Numerical Simulation of Heat Transfer to Optimize DNA Amplification in Polymerase Chain Reaction

被引:0
作者
Aziz, Imran [1 ]
Jamshaid, Rabia [1 ]
Zaidiand, Tahir [1 ]
Akhtar, Imran [1 ]
机构
[1] Natl Univ Sci & Technol, NUST Coll Elect & Mech Engn, Islamabad, Pakistan
来源
2016 13TH INTERNATIONAL BHURBAN CONFERENCE ON APPLIED SCIENCES AND TECHNOLOGY (IBCAST) | 2016年
关键词
Polymerase Chain Reaction (PCR); Computational Fluid Dynamics (CFD); DNA Amplification; CONTINUOUS-FLOW PCR; THROUGH PCR; CHIP; TEMPERATURE; DEVICE;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Polymerase Chain Reaction (PCR) is a biomedical technique for forensic laboratory sciences in which small amount of DNA is amplified through repeated thermal cycles. It has become a powerful technique for clinical, biological, medical, forensic and genetic analysis and other areas of life science. This process actively increases the quantity of DNA by repetition of three-step procedure i.e. denaturation, annealing and extension which are performed at 95 degrees C, 55 degrees C and 72 degrees C respectively. The reaction temperature sensitivity requires precise temperature control and appropriate thermal insulation of the three reaction zones. Three dimensional simulation of heat transfer is carried out for a continuous flow PCR based model to study the heat transfer effect on the temperature distribution and thermal gradients in a PCR device. For improving the computational time, one pass simulation model is used. Isothermal boundary conditions are applied using heaters of 8mm and 9mm lengths in the reaction zones. Air gaps of 0.5mm, 1mm and 1.5mm are introduced in the glass substrate for improving the temperature uniformity of the extension zone. It has been observed that the air gaps improves the temperature uniformity in the PCR channel extension zone but size of the air gaps has a negligible effect on temperature uniformity. The effect of heat loss via convection is also observed and it is shown that the thermal isolation of glass domain from outside improves the temperature distribution in the reaction zones. ANSYS CFX 15 is used to perform computational fluid dynamics (CFD) simulations by varying the velocity to study the effect of fluid convection on the temperature distribution in the flow channel and to estimate the residence time of the fluid to attain efficient DNA amplification.
引用
收藏
页码:456 / 462
页数:7
相关论文
共 50 条
  • [21] Experimental validation of numerical study on thermoelectric-based heating in an integrated centrifugal microfluidic platform for polymerase chain reaction amplification
    Amasia, Mary
    Kang, Seok-Won
    Banerjee, Debjyoti
    Madou, Marc
    [J]. BIOMICROFLUIDICS, 2013, 7 (01)
  • [22] DNA TYPING OF FORENSIC MATERIAL WITH MIXED GENOTYPES USING ALLELE-SPECIFIC ENZYMATIC AMPLIFICATION (POLYMERASE CHAIN-REACTION)
    GYLLENSTEN, UB
    JOSEFSSON, A
    SCHEMSCHAT, K
    SALDEEN, T
    PETTERSON, U
    [J]. FORENSIC SCIENCE INTERNATIONAL, 1992, 52 (02) : 149 - 160
  • [23] Numerical Simulation of Chemical Reactions' Influence on Convective Heat Transfer in Hydrothermal Circulation Reaction Zones
    Luo, Yina
    Feng, Yuebo
    Zhang, Da
    Li, Yan
    [J]. ENERGIES, 2024, 17 (11)
  • [24] Sperm Mediated Transfer of Genes into Goldfish and Detection by Polymerase Chain Reaction
    于建康
    阎维
    张玉廉
    费云标
    黄涛
    严绍颐
    [J]. Developmental&ReproductiveBiology, 1992, (01) : 40 - 43
  • [25] Fast DNA Extraction with Polyacrylamide Microspheres for Polymerase Chain Reaction Detection
    Wang, Jun
    Zhang, Shuyan
    Xu, Xinhui
    Xing, Yujun
    Li, Zongru
    Wang, Jinke
    [J]. ACS OMEGA, 2020, 5 (23): : 13829 - 13839
  • [26] Numerical Simulation of Heat Transfer in Fundus Laser Surgery
    Zhao Penghui
    Zhao Yibo
    Li Dong
    Chen Bin
    Yao Liang
    [J]. CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2022, 49 (20):
  • [27] Numerical simulation of transfer and reaction processes in ethylene furnaces
    Lan, X.
    Gao, J.
    Xu, C.
    Zhang, H.
    [J]. CHEMICAL ENGINEERING RESEARCH & DESIGN, 2007, 85 (A12) : 1565 - 1579
  • [28] Numerical simulation of transfer and reaction processes in ethylene furnaces
    Lan, X.
    Gao, J.
    Xu, C.
    Zhang, H.
    [J]. Chemical Engineering Research and Design, 2007, 85 (12 A) : 1565 - 1579
  • [29] CHARACTERIZATION AND DETECTION OF A NEWLY DESCRIBED ASIAN TAENIID USING CLONED RIBOSOMAL DNA FRAGMENTS AND SEQUENCE AMPLIFICATION BY THE POLYMERASE CHAIN-REACTION
    ZARLENGA, DS
    MCMANUS, DP
    FAN, PC
    CROSS, JH
    [J]. EXPERIMENTAL PARASITOLOGY, 1991, 72 (02) : 174 - 183
  • [30] Kinetic characteristics of continuous flow polymerase chain reaction chip: A numerical investigation
    Wang ShiYing
    Wang Wei
    [J]. SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2010, 53 (07) : 1967 - 1972