Exploring the Challenges of Advancing Surface Enhanced Raman Spectroscopy-Based Biosensing From Research Laboratory to Clinics

Exploring the Challenges of Advancing Surface Enhanced Raman Spectroscopy-Based Biosensing From Research Laboratory to Clinics
Author: Owen Suyuan Liang
Publisher:
Total Pages: 133
Release: 2020
Genre:
ISBN:

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Healthcare has seen a big boon in technological advancement with the last few years with next-generation genome sequencing, robotics, artificial intelligence, and bioinformatics. While the origins of these breakthroughs are deeply rooted in biology, life sciences, and medical science, the new age of technological breakthrough require an interdisciplinary approach. Materials science itself is an interdisciplinary field, with a huge contribution of physics and chemistry, and within the past few decades, advances in nanotechnology has allowed integration into healthcare giving materials science a new emerging role. Such is the case with a vibrational spectroscopy technique called Surface Enhanced Raman Spectroscopy (SERS). SERS has the ability to measure the molecular bonds of the target analyte at the single molecular level. Yet, SERS is not a recognized spectrometry tool in healthcare. This dissertation examines the fundamental challenges that require a technique like SERS to transition from the academic research laboratories to clinical applications. While there are broad potential clinical applications, this dissertation focuses on the SERS measurement of diseases originating from cellular morphologies. The two main focal topics are cancer and microbiology research, where the proteome identification can provide new diagnostic and therapeutic treatment options. The first major section is about testing the capabilities of our group's unique graphene gold nanopyramid hybrid platform in controlled research laboratory environments. Varies cases of cancers are examined: lung, skin, and breast, through their various size, morphology, and proteomic differences. Afterwards, the field of microbiology is explored with bacteria and fungus species. The second major section involves the SERS's platform performance with clinical patient data. The first case study looks at the diagnosing meningitis from patients in China. The second case study looks at multidrug resistance detection of tuberculosis in rural Pakistan. The last major section tries to consolidate the major lessons in this journey of bringing SERS to clinical applications. In particular, this section tackles the main question of why a technique like SERS has not been fully recognized in clinics yet and brings the case to why our SERS hybrid platform is very close to it.

Surface Enhanced Raman Spectroscopy: Biosensing and Diagnostic Technique for Healthcare Applications

Surface Enhanced Raman Spectroscopy: Biosensing and Diagnostic Technique for Healthcare Applications
Author: Swati Jain
Publisher: Bentham Science Publishers
Total Pages: 263
Release: 2021-12-28
Genre: Science
ISBN: 9815039121

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Surface enhanced Raman spectroscopy (SERS) is a technique applied in multidisciplinary research. Its use has tremendously grown in the last 40 years owing to improved nanofabrication, biomolecules extraction and sensitive signal acquisition techniques. This book focuses on the underlying principles of SERS by emphasizing on basic concepts and background information about the subject. Chapters explain the physics of Raman spectroscopy while also indicating its relevance to designing protocols and methodologies for biosensing and imaging. The book gives updated and recent details on colloids and nanostructures, their fabrication, surface engineering and immobilization methods, all in context to SERS based biosensing. Key Features: - Covers basic knowledge and new research about surface enhanced Raman spectroscopy (SERS) - Provides a complete framework on SERS based biosensing with concise chapters - Focuses on different active molecules critical to SERS and associated developed nanoassemblies - Presents information about ongoing research on SERS imaging applications - Highlights bottlenecks of SERS technique in biosensing - Includes references for further reading This book serves as a reference book for researchers and academicians and will also provide a reasonable understanding on the topic of SERS to newcomers irrespective of their background in a simple manner. The book is of interest to all readers within the scientific community involved with Raman spectroscopy, including chemists, physicists, biologists, material scientists as well as biomedical engineers.

Surface-Enhanced Raman Spectroscopy

Surface-Enhanced Raman Spectroscopy
Author: Marek Prochazka
Publisher: Springer
Total Pages: 230
Release: 2015-12-12
Genre: Science
ISBN: 3319239929

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This book gives an overview of recent developments in RS and SERS for sensing and biosensing considering also limitations, possibilities and prospects of this technique. Raman scattering (RS) is a widely used vibrational technique providing highly specific molecular spectral patterns. A severe limitation for the application of this spectroscopic technique lies in the low cross section of RS. Surface-enhanced Raman scattering (SERS) spectroscopy overcomes this problem by 6-11 orders of magnitude enhancement compared with the standard RS for molecules in the close vicinity of certain rough metal surfaces. Thus, SERS combines molecular fingerprint specificity with potential single-molecule sensitivity. Due to the recent development of new SERS-active substrates, labeling and derivatization chemistry as well as new instrumentations, SERS became a very promising tool for many varied applications, including bioanalytical studies and sensing. Both intrinsic and extrinsic SERS biosensing schemes have been employed to detect and identify small molecules, nucleic acids and proteins, and also for cellular and in vivo sensing.

Principles and Clinical Diagnostic Applications of Surface-Enhanced Raman Spectroscopy

Principles and Clinical Diagnostic Applications of Surface-Enhanced Raman Spectroscopy
Author: Yuling Wang
Publisher: Elsevier
Total Pages: 465
Release: 2021-09-17
Genre: Science
ISBN: 012823198X

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Principles and Clinical Diagnostic Applications of Surface-Enhanced Raman Spectroscopy summarizes the principles of surface-enhanced Raman scattering/spectroscopy (SERS) and plasmonic nanomaterials for SERS, with a focus on SERS applications in clinical diagnostics. This book covers the key concepts from the fundamentals, materials, experimental aspects, and applications of SERS in clinical diagnostics with discussions on label-free/direct SERS assay, design and synthesis of SERS nanotags, SERS nanotags for point-of-care diagnostics, microfluidic SERS assay, and in vitro and in vivo sensing and imaging. Written by experts from around the world, this comprehensive volume showcases the recent progress of SERS applications in clinical diagnostics and helps readers understand when and how to use SERS in a clinical setting. Introduces the basics of SERS and suitable nanomaterials for SERS application Gives an overview of the cutting-edge research on SERS applications for clinical diagnosis, including the latest advances in our understanding of underlying principles to enable material design and clinical applications Gradually builds from the fundamental concepts to the applications of SERS for clinical diagnostics

Frontiers of Surface-Enhanced Raman Scattering

Frontiers of Surface-Enhanced Raman Scattering
Author: Yukihiro Ozaki
Publisher: John Wiley & Sons
Total Pages: 466
Release: 2014-02-19
Genre: Science
ISBN: 111870357X

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A comprehensive presentation of Surface-Enhanced Raman Scattering (SERS) theory, substrate fabrication, applications of SERS to biosystems, chemical analysis, sensing and fundamental innovation through experimentation. Written by internationally recognized editors and contributors. Relevant to all those within the scientific community dealing with Raman Spectroscopy, i.e. physicists, chemists, biologists, material scientists, physicians and biomedical scientists. SERS applications are widely expanding and the technology is now used in the field of nanotechnologies, applications to biosystems, nonosensors, nanoimaging and nanoscience.

Surface Enhanced Raman Spectroscopy for Biophysical Applications

Surface Enhanced Raman Spectroscopy for Biophysical Applications
Author: Claudia Fasolato
Publisher: Springer
Total Pages: 155
Release: 2018-12-05
Genre: Science
ISBN: 3030035565

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The book explores the phenomenon of surface-enhanced Raman scattering (SERS), the huge amplification of Raman signal from molecules in the proximity of a metallic nanostructured surface, allowing readers to gain an in-depth understanding of the mechanisms affecting the spectroscopic response of SERS-active systems for effective applications. SERS spectroscopy is an ultrasensitive analytical technique with great potential for applications in the field of biophysics and nanomedicine. As examples, the author presents the design of nanocolloid-based SERS-active substrates for molecular sensing and of a folate-based SERS-active nanosensor capable of selectively interacting with cancer cells, enabling cancer diagnostics and therapy at the single-cell level. The author also suggests novel paths for the systematization of the SERS nanosystem design and experimental protocols to maximize sensitivity and reproducibility, which is essential when real-world biomedical applications are the goal of the study. With a combined approach, both fundamental and applied, and a detailed analysis of the state of the art, this book provides a valuable overview both for students new to SERS spectroscopy and for experts in the field.

Synthesis and Application of Colloidal Substrates for In-solution Surface Enhanced Raman Scattering

Synthesis and Application of Colloidal Substrates for In-solution Surface Enhanced Raman Scattering
Author: Casey John Rusin
Publisher:
Total Pages: 283
Release: 2020
Genre: Colloids
ISBN:

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Surface-enhanced Raman scattering (SERS) has evolved into a powerful analytical measurement technique with the potential for single molecule detection. The technological advancement of handheld Raman instrumentation is powering the development of SERS applications in a variety of industries. Moreover, it is driving the movement from laboratory-based analyses to on-site/remote analyses. As a result, a main research component from this movement is to develop compatible SERS substrates. While the market is dominated by solid-based substrates, solution-based substrates do offer some benefits. These could include low production costs, high scalability, competitive reproducibility and shorter analysis times. The primary focus of the work in this thesis is to develop solution-based SERS substrates and explore their usage for in-solution measurements. This work highlights the development of three different types of solution-based substrates. The first substrate involves the synthesis and optimization of gold nanostars as a colloidal SERS substrate. The SERS performance is investigated and optimized using different Good's buffers, examining the buffer to gold salt concentration ratio and the use of an aggregating agent. In short, the results indicated that gold nanostars with smaller branches provided larger enhancement than those with larger branches, and this has been attributed to the Raman probe surface coverage on the nanostars rather than an electromagnetic effect. A SERS assay is also developed to quantitate methimazole in urine using a handheld Raman spectrometer. The second and third solution-based substrates are metal decorated cellulose nanofibers, also known as plasmonic cellulose nanofibers. These chapters focus on the growth of silver and gold nanoparticles onto oxidized cellulose nanofibers, and are used as a water dispersible substrate. In the development of plasmonic cellulose nanofibers, the cellulose nanofibers have two important roles: (1) to act as a dispersant in water and (2) act as a support for metallic nanoparticles. For both substrates, centrifugation played a key role in producing significant signal enhancement. Cellulose nanofibers decorated with silver nanoparticles were used for in-solution measurements of malachite green, while cellulose nanofibers decorated with gold nanoparticles were used for in-solution measurements of methimazole. Moreover, an assay is developed to quantitate methimazole in synthetic urine with cellulose nanofibers decorated with gold nanoparticles. Measurements using plasmonic cellulose nanofibers are taken with a Raman microscope, however, examples are shown to highlight the capability of remote analysis by coupling the substrates with a handheld Raman spectrometer. This work concludes with a comparative study between solid- and solution-based substrates. Using cellulose nanofibers decorated with gold nanoparticles, membrane- and glass- based SERS substrate are developed. This work discusses the benefits and challenges of solid- and solution-based substrates in terms of substrate development, measurement versatility and reproducibility. The primary contribution of this work is the development of multiple solution-based SERS substrates for in-solution measurements.

Raman Spectroscopy

Raman Spectroscopy
Author: Dheeraj Kumar Singh
Publisher: Springer Nature
Total Pages: 388
Release:
Genre:
ISBN: 9819717035

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Principles of Surface-Enhanced Raman Spectroscopy

Principles of Surface-Enhanced Raman Spectroscopy
Author: Eric Le Ru
Publisher: Elsevier
Total Pages: 688
Release: 2008-11-17
Genre: Science
ISBN: 0080931553

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SERS was discovered in the 1970s and has since grown enormously in breadth, depth, and understanding. One of the major characteristics of SERS is its interdisciplinary nature: it lies at the boundary between physics, chemistry, colloid science, plasmonics, nanotechnology, and biology. By their very nature, it is impossible to find a textbook that will summarize the principles needed for SERS of these rather dissimilar and disconnected topics. Although a basic understanding of these topics is necessary for research projects in SERS with all its many aspects and applications, they are seldom touched upon as a coherent unit during most undergraduate studies in physics or chemistry. This book intends to fill this existing gap in the literature. It provides an overview of the underlying principles of SERS, from the fundamental understanding of the effect to its potential applications. It is aimed primarily at newcomers to the field, graduate students, researchers or scientists, attracted by the many applications of SERS and plasmonics or its basic science. The emphasis is on concepts and background material for SERS, such as Raman spectroscopy, the physics of plasmons, or colloid science, all of them introduced within the context of SERS, and from where the more specialized literature can be followed. Represents one of very few books fully dedicated to the topic of surface-enhanced Raman spectroscopy (SERS) Gives a comprehensive summary of the underlying physical concepts around SERS Provides a detailed analysis of plasmons and plasmonics