Ahmed El-Mallul is a distinguished surgeon and academic with a PhD in Surgery from the Medical University of Łódź. He has led surgical departments in Poland and Libya and is currently a professor at the University of Radom, Department of Surgery. His research focuses on nanomedicine, oncology, and surgical innovations, with numerous publications, book chapters, and patents. He is the editor of Nanotechnology to Nanomedicine: From Beaker to Body and continues to advance biomedical research globally.
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Paperback. Etat : new. Paperback. Cancer therapy continues to face significant challenges as many conventional treatments lack specificity, contributing to systemic toxicity, multidrug resistance, and inconsistent therapeutic outcomes. Nano-oncology offers a promising path forward by enabling targeted delivery, controlled drug release, active tumor localization, and improved treatment precision through engineered nanomaterial platforms. At the same time, the field must address concerns associated with chemically intensive nanoparticle synthesis, including environmental burden, biocompatibility limitations, reproducibility issues, and regulatory complexity. Sustainable synthesis strategies are increasingly important for advancing safer and more responsible cancer nanomedicine. By integrating sustainability with precision therapeutics, green nano-oncology provides a forward-looking framework for developing effective, biocompatible, and clinically translatable cancer treatment strategies. Nano-Oncology Applications for Sustainable Synthesis and Precision Therapeutics establishes green nano-oncology as a scientifically robust and clinically relevant framework for next-generation cancer therapeutics. By critically integrating sustainable nanomaterial synthesis with precision oncology, it addresses key limitations of both conventional cancer treatments and chemically intensive nanomedicine approaches. Covering topics such as active targeting, polymeric nanocarriers, and surface functionalization, this book is an excellent resource for researchers, PhD scholars, postdoctoral fellows, oncologists, clinician-scientists, industry professionals, and more. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9798337398495
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Paperback. Etat : new. Paperback. Cancer therapy continues to face significant challenges as many conventional treatments lack specificity, contributing to systemic toxicity, multidrug resistance, and inconsistent therapeutic outcomes. Nano-oncology offers a promising path forward by enabling targeted delivery, controlled drug release, active tumor localization, and improved treatment precision through engineered nanomaterial platforms. At the same time, the field must address concerns associated with chemically intensive nanoparticle synthesis, including environmental burden, biocompatibility limitations, reproducibility issues, and regulatory complexity. Sustainable synthesis strategies are increasingly important for advancing safer and more responsible cancer nanomedicine. By integrating sustainability with precision therapeutics, green nano-oncology provides a forward-looking framework for developing effective, biocompatible, and clinically translatable cancer treatment strategies. Nano-Oncology Applications for Sustainable Synthesis and Precision Therapeutics establishes green nano-oncology as a scientifically robust and clinically relevant framework for next-generation cancer therapeutics. By critically integrating sustainable nanomaterial synthesis with precision oncology, it addresses key limitations of both conventional cancer treatments and chemically intensive nanomedicine approaches. Covering topics such as active targeting, polymeric nanocarriers, and surface functionalization, this book is an excellent resource for researchers, PhD scholars, postdoctoral fellows, oncologists, clinician-scientists, industry professionals, and more. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9798337398495
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Paperback. Etat : new. Paperback. Cancer therapy continues to face significant challenges as many conventional treatments lack specificity, contributing to systemic toxicity, multidrug resistance, and inconsistent therapeutic outcomes. Nano-oncology offers a promising path forward by enabling targeted delivery, controlled drug release, active tumor localization, and improved treatment precision through engineered nanomaterial platforms. At the same time, the field must address concerns associated with chemically intensive nanoparticle synthesis, including environmental burden, biocompatibility limitations, reproducibility issues, and regulatory complexity. Sustainable synthesis strategies are increasingly important for advancing safer and more responsible cancer nanomedicine. By integrating sustainability with precision therapeutics, green nano-oncology provides a forward-looking framework for developing effective, biocompatible, and clinically translatable cancer treatment strategies. Nano-Oncology Applications for Sustainable Synthesis and Precision Therapeutics establishes green nano-oncology as a scientifically robust and clinically relevant framework for next-generation cancer therapeutics. By critically integrating sustainable nanomaterial synthesis with precision oncology, it addresses key limitations of both conventional cancer treatments and chemically intensive nanomedicine approaches. Covering topics such as active targeting, polymeric nanocarriers, and surface functionalization, this book is an excellent resource for researchers, PhD scholars, postdoctoral fellows, oncologists, clinician-scientists, industry professionals, and more. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. N° de réf. du vendeur 9798337398495
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Taschenbuch. Etat : Neu. Nano-Oncology Applications for Sustainable Synthesis and Precision Therapeutics | Ahmed El-Mallul (u. a.) | Taschenbuch | Englisch | 2026 | IGI GLOBAL SCIENTIFIC PUBLISHING | EAN 9798337398495 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand. N° de réf. du vendeur 136343410
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Cancer therapy continues to face significant challenges as many conventional treatments lack specificity, contributing to systemic toxicity, multidrug resistance, and inconsistent therapeutic outcomes. Nano-oncology offers a promising path forward by enabling targeted delivery, controlled drug release, active tumor localization, and improved treatment precision through engineered nanomaterial platforms. At the same time, the field must address concerns associated with chemically intensive nanoparticle synthesis, including environmental burden, biocompatibility limitations, reproducibility issues, and regulatory complexity. Sustainable synthesis strategies are increasingly important for advancing safer and more responsible cancer nanomedicine. By integrating sustainability with precision therapeutics, green nano-oncology provides a forward-looking framework for developing effective, biocompatible, and clinically translatable cancer treatment strategies. Nano-Oncology Applications for Sustainable Synthesis and Precision Therapeutics establishes green nano-oncology as a scientifically robust and clinically relevant framework for next-generation cancer therapeutics. By critically integrating sustainable nanomaterial synthesis with precision oncology, it addresses key limitations of both conventional cancer treatments and chemically intensive nanomedicine approaches. Covering topics such as active targeting, polymeric nanocarriers, and surface functionalization, this book is an excellent resource for researchers, PhD scholars, postdoctoral fellows, oncologists, clinician-scientists, industry professionals, and more. N° de réf. du vendeur 9798337398495
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