0.5 mL of SuperScriptTM III RT/ PlatinumH Taq Mix to a final volume of 25 mL. The reactions were prepared according to standard protocols. ![]() Merase Chain Reaction (qRTPCR) AnalysisReactions were conducted on a Rotor-GeneTM 6000 (Corbett Research, Sydney, NSW, Australia) using a SuperScriptTM III PlatinumH SYBRH Green One-Step qRT-PCR kit (Invitrogen Corporation). Its advanced motor, comprehensive software, accurate temperature control, and wide range of accessories make CORBETT RESEARCH Rotorgene 6000 an all-in-one powerhouse for any laboratory setting.By Src inhibitor- srcinhibitor August 21, 2017 ![]() In conclusion, Rotorgene 6000 is a powerful and easy-to-use laboratory equipment and accessory that offers a huge range of features for the most demanding research needs. Finally, CORBETT RESEARCH Rotorgene 6000 offers a range of accessories such as sample chambers, cell culture chambers, centrifuges, connectors, and other laboratory tools to streamline laboratory work and increase productivity. Also, the device has a modular design for easy and effortless maintenance and upgrade. Rotorgene 6000 is also equipped with an intelligent programmer to provide users with step-by-step instructions on how to set up protocols and optimize experiments. In addition, CORBETT RESEARCH Rotorgene 6000 is equipped with numerous high-end sensors for measuring such parameters as pressure, angle, torque, voltage and current, and allowing for real-time monitoring and analysis of the experimental protocol. Also, the device is equipped with a lab grade, double-joint drive allowing for easy and precise mounting of various laboratory equipment. It has a temperature range of 5 to 40☌, with an accuracy of +/- 0.5☌, enabling precise temperature control. Rotorgene 6000 provides a wide range of laboratory tools to perform various experiments and solutions. Additionally, CORBETT RESEARCH Rotorgene 6000 is equipped with a comprehensive software package, allowing users to archive results, control temperature and humidity, and generate step-by-step instructions on how to perform a certain task. This high-speed motor allows for precise control over the speed, direction, and duration of the DNA, RNA, cDNA, and protein synthesis, ensuring precise and reproducible results. Rotorgene 6000 is equipped with a powerful, German-made rotor, with a maximum rotor speed of 6000rpm. In addition, CORBETT RESEARCH Rotorgene 6000 can be easily configured to suit a variety of laboratory protocols, making it a versatile tool for any research needs. Rotorgene 6000 is capable of rapidly and reliably generating microgram quantities of DNA, RNA, cDNA, and protein from a variety of samples such as bacterial and eukaryotic cells. CORBETT RESEARCH Rotorgene 6000 is a powerful, easy-to-use laboratory equipment and accessory that offers the ultimate in flexibility and performance. ![]()
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