Insights Into the Chemical Biology of Reactive Sulfur Species Provided by New Investigative Tools

Insights Into the Chemical Biology of Reactive Sulfur Species Provided by New Investigative Tools PDF Author: Santiago I. Suarez
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
Two decades of research on the signaling capacity of hydrogen sulfide (H2S) in biological systems has led to parallel investigations of other reactive sulfur species (RSS) such as persulfides (RSSH) and polysulfides (RSS[subscript n]R, n>1). The purpose of this dissertation was to develop and assess new investigative tools that selectively detect or effectively deliver RSS under biologically relevant conditions. These chemical tools are of significant interest to the redox and molecular signaling communities and can be used to further define the prevalence, signaling capacity, and therapeutic effects of RSS, representing a significant advancement within the field. In chapter II, we describe the design, synthesis, and examination of an innovative, reaction-based fluorescent probe that exploits the double nucleophilic character of H2S by undergoing an intramolecular cyclization to release a fluorescent reporter. Specifically, we employed a highly unique selenosulfide moiety as a trigger for H2S detection. Given the distinct chemical differences between selenium and sulfur, we reasoned that the selenium half would provide access to chemical probes with high reactivity towards and selectively for H2S. Meanwhile, a suitable handle for improving the physicochemical properties of the probe, including its water solubility, cell permeability, and tissue specificity, could be supplied by the sulfide half. Using this novel design strategy, we successfully produced and assessed two H2S-selective probes: AL1, which displayed good water solubility, cell permeability, and overall biocompatibility, and AL2, which displayed cancer cell specificity. Concomitant to detection, chapter III discusses the synthesis and application of a self-reporting donor (ZL47), sensitive to reactive oxygen species (ROS). To accomplish this, we appended an aryl boronate ester to 7-hydroxycoumarin via an S-alkyl thiocarbonate linker allowing for the simultaneous release of COS, an H2S precursor, and a fluorescent reporter in response to hydrogen peroxide. In addition, we determined that ZL47 was a useful bifunctional tool with an ability to both image and alleviate oxidative stress in live cells, highlighting its potential as a theranostic. Chapter IV describes a novel ROS-activated persulfide donor (RAH393) that operates through a unique mechanistic pathway that avoids the production of a 1,4-quinone methide as a toxic byproduct, a major setback for ZL47 and related donors that employ a 1,6-elimination. In addition to confirming that its lactone byproduct was nontoxic, we were able to demonstrate the impressive cellular protection provided by RAH393 against high concentrations of ROS in live HeLa cells. Because this donor proved to be a valuable tool for generating persulfides in response to ROS, in chapter V, we investigated the therapeutic effects of an analogue that targets mitochondria (Mito-PD), the primary producers of ROS and a known site of RSS oxidation. To accomplish this, the mixed disulfide of RAH393 was modified and equipped with a lipophilic cation to facilitate mitochondrion uptake. Using confocal laser microscopy, we confirmed Mito-PD’s preferential release of persulfides within mitochondria from co-localization studies using AL1 (an H2S-selctive probe) and Mitotracker Red. In addition, we demonstrated that Mito-PD protects cardiomyoblast cells in culture (H9C2) from doxorubicin (DOX)-induced cardiotoxicity. Subsequent studies with JC-1, a fluorescent probe that reports on mitochondrial membrane potential, indicate that Mito-PD effectively preserves the membrane potential of DOX treated cells, increasing their viability. These initial studies highlight the therapeutic benefits of mitochondria-targeting RSS donors and their potential for mitigating DOX-induced cardiotoxicity.

Insights Into the Chemical Biology of Reactive Sulfur Species Provided by New Investigative Tools

Insights Into the Chemical Biology of Reactive Sulfur Species Provided by New Investigative Tools PDF Author: Santiago I. Suarez
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Get Book Here

Book Description
Two decades of research on the signaling capacity of hydrogen sulfide (H2S) in biological systems has led to parallel investigations of other reactive sulfur species (RSS) such as persulfides (RSSH) and polysulfides (RSS[subscript n]R, n>1). The purpose of this dissertation was to develop and assess new investigative tools that selectively detect or effectively deliver RSS under biologically relevant conditions. These chemical tools are of significant interest to the redox and molecular signaling communities and can be used to further define the prevalence, signaling capacity, and therapeutic effects of RSS, representing a significant advancement within the field. In chapter II, we describe the design, synthesis, and examination of an innovative, reaction-based fluorescent probe that exploits the double nucleophilic character of H2S by undergoing an intramolecular cyclization to release a fluorescent reporter. Specifically, we employed a highly unique selenosulfide moiety as a trigger for H2S detection. Given the distinct chemical differences between selenium and sulfur, we reasoned that the selenium half would provide access to chemical probes with high reactivity towards and selectively for H2S. Meanwhile, a suitable handle for improving the physicochemical properties of the probe, including its water solubility, cell permeability, and tissue specificity, could be supplied by the sulfide half. Using this novel design strategy, we successfully produced and assessed two H2S-selective probes: AL1, which displayed good water solubility, cell permeability, and overall biocompatibility, and AL2, which displayed cancer cell specificity. Concomitant to detection, chapter III discusses the synthesis and application of a self-reporting donor (ZL47), sensitive to reactive oxygen species (ROS). To accomplish this, we appended an aryl boronate ester to 7-hydroxycoumarin via an S-alkyl thiocarbonate linker allowing for the simultaneous release of COS, an H2S precursor, and a fluorescent reporter in response to hydrogen peroxide. In addition, we determined that ZL47 was a useful bifunctional tool with an ability to both image and alleviate oxidative stress in live cells, highlighting its potential as a theranostic. Chapter IV describes a novel ROS-activated persulfide donor (RAH393) that operates through a unique mechanistic pathway that avoids the production of a 1,4-quinone methide as a toxic byproduct, a major setback for ZL47 and related donors that employ a 1,6-elimination. In addition to confirming that its lactone byproduct was nontoxic, we were able to demonstrate the impressive cellular protection provided by RAH393 against high concentrations of ROS in live HeLa cells. Because this donor proved to be a valuable tool for generating persulfides in response to ROS, in chapter V, we investigated the therapeutic effects of an analogue that targets mitochondria (Mito-PD), the primary producers of ROS and a known site of RSS oxidation. To accomplish this, the mixed disulfide of RAH393 was modified and equipped with a lipophilic cation to facilitate mitochondrion uptake. Using confocal laser microscopy, we confirmed Mito-PD’s preferential release of persulfides within mitochondria from co-localization studies using AL1 (an H2S-selctive probe) and Mitotracker Red. In addition, we demonstrated that Mito-PD protects cardiomyoblast cells in culture (H9C2) from doxorubicin (DOX)-induced cardiotoxicity. Subsequent studies with JC-1, a fluorescent probe that reports on mitochondrial membrane potential, indicate that Mito-PD effectively preserves the membrane potential of DOX treated cells, increasing their viability. These initial studies highlight the therapeutic benefits of mitochondria-targeting RSS donors and their potential for mitigating DOX-induced cardiotoxicity.

Reactive Sulfur Species in Biology and Medicine

Reactive Sulfur Species in Biology and Medicine PDF Author: John P Toscano
Publisher: Mdpi AG
ISBN: 9783036591209
Category :
Languages : en
Pages : 0

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Book Description
Hydrogen sulfide (H2S) is a naturally occurring signaling molecule produced in vivo and plays a pivotal role in regulating a wide array of physiological processes. Additionally, emerging findings have illuminated that many of the biological effects initially attributed to H2S may actually stem from other reactive sulfur species (RSS), including hydropersulfides (RSSH) and various higher-order polysulfur species (RSSnH, RSSnR, and HSnH, where n > 1). These studies have underscored the contributions of these species to essential cellular processes, such as the efficient scavenging of reactive oxygen species and electrophiles, and their influence on mitochondrial function. Nonetheless, the chemistry of RSS remains challenging due to their inherently reactive nature, and their precise measurement within biological systems continues to pose a formidable challenge. This compilation of reprints focuses on recent advancements in the field of H2S/RSS chemical biology. It encompasses original research studies and comprehensive reviews, all geared towards exploring the therapeutic potential of H2S/RSS donors in the treatment of various conditions, including cancer, neurological disorders, and cardiovascular disease. Furthermore, it delves into the molecular mechanisms and physiological roles played by RSS along with the development of methodologies for quantifying and measuring the distribution of RSS within biological systems.

Metal-Enhanced Fluorescence

Metal-Enhanced Fluorescence PDF Author: Chris D. Geddes
Publisher: John Wiley & Sons
ISBN: 0470642785
Category : Science
Languages : en
Pages : 655

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Book Description
Discover how metal-enhanced fluorescence is changing traditional concepts of fluorescence This book collects and analyzes all the current trends, opinions, and emerging hot topics in the field of metal-enhanced fluorescence (MEF). Readers learn how this emerging technology enhances the utility of current fluorescence-based approaches. For example, MEF can be used to better detect and track specific molecules that may be present in very low quantities in either clinical samples or biological systems. Author Chris Geddes, a noted pioneer in the field, not only explains the fundamentals of metal-enhanced fluorescence, but also the significance of all the most recent findings and models in the field. Metal-enhanced fluorescence refers to the use of metal colloids and nanoscale metallic particles in fluorescence systems. It offers researchers the opportunity to modify the basic properties of fluorophores in both near- and far-field fluorescence formats. Benefits of metal-enhanced fluorescence compared to traditional fluorescence include: Increased efficiency of fluorescence emission Increased detection sensitivity Protect against fluorophore photobleaching Applicability to almost any molecule, including both intrinsic and extrinsic chromophores Following a discussion of the principles and fundamentals, the author examines the process and applications of metal-enhanced fluorescence. Throughout the book, references lead to the primary literature, facilitating in-depth investigations into particular topics. Guiding readers from the basics to state-of-the-technology applications, this book is recommended for all chemists, physicists, and biomedical engineers working in the field of fluorescence.

Nitrosation Reactions and the Chemistry of Nitric Oxide

Nitrosation Reactions and the Chemistry of Nitric Oxide PDF Author: D.L.H. Williams
Publisher: Elsevier
ISBN: 0080473601
Category : Science
Languages : en
Pages : 281

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Book Description
Since 1988, there has been much literature published on the chemistry of nitric oxide, particularly in the field of S-nitrosation and the chemistry of S-nitroso compounds. Written by a chemist for the chemistry community, this book provides an update of the chemistry of nitrosation reactions, dealing with both the synthetic and mechanistic aspects of these reactions. It also looks at the chemistry of nitric oxide in relation to the amazing biological properties of this simple diatomic molecule, which were unknown until around 1990. * Provides an update on previously published literature on nitric oxide chemistry* Contains chapters on reagents for nitrosation, nitrosation at nitrogen, aliphatic and aromatic carbon, oxygen, sulfur and metal centres* Looks at hot research topics such as synthesis, properties and reactions of s-nitrosothiols

Hydrogen Sulfide in Redox Biology Part A

Hydrogen Sulfide in Redox Biology Part A PDF Author:
Publisher: Academic Press
ISBN: 012801623X
Category : Science
Languages : en
Pages : 351

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Book Description
These new volumes of Methods in Enzymology (554 and 555) on Hydrogen Sulfide Signaling continue the legacy established by previous volumes on another gasotransmitter, nitric oxide (Methods in Enzymology volumes 359, 396, 440, and 441), with quality chapters authored by leaders in the field of hydrogen sulfide research. These volumes of Methods in Enzymology were designed as a compendium for hydrogen sulfide detection methods, the pharmacological activity of hydrogen sulfide donors, the redox biochemistry of hydrogen sulfide and its metabolism in mammalian tissues, the mechanisms inherent in hydrogen sulfide cell signaling and transcriptional pathways, and cell signaling in specific systems, such as cardiovascular and nervous system as well as its function in inflammatory responses. Two chapters are also devoted to hydrogen sulfide in plants and a newcomer, molecular hydrogen, its function as a novel antioxidant. Continues the legacy of this premier serial with quality chapters on hydrogen sulfide research authored by leaders in the field Covers conventional and new hydrogen sulfide detection methods Covers the pharmacological activity of hydrogen sulfide donors Contains chapters on important topics on hydrogen sulfide modulation of cell signaling and transcriptional pathways, and the the role of hydrogen sulfide in the cardiovascular and nervous systems and in inflammation

Crude Oil Fouling

Crude Oil Fouling PDF Author: Francesco Coletti
Publisher: Gulf Professional Publishing
ISBN: 0128013591
Category : Technology & Engineering
Languages : en
Pages : 385

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Book Description
With production from unconventional rigs continuing to escalate and refineries grappling with the challenges of shale and heavier oil feedstocks, petroleum engineers and refinery managers must ensure that equipment used with today’s crude oil is protected from fouling deposits Crude Oil Fouling addresses this overarching challenge for the petroleum community with clear explanations on what causes fouling, current models and new approaches to evaluate and study the formation of deposits, and how today’s models could be applied from lab experiment to onsite field usability for not just the refinery, but for the rig, platform, or pipeline. Crude Oil Fouling is a must-have reference for every petroleum engineer’s library that gives the basic framework needed to analyze, model, and integrate the best fouling strategies and operations for crude oil systems. Defines the most critical variables and events that cause fouling Explains the consequences of fouling and its impact on operations, safety, and economics Provides the technical models available to better predict and eliminate the potential for fouling in any crude system

Coal Research Projects

Coal Research Projects PDF Author:
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 616

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Book Description


Grand Challenges in Environmental Sciences

Grand Challenges in Environmental Sciences PDF Author: National Research Council
Publisher: National Academies Press
ISBN: 0309072549
Category : Nature
Languages : en
Pages : 107

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Book Description
Scientists have long sought to unravel the fundamental mysteries of the land, life, water, and air that surround us. But as the consequences of humanity's impact on the planet become increasingly evident, governments are realizing the critical importance of understanding these environmental systemsâ€"and investing billions of dollars in research to do so. To identify high-priority environmental science projects, Grand Challenges in Environmental Sciences explores the most important areas of research for the next generation. The book's goal is not to list the world's biggest environmental problems. Rather it is to determine areas of opportunity thatâ€"with a concerted investmentâ€"could yield significant new findings. Nominations for environmental science's "grand" challenges were solicited from thousands of scientists worldwide. Based on their responses, eight major areas of focus were identifiedâ€"areas that offer the potential for a major scientific breakthrough of practical importance to humankind, and that are feasible if given major new funding. The book further pinpoints four areas for immediate action and investment.

Nitric Oxide Signaling in Plants

Nitric Oxide Signaling in Plants PDF Author: John T. Hancock
Publisher: MDPI
ISBN: 3036500065
Category : Science
Languages : en
Pages : 170

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Book Description
This Special Issue is a collection of research articles focused on the production and role of nitric oxide in plants. Nitric oxide is a crucial molecule used in the orchestration of cellular events in animals and plants. With a mixture of primary research papers and review articles written by some of the top researchers in the field, this work encompasses many aspects of this important and growing area of biochemistry.

Reactive Oxygen, Nitrogen and Sulfur Species in Plants

Reactive Oxygen, Nitrogen and Sulfur Species in Plants PDF Author: Mirza Hasanuzzaman
Publisher: John Wiley & Sons
ISBN: 1119468663
Category : Science
Languages : en
Pages : 1024

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Book Description
Presents a multidisciplinary analysis of the integration among reactive oxygen species (ROS), reactive nitrogen species (RNS), and reactive sulfur species (RSS). Since plants are the main source of our food, the improvement of their productivity is the most important task for plant biologists. In this book, leading experts accumulate the recent development in the research on oxidative stress and approaches to enhance antioxidant defense system in crop plants. They discuss both the plant responses to oxidative stress and mechanisms of abiotic stress tolerance, and cover all of the recent approaches towards understanding oxidative stress in plants, providing comprehensive information about the topics. It also discusses how reactive nitrogen species and reactive sulfur species regulate plant physiology and plant tolerance to environmental stresses. Reactive Oxygen, Nitrogen and Sulfur Species in Plants: Production, Metabolism, Signaling and Defense Mechanisms covers everything readers need to know in four comprehensive sections. It starts by looking at reactive oxygen species metabolism and antioxidant defense. Next, it covers reactive nitrogen species metabolism and signaling before going on to reactive sulfur species metabolism and signaling. The book finishes with a section that looks at crosstalk among reactive oxygen, nitrogen, and sulfur species based on current research done by experts. Presents the newest method for understanding oxidative stress in plants. Covers both the plant responses to oxidative stress and mechanisms of abiotic stress tolerance Details the integration among reactive oxygen species (ROS), reactive nitrogen species (RNS) and reactive sulfur species (RSS) Written by 140 experts in the field of plant stress physiology, crop improvement, and genetic engineering Providing a comprehensive collection of up-to-date knowledge spanning from biosynthesis and metabolism to signaling pathways implicated in the involvement of RONSS to plant defense mechanisms, Reactive Oxygen, Nitrogen and Sulfur Species in Plants: Production, Metabolism, Signaling and Defense Mechanisms is an excellent book for plant breeders, molecular biologists, and plant physiologists, as well as a guide for students in the field of Plant Science.