Evaluation of Cell Biology and Genetics using VIKOR Method

T. Sri Ranjani, C. Ramadevi
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Abstract

Cell biology and genetics are fields of heredity research. They enable experts to examine indigenous people's genetic data to identify their current state of health. By taking necessary precautions, one can protect their health using this technology. Cell biology has quickly expanded in the medical field and has emerged as the only treatment for issues with human reproduction. Genetics, or the science of genes and heredity, is all about the study of features that are passed down from one generation to the next. The subject of cell biology is the smallest units of life, cells, and their structures and functions. Understanding the structure and physiological functioning of single cells, and how cells interact and work together in great numbers to generate tissues and organisms, is a goal of cell biology. Cell biology is based on the notion that a cell is the basic unit of all life. Understanding the tissues and organisms that make up cells in great detail is made possible by concentrating on the cell. If you want to teach in a classroom, you can look into botany or zoology. If you're interested in biological or industrial sciences or medical research, you can choose from genetics, microbiology, or biotechnology. Cell biology encompasses both eukaryotic and prokaryotic cells and has a wide range of subtopics, including the research of cellular metabolism, cell communication, cell cycle, chemistry, and cell composition. Cells can be examined using a variety of microscopy techniques, cell culturing, and cell fractionation. There are two different cell types: prokaryotic and eukaryotic ones. Despite having differing morphologies (see Prokaryote, Eukaryote), eukaryotic organisms are remarkably comparable in terms of underlying molecular make-up and functions. Over the past 50 years, cell biology has seen remarkable expansion as a key area of basic science (1). Medicine makes use of information from basic science domains such as cell biology for the benefit of patients (2-4). A subfield of biology known as cell biology focuses on the cell, including its different types, structures, functions, and interactions with other cells. The subfields of cell biology include cell composition, cell cycle, cell communication, and cell metabolism. Research in several domains, including genetics, biochemistry, neuroscience, plant biology, molecular biology, microbiology, and immunology, is tied to those in cell biology. The VIKOR (VIšekriterijumsko Compromising Rangiranje) Optimal Replacement Select method is used in the evaluation of Epidermal Growth Factor Receptor, Fibroblast Growth Factor Receptors, Discoidin Domain Receptor, Mitogen-Activated Protein Kinase, and Nuclear Receptor-Binding SET Domain Protein alternatives for skin, lung, head/neck, and cervical cancer. Fibroblast Growth Factor Receptors have the highest rank, whereas Nuclear Receptor-Binding SET Domain Protein has the lowest rank.
用VIKOR方法评价细胞生物学和遗传学
细胞生物学和遗传学是遗传研究的两个领域。它们使专家能够检查土著人民的遗传数据,以确定他们目前的健康状况。通过采取必要的预防措施,人们可以利用这项技术保护自己的健康。细胞生物学在医学领域迅速扩展,并已成为人类生殖问题的唯一治疗方法。遗传学,或基因和遗传的科学,是关于研究代代相传的特征。细胞生物学的主题是生命的最小单位,细胞,以及它们的结构和功能。了解单个细胞的结构和生理功能,以及细胞如何相互作用和大量协同工作以产生组织和生物体,是细胞生物学的目标。细胞生物学的基础是细胞是所有生命的基本单位。对构成细胞的组织和有机体的详细了解,可以通过集中研究细胞来实现。如果你想在教室里教书,你可以研究植物学或动物学。如果你对生物或工业科学或医学研究感兴趣,你可以选择遗传学、微生物学或生物技术。细胞生物学包括真核细胞和原核细胞,并具有广泛的子主题,包括细胞代谢,细胞通讯,细胞周期,化学和细胞组成的研究。细胞可以使用各种显微镜技术、细胞培养和细胞分离进行检查。有两种不同的细胞类型:原核细胞和真核细胞。尽管具有不同的形态(见原核生物,真核生物),真核生物在潜在的分子组成和功能方面具有显著的可比性。在过去的50年里,细胞生物学作为基础科学的一个关键领域得到了显著的发展(1)。医学利用细胞生物学等基础科学领域的信息来造福患者(2-4)。细胞生物学是生物学的一个分支,主要研究细胞,包括细胞的不同类型、结构、功能和与其他细胞的相互作用。细胞生物学的子领域包括细胞组成、细胞周期、细胞通讯和细胞代谢。包括遗传学、生物化学、神经科学、植物生物学、分子生物学、微生物学和免疫学在内的几个领域的研究都与细胞生物学相关。VIKOR (VIšekriterijumsko妥协Rangiranje)最佳替代选择方法用于评估表皮生长因子受体、成纤维细胞生长因子受体、盘状蛋白结构域受体、丝裂原活化蛋白激酶和核受体结合SET结构域蛋白替代品,用于皮肤、肺、头颈部和宫颈癌。成纤维细胞生长因子受体的等级最高,而核受体结合SET结构域蛋白的等级最低。
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