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We acknowledge the initiation and support of this Research Topic by the International Union of Immunological Societies (IUIS). We hereby state publicly that the IUIS has had no editorial input in articles included in this Research Topic, thus ensuring that all aspects of this Research Topic are evaluated objectively, unbiased by any specific policy or opinion of the IUIS.
Through recent research, there has been a significant number of findings involving the biology of macrophages. Beyond the 1st line of defense, macrophages have several specific characteristics across different tissues, organs, and systems. Macrophages comprehend a heterogeneous phagocytic population with wide range phenotypes, and tissue-specific functions, such as bone resorption, extracellular matrix production, red blood cells and bacteria removal, among others. Through innate immune receptors macrophages can modulate several pathways that culminate in the production of various types of inflammatory mediators such as chemokines, cytokines, oxygen reactive species, and lipid mediators whic...
American Association for Cancer Research 2019 Proceedings: Abstracts 2749-5314 - Part B
Buku ini membahas tentang imunologi dengan lebih rinci dan mendalam sesuai dengan pengetahuan yang dibutuhkan dalam imunologi dasar. Pembahasan dalam tiap bab dan sub bab dirancang secara jelas dan memperhatikan perkembangan dalam imunologi namun tidak terlalu panjang. Referensi yang digunakan adalah referensi-referensi yang mutakhir sehingga banyak hal baru yang bisa dilihat pada buku ini. Referensi lama kami gunakan jika tidak ditemukan referensi yang berumur kurang dari lima tahun dan hasil penelitian pada referensi tersebut masih relevan dengan imunologi masa kini. Di dalam buku ini juga memuat bab khusus yang membahas integrasi imunologi dengan ajaran islam. Kesemua hal tersebut menurut hemat kami merupakan sisi baik dari buku ini.
Resumen: Offers an integrated view of principal aspects of immune response to all types of infectious agents. Deals with the immune system primarily as a host defense system. Various infectious agents and diseases are integrated under general topics rather than treated in separate chapters.
This book focuses on histone mutations, especially those mutations closely related to cancer. Genetic mutations and epigenetic alterations contribute to the development of a variety of cancers: recent genetic studies have identified e.g. H3K27M and H3G34R/V mutation in over 75% of DIPG cases, H3.3K36M mutation in more than 90% of chondroblastoma cases, and H3G34W/L mutation in over 90% of giant cell tumors of bone. Given the high incidence and tumorigenesis effects of histone H3 mutations, they are also referred to as oncohistones. This book highlights the advances made in the area over the past 10 years, and offers a state-of-the-art summary of epigenetic alternation, gene expression, protein structure, drug discovery, immunotherapy, and mouse modeling of histone H3 mutations in various tumors. Chiefly intended to provide researchers and graduate students with an overall picture of these mutations, it will also be of interest to researchers in basic oncology, clinical oncology, and epigenetics, as well as academics and clinical oncology practitioners.
The IASLC Atlas of PD-L1 Immunohistochemistry Testing in Lung Cancer is a resource designed to help pathologists, clinicians, other health care personnel, and patients better understand emerging programmed cell death ligand-1 (PD-L1) immunohistochemistry (IHC) assays as well as important areas of clarity and debate.
This book reviews the chemical, regulatory, and physiological mechanisms of protein arginine and lysine methyltransferases, as well as nucleic acid methylations and methylating enzymes. Protein and nucleic acid methylation play key and diverse roles in cellular signalling and regulating macromolecular cell functions. Protein arginine and lysine methyltransferases are the predominant enzymes that catalyse S-adenosylmethionine (SAM)-dependent methylation of protein substrates. These enzymes catalyse a nucleophilic substitution of a methyl group to an arginine or lysine side chain nitrogen (N) atom. Cells also have additional protein methyltransferases, which target other amino acids in peptidy...