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Microneedles (MNs)-based technology
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Microneedles (MNs)-based technology/ edited by Neetu Talreja, Divya Chauhan, Mohammad Ashfaq.
其他作者:
Ashfaq, Mohammad.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
vi, 359 p. :ill., digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Sensors and biosensors. -
電子資源:
https://doi.org/10.1007/978-981-96-3916-8
ISBN:
9789819639168
Microneedles (MNs)-based technology
Microneedles (MNs)-based technology
[electronic resource] /edited by Neetu Talreja, Divya Chauhan, Mohammad Ashfaq. - Singapore :Springer Nature Singapore :2025. - vi, 359 p. :ill., digital ;24 cm. - Series in bioengineering,2196-887X. - Series in bioengineering..
Microneedles: Fabrication, characterization, and commercialization strategy -- Rapidly separating microneedles based transdermal patches -- Dissolvable polymeric microneedles for insulin delivery -- Hollow microneedles based injectable delivery system -- Porous polymeric microneedles for transdermal delivery system -- Polymeric microneedles for vaccine delivery -- Microneedles based epidermal sensor for the diagnosis of diseases -- Microneedles based delivery system for plants -- Microneedles-based technology for monitoring the food health -- Microneedles based transdermal patches for wound dressing -- Microneedles-based sensor for detection of environmental pollution -- Carbon-doped microneedles for environmental applications.
This book highlights the fabrication of various types of solid, hollow, and dissolvable microneedles (MNs) using various synthesis processes and their applications in medicine, agriculture, and sensors. MN-based technology emerges as a sign of hope, offering a painless delivery system. In general, MN-based technology uses tiny needles to puncture the outermost layer of the skin. MNs are made of various materials like metals, silicon, and polymers for efficient delivery of biomolecules. With the tremendous success of MNs in the drug delivery system, researchers try to use MNs in agriculture and sensor applications to improve plant health via monitoring and delivery of agrochemicals. By modulating the materials of MNs, drugs and biomolecules can be delivered in a controlled manner. In general, MN-based technology holds significant opportunities for improving delivery of the drugs/biomolecules and opens new wings toward agriculture and sensing applications. Moreover, MN-based technology enables newer avenues for therapeutic and diagnosis of diseases.
ISBN: 9789819639168
Standard No.: 10.1007/978-981-96-3916-8doiSubjects--Topical Terms:
1388341
Sensors and biosensors.
LC Class. No.: RM169
Dewey Class. No.: 615.6
Microneedles (MNs)-based technology
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Microneedles: Fabrication, characterization, and commercialization strategy -- Rapidly separating microneedles based transdermal patches -- Dissolvable polymeric microneedles for insulin delivery -- Hollow microneedles based injectable delivery system -- Porous polymeric microneedles for transdermal delivery system -- Polymeric microneedles for vaccine delivery -- Microneedles based epidermal sensor for the diagnosis of diseases -- Microneedles based delivery system for plants -- Microneedles-based technology for monitoring the food health -- Microneedles based transdermal patches for wound dressing -- Microneedles-based sensor for detection of environmental pollution -- Carbon-doped microneedles for environmental applications.
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This book highlights the fabrication of various types of solid, hollow, and dissolvable microneedles (MNs) using various synthesis processes and their applications in medicine, agriculture, and sensors. MN-based technology emerges as a sign of hope, offering a painless delivery system. In general, MN-based technology uses tiny needles to puncture the outermost layer of the skin. MNs are made of various materials like metals, silicon, and polymers for efficient delivery of biomolecules. With the tremendous success of MNs in the drug delivery system, researchers try to use MNs in agriculture and sensor applications to improve plant health via monitoring and delivery of agrochemicals. By modulating the materials of MNs, drugs and biomolecules can be delivered in a controlled manner. In general, MN-based technology holds significant opportunities for improving delivery of the drugs/biomolecules and opens new wings toward agriculture and sensing applications. Moreover, MN-based technology enables newer avenues for therapeutic and diagnosis of diseases.
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