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Cyclic adenosine monophosphate (cAMP) is a second messenger of paramount biological importance, involved in the regulation of a significant number of cellular functions through the cAMP-dependent intracellular signal transduction pathways. The aim of this "Frontiers in Pharmacology" Research Topic was to attract contributions that highlight emerging ideas in the cAMP field that: (i) describe its role in cellular function and homeostasis, (ii) present the current approaches to its pharmacological manipulation, and (iii) clarify its central role in the development of more targeted therapeutic approaches toward a spectrum of diseases. The present collection of articles highlights, in a representative (but certainly not exhaustive) way, the research activity and emerging concepts in the field, while it also reveals the therapeutic potential that targeted pharmacological manipulation of intracellular cAMP levels could exert on a number of pathological conditions.
signaling --- pharmacological manipulation --- cyclic adenosine monophosphate --- Disease --- Therapeutic applications --- Homeostasis --- cAMP --- Cellular function --- signaling --- pharmacological manipulation --- cyclic adenosine monophosphate --- Disease --- Therapeutic applications --- Homeostasis --- cAMP --- Cellular function
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Cyclic adenosine monophosphate (cAMP) is a second messenger of paramount biological importance, involved in the regulation of a significant number of cellular functions through the cAMP-dependent intracellular signal transduction pathways. The aim of this "Frontiers in Pharmacology" Research Topic was to attract contributions that highlight emerging ideas in the cAMP field that: (i) describe its role in cellular function and homeostasis, (ii) present the current approaches to its pharmacological manipulation, and (iii) clarify its central role in the development of more targeted therapeutic approaches toward a spectrum of diseases. The present collection of articles highlights, in a representative (but certainly not exhaustive) way, the research activity and emerging concepts in the field, while it also reveals the therapeutic potential that targeted pharmacological manipulation of intracellular cAMP levels could exert on a number of pathological conditions.
signaling --- pharmacological manipulation --- cyclic adenosine monophosphate --- Disease --- Therapeutic applications --- Homeostasis --- cAMP --- Cellular function
Choose an application
Cyclic adenosine monophosphate (cAMP) is a second messenger of paramount biological importance, involved in the regulation of a significant number of cellular functions through the cAMP-dependent intracellular signal transduction pathways. The aim of this "Frontiers in Pharmacology" Research Topic was to attract contributions that highlight emerging ideas in the cAMP field that: (i) describe its role in cellular function and homeostasis, (ii) present the current approaches to its pharmacological manipulation, and (iii) clarify its central role in the development of more targeted therapeutic approaches toward a spectrum of diseases. The present collection of articles highlights, in a representative (but certainly not exhaustive) way, the research activity and emerging concepts in the field, while it also reveals the therapeutic potential that targeted pharmacological manipulation of intracellular cAMP levels could exert on a number of pathological conditions.
signaling --- pharmacological manipulation --- cyclic adenosine monophosphate --- Disease --- Therapeutic applications --- Homeostasis --- cAMP --- Cellular function
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Nature represents an amazing source of inspiration, since it produces a great diversity of natural compounds selected by evolution, which exhibit multiple biological activities and applications. A large and very active research field is dedicated to identifying biosynthesized compounds, to improve/develop new methodologies, to produce/reuse natural compounds, and to assess their potential for pharmaceutical, cosmetic and food industries, among others, and additionally, to understand their mechanism of action. This book is dedicated to presenting the most recent results on the development of natural compounds’ applications. Ten original research works, organized by applications, and two reviews are included. Each of them contributes to the knowledge advance, insofar as they present new applications for known products, new methodologies to obtain new products, or the evaluation of a given application, with the applications related to health promotion being the most frequently considered. These works are significant contributions and reinforce the dynamic field of natural products’ applications.
Medicine --- amino acid metabolism --- carvacrol --- metabolomics data --- oxidative stress --- Penicillium digitatum --- Prangos pabularia Lindl. --- volatile oil --- PTP-1B --- osthole --- 5-pentylcyclohexa-1,3-diene --- antidiabetic activity --- chalcones --- aldol condensation --- biological activity --- flavanones --- cytotoxic --- antioxidant --- anticholinesterase --- Maytenus --- celastroloids --- semisynthesis --- antibacterial activity --- structure–activity relationship --- rosemary --- rosmarinic acid --- anticancer --- antidiabetic --- cardioprotective --- Helianthus annuus --- Helianthus strumosus --- Aspergillus niger --- Candida albicans --- Cryptococcus neoformans --- α-pinene --- oleracone --- flavonoid --- anti-aging --- longevity --- Portulaca oleracea L. --- Caenorhabditis elegans --- total synthesis --- pimenta d’água --- Candida --- fungistatic effect --- inhibition of dimorphism --- GC/MS --- colorectal cancer --- Salviae miltiorrhizae radix --- apoptosis --- honey --- propolis --- phenolic compounds --- wound-healing activity --- NHDF cells --- Asteraceae --- sesquiterpene lactones --- alantolactone --- arglabin --- parthenolide --- thapsigargin --- in vivo study --- anti-inflammatory --- almond --- byproducts --- chlorogenic acid --- design of experiment --- phenolic acids --- ultrasound-assisted extraction --- natural compounds --- therapeutic applications --- essential oils --- antimicrobial --- antitumor --- SAR
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Nature represents an amazing source of inspiration, since it produces a great diversity of natural compounds selected by evolution, which exhibit multiple biological activities and applications. A large and very active research field is dedicated to identifying biosynthesized compounds, to improve/develop new methodologies, to produce/reuse natural compounds, and to assess their potential for pharmaceutical, cosmetic and food industries, among others, and additionally, to understand their mechanism of action. This book is dedicated to presenting the most recent results on the development of natural compounds’ applications. Ten original research works, organized by applications, and two reviews are included. Each of them contributes to the knowledge advance, insofar as they present new applications for known products, new methodologies to obtain new products, or the evaluation of a given application, with the applications related to health promotion being the most frequently considered. These works are significant contributions and reinforce the dynamic field of natural products’ applications.
amino acid metabolism --- carvacrol --- metabolomics data --- oxidative stress --- Penicillium digitatum --- Prangos pabularia Lindl. --- volatile oil --- PTP-1B --- osthole --- 5-pentylcyclohexa-1,3-diene --- antidiabetic activity --- chalcones --- aldol condensation --- biological activity --- flavanones --- cytotoxic --- antioxidant --- anticholinesterase --- Maytenus --- celastroloids --- semisynthesis --- antibacterial activity --- structure–activity relationship --- rosemary --- rosmarinic acid --- anticancer --- antidiabetic --- cardioprotective --- Helianthus annuus --- Helianthus strumosus --- Aspergillus niger --- Candida albicans --- Cryptococcus neoformans --- α-pinene --- oleracone --- flavonoid --- anti-aging --- longevity --- Portulaca oleracea L. --- Caenorhabditis elegans --- total synthesis --- pimenta d’água --- Candida --- fungistatic effect --- inhibition of dimorphism --- GC/MS --- colorectal cancer --- Salviae miltiorrhizae radix --- apoptosis --- honey --- propolis --- phenolic compounds --- wound-healing activity --- NHDF cells --- Asteraceae --- sesquiterpene lactones --- alantolactone --- arglabin --- parthenolide --- thapsigargin --- in vivo study --- anti-inflammatory --- almond --- byproducts --- chlorogenic acid --- design of experiment --- phenolic acids --- ultrasound-assisted extraction --- natural compounds --- therapeutic applications --- essential oils --- antimicrobial --- antitumor --- SAR
Choose an application
Nature represents an amazing source of inspiration, since it produces a great diversity of natural compounds selected by evolution, which exhibit multiple biological activities and applications. A large and very active research field is dedicated to identifying biosynthesized compounds, to improve/develop new methodologies, to produce/reuse natural compounds, and to assess their potential for pharmaceutical, cosmetic and food industries, among others, and additionally, to understand their mechanism of action. This book is dedicated to presenting the most recent results on the development of natural compounds’ applications. Ten original research works, organized by applications, and two reviews are included. Each of them contributes to the knowledge advance, insofar as they present new applications for known products, new methodologies to obtain new products, or the evaluation of a given application, with the applications related to health promotion being the most frequently considered. These works are significant contributions and reinforce the dynamic field of natural products’ applications.
Medicine --- amino acid metabolism --- carvacrol --- metabolomics data --- oxidative stress --- Penicillium digitatum --- Prangos pabularia Lindl. --- volatile oil --- PTP-1B --- osthole --- 5-pentylcyclohexa-1,3-diene --- antidiabetic activity --- chalcones --- aldol condensation --- biological activity --- flavanones --- cytotoxic --- antioxidant --- anticholinesterase --- Maytenus --- celastroloids --- semisynthesis --- antibacterial activity --- structure–activity relationship --- rosemary --- rosmarinic acid --- anticancer --- antidiabetic --- cardioprotective --- Helianthus annuus --- Helianthus strumosus --- Aspergillus niger --- Candida albicans --- Cryptococcus neoformans --- α-pinene --- oleracone --- flavonoid --- anti-aging --- longevity --- Portulaca oleracea L. --- Caenorhabditis elegans --- total synthesis --- pimenta d’água --- Candida --- fungistatic effect --- inhibition of dimorphism --- GC/MS --- colorectal cancer --- Salviae miltiorrhizae radix --- apoptosis --- honey --- propolis --- phenolic compounds --- wound-healing activity --- NHDF cells --- Asteraceae --- sesquiterpene lactones --- alantolactone --- arglabin --- parthenolide --- thapsigargin --- in vivo study --- anti-inflammatory --- almond --- byproducts --- chlorogenic acid --- design of experiment --- phenolic acids --- ultrasound-assisted extraction --- natural compounds --- therapeutic applications --- essential oils --- antimicrobial --- antitumor --- SAR --- amino acid metabolism --- carvacrol --- metabolomics data --- oxidative stress --- Penicillium digitatum --- Prangos pabularia Lindl. --- volatile oil --- PTP-1B --- osthole --- 5-pentylcyclohexa-1,3-diene --- antidiabetic activity --- chalcones --- aldol condensation --- biological activity --- flavanones --- cytotoxic --- antioxidant --- anticholinesterase --- Maytenus --- celastroloids --- semisynthesis --- antibacterial activity --- structure–activity relationship --- rosemary --- rosmarinic acid --- anticancer --- antidiabetic --- cardioprotective --- Helianthus annuus --- Helianthus strumosus --- Aspergillus niger --- Candida albicans --- Cryptococcus neoformans --- α-pinene --- oleracone --- flavonoid --- anti-aging --- longevity --- Portulaca oleracea L. --- Caenorhabditis elegans --- total synthesis --- pimenta d’água --- Candida --- fungistatic effect --- inhibition of dimorphism --- GC/MS --- colorectal cancer --- Salviae miltiorrhizae radix --- apoptosis --- honey --- propolis --- phenolic compounds --- wound-healing activity --- NHDF cells --- Asteraceae --- sesquiterpene lactones --- alantolactone --- arglabin --- parthenolide --- thapsigargin --- in vivo study --- anti-inflammatory --- almond --- byproducts --- chlorogenic acid --- design of experiment --- phenolic acids --- ultrasound-assisted extraction --- natural compounds --- therapeutic applications --- essential oils --- antimicrobial --- antitumor --- SAR
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