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result(s) for
"Liu, Na"
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Dynamic plasmonic colour display
2017
Plasmonic colour printing based on engineered metasurfaces has revolutionized colour display science due to its unprecedented subwavelength resolution and high-density optical data storage. However, advanced plasmonic displays with novel functionalities including dynamic multicolour printing, animations, and highly secure encryption have remained in their infancy. Here we demonstrate a dynamic plasmonic colour display technique that enables all the aforementioned functionalities using catalytic magnesium metasurfaces. Controlled hydrogenation and dehydrogenation of the constituent magnesium nanoparticles, which serve as dynamic pixels, allow for plasmonic colour printing, tuning, erasing and restoration of colour. Different dynamic pixels feature distinct colour transformation kinetics, enabling plasmonic animations. Through smart material processing, information encoded on selected pixels, which are indiscernible to both optical and scanning electron microscopies, can only be read out using hydrogen as a decoding key, suggesting a new generation of information encryption and anti-counterfeiting applications.
Here Duan
et al
. demonstrate dynamic plasmonic colour displays using catalytic magnesium metasurfaces. Controlled hydrogenation and dehydrogenation of the constituent nanoparticles, which serve as dynamic pixels, allow plasmonic colour printing, tuning, erasing, restoration of colour and encoding of information.
Journal Article
IPDfromKM: reconstruct individual patient data from published Kaplan-Meier survival curves
2021
Background
When applying secondary analysis on published survival data, it is critical to obtain each patient’s raw data, because the individual patient data (IPD) approach has been considered as the gold standard of data analysis. However, researchers often lack access to IPD. We aim to propose a straightforward and robust approach to obtain IPD from published survival curves with a user-friendly software platform.
Results
Improving upon existing methods, we propose an easy-to-use, two-stage approach to reconstruct IPD from published Kaplan-Meier (K-M) curves. Stage 1 extracts raw data coordinates and Stage 2 reconstructs IPD using the proposed method. To facilitate the use of the proposed method, we developed the
R
package
IPDfromKM
and an accompanying web-based Shiny application. Both the
R
package and Shiny application have an “all-in-one” feature such that users can use them to extract raw data coordinates from published K-M curves, reconstruct IPD from the extracted data coordinates, visualize the reconstructed IPD, assess the accuracy of the reconstruction, and perform secondary analysis on the basis of the reconstructed IPD. We illustrate the use of the
R
package and the Shiny application with K-M curves from published studies. Extensive simulations and real-world data applications demonstrate that the proposed method has high accuracy and great reliability in estimating the number of events, number of patients at risk, survival probabilities, median survival times, and hazard ratios.
Conclusions
IPDfromKM
has great flexibility and accuracy to reconstruct IPD from published K-M curves with different shapes. We believe that the
R
package and the Shiny application will greatly facilitate the potential use of quality IPD and advance the use of secondary data to facilitate informed decision making in medical research.
Journal Article
Electrically-controlled digital metasurface device for light projection displays
2020
Light projection displays play an increasingly important role in our modern life. Core projection systems including liquid crystal displays and digital micromirror devices can impose spatial light modulation and actively shape light waves. Recently, the advent of metasurfaces has revolutionized design concepts in nanophotonics, enabling a new family of optical elements with exceptional degrees of freedom. Here, we demonstrate a light projection display technology based on optical metasurfaces, called digital metasurface device (DMSD). Each metasurface pixel in a DMSD is electrically reconfigurable with well-controlled programmability and addressability. The DMSD can not only continuously modulate the intensity of light with high contrast, but also shape the wavefront of light generated by each metasurface pixel and dynamically switch between arbitrary holographic patterns. Our approach will pave an avenue towards the development of customized light projection devices. It will also drive the field of dynamic optical metasurfaces with fresh momentum and inspiring concepts.
Controllable and low-cost holographic display devices are always desired. Here the authors demonstrate an approach of creating light projection device based on electrical control of digital metasurface device.
Journal Article
Inner Peace as the Seed of Global Peace: Unveiling the Link Between Zhuangzi’s Mysticism and Nonviolent Resistance
2024
This paper delves into the connection between Zhuangzi’s mystical philosophy and its potential application to nonviolent resistance movements. It argues that the cultivation of inner peace, as advocated by Zhuangzi, can serve as a powerful foundation for individuals to engage in peaceful social change. Zhuangzi, a prominent figure in ancient Chinese thought, emphasized the importance of achieving harmony with Dao, the natural order of the universe. His mystical teachings centered on concepts like the “Pu 樸” (perfect natural state), “Xiao Yao You 逍遙遊” (Free and Easy Wandering) and “Qi Wu Lun 齊物論” (Equalizing Things and Equalizing Theory), as well as “Xin Zhai 心齋” (Fasting of the Mind) and “Zuo Wang 坐忘” (Sitting and Forgetting). This paper explores how these mystical concepts can be interpreted as a call for inner peace and tranquility. The paper then examines how inner peace, as envisioned by Zhuangzi, can empower individuals to participate in nonviolent resistance. It suggests that achieving inner peace allows individuals to transcend feelings of anger, resentment, and violence, fostering a sense of compassion and understanding towards their opponents. This inner peace, in turn, can fuel the courage and determination necessary to engage in peaceful protests and civil disobedience. By exploring the connection between Zhuangzi’s mysticism and nonviolent resistance, this paper aims to shed light on an alternative approach to social change. It argues that inner peace, cultivated through mystical experience, can be a powerful tool for individuals seeking to create a more just and peaceful world.
Journal Article
Role of reactive oxygen species in ultraviolet-induced photodamage of the skin
Reactive oxygen species (ROS), such as superoxides (O
2
•−) and hydroxyl groups (OH·), are short-lived molecules containing unpaired electrons. Intracellular ROS are believed to be mainly produced by the mitochondria and NADPH oxidase (NOX) and can be associated with various physiological processes, such as proliferation, cell signaling, and oxygen homeostasis. In recent years, many studies have indicated that ROS play crucial roles in regulating ultraviolet (UV)-induced photodamage of the skin, including exogenous aging, which accounts for 80% of aging. However, to the best of our knowledge, the detailed signaling pathways, especially those related to the mechanisms underlying apoptosis in which ROS are involved have not been reviewed previously. In this review, we elaborate on the biological characteristics of ROS and its role in regulating UV-induced photodamage of the skin.
Journal Article
Recent advances in therapeutic strategies for triple-negative breast cancer
2022
Triple-negative breast cancer (TNBC) is the most malignant subtype of breast cancer (BC) with a poor prognosis. Current treatment options are limited to surgery, adjuvant chemotherapy and radiotherapy; however, a proportion of patients have missed the surgical window at the time of diagnosis. TNBC is a highly heterogeneous cancer with specific mutations and aberrant activation of signaling pathways. Hence, targeted therapies, such as those targeting DNA repair pathways, androgen receptor signaling pathways, and kinases, represent promising treatment options against TNBC. In addition, immunotherapy has also been demonstrated to improve overall survival and response in TNBC. In this review, we summarize recent key advances in therapeutic strategies based on molecular subtypes in TNBC.
Journal Article
The Role of the Intestine in the Development of Hyperuricemia
by
Liu, Na
,
Yin, Hui
,
Chen, Jie
in
ABCG2
,
Adenosine
,
ATP Binding Cassette Transporter, Subfamily G, Member 2 - metabolism
2022
Gout is a common inflammatory arthritis caused by the deposition of sodium urate crystals in the joints. Hyperuricemia is the fundamental factor of gout. The onset of hyperuricemia is related to purine metabolism disorders or uric acid excretion disorders. Current studies have shown that the intestine is an important potential organ for the excretion of uric acid outside the kidneys. The excretion of uric acid of gut is mainly achieved through the action of uric acid transporters and the catabolism of intestinal flora, which plays an important role in the body’s uric acid balance. Here we reviewed the effects of intestinal uric acid transporters and intestinal flora on uric acid excretion, and provide new ideas for the treatment of hyperuricemia and gout.
Journal Article
Functional DNA-based cytoskeletons for synthetic cells
by
Zhan, Pengfei
,
Göpfrich, Kerstin
,
Jahnke, Kevin
in
631/553/552
,
631/57/2283
,
639/638/298/54/992
2022
The cytoskeleton is an essential component of a cell. It controls the cell shape, establishes the internal organization, and performs vital biological functions. Building synthetic cytoskeletons that mimic key features of their natural counterparts delineates a crucial step towards synthetic cells assembled from the bottom up. To this end, DNA nanotechnology represents one of the most promising routes, given the inherent sequence specificity, addressability and programmability of DNA. Here we demonstrate functional DNA-based cytoskeletons operating in microfluidic cell-sized compartments. The synthetic cytoskeletons consist of DNA tiles self-assembled into filament networks. These filaments can be rationally designed and controlled to imitate features of natural cytoskeletons, including reversible assembly and ATP-triggered polymerization, and we also explore their potential for guided vesicle transport in cell-sized confinement. Also, they possess engineerable characteristics, including assembly and disassembly powered by DNA hybridization or aptamer–target interactions and autonomous transport of gold nanoparticles. This work underpins DNA nanotechnology as a key player in building synthetic cells.
Cytoskeletons are essential components of cells that perform a variety of tasks, and artificial cytoskeletons that perform these functions are required for the bottom-up assembly of synthetic cells. Now, a multi-functional cytoskeleton mimic has been engineered from DNA, consisting of confined DNA filaments that are capable of reversible self-assembly and transport of gold nanoparticles and vesicular cargo.
Journal Article
Bäcklund transformation and multi-soliton solutions for the (3+1)-dimensional BKP equation with Bell polynomials and symbolic computation
2015
In this paper, the binary Bell polynomials are employed to find the bilinear form, bilinear Bäcklund transformation and Lax pair for the (3+1)-dimensional BKP equation. Based on Hirota’s bilinear form and three-wave method, multi-soliton solutions are presented. Furthermore, a new bilinear Bäcklund transformation is constructed via applying a gauge transformation to the Bäcklund transformation in bilinear form.
Journal Article