Integrated Role of Nanotechnology and Pharmacogenetics in Diagnosis and Treatment of Diseases

Ruchi Chawla, V. Rani, Mohini Mishra, Krishan Kumar
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引用次数: 2

Abstract

“One size fits all” is an erroneous paradigm in drug delivery, due to side effects/adverse effects and variability observed in drug response. The variability is a result of geneotypic variations (variability in genomic constitution) which is studied in the branch of science called Pharmacogenomics. The variability in drug response is studied by multigene analysis or profiling of whole-genome single nucleotide polymorphism (SNP) and is recorded in terms of the pharmacokinetic (absorption, distribution, metabolism and elimination) and pharmacodynamic (drug-receptor interaction, immune response, etc.) response of the drug. Therefore, a foray into this research area can provide valuable information for designing of drug therapies, identifying disease etiology, therapeutic targets and biomarkers for application in treatment and diagnosis of diseases. Lately, with the integration of pharmacogenomics and nanotechnology, a new facade for the diagnosis and treatment of diseases has opened up, and the prescription pattern of drugs has moved to pharmacotyping (individualized dose and dosage-form adjusted therapy) using nanoplatforms like nanobioconjugates, nanotheranostics, etc.
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纳米技术和药物遗传学在疾病诊断和治疗中的综合作用
由于副作用/不良反应和药物反应的可变性,“一刀切”是一种错误的给药模式。变异是基因型变异(基因组构成的变异)的结果,这是药物基因组学研究的一个分支。通过多基因分析或全基因组单核苷酸多态性(SNP)谱分析来研究药物反应的变异性,并记录药物的药代动力学(吸收、分布、代谢和消除)和药效学(药物受体相互作用、免疫反应等)反应。因此,进入这一研究领域可以为设计药物治疗、确定疾病病因、治疗靶点和生物标志物提供有价值的信息,用于疾病的治疗和诊断。近年来,随着药物基因组学和纳米技术的融合,为疾病的诊断和治疗开辟了新的前景,药物的处方模式已经转向使用纳米生物偶联物、纳米治疗等纳米平台的药物分型(个体化剂量和剂型调整治疗)。
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