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2 ment osteochondral tissue regeneration holds promise for a feasible osteoarthritis therapeutic applic
3 using applied electric potentials, offering promise for a variety of applications including haptics
4 edle delivery technology offers considerable promise for a wide range of therapeutic applications, to
5 micelles from lipid-modified reactants shows promise for accelerating chemical reactions in a tracele
7 rs of innovative and targeted therapies hold promise for achieving disease control, including in pati
8 d conductive framework materials holds great promise for achieving efficient CO(2) reduction through
9 receptor agonists, such as psilocybin, show promise for addressing a range of serious disorders, inc
10 genomes with novel properties offers special promise for addressing questions not easily approachable
11 minimal- or non-invasive, holds considerable promise for addressing the limitations of finger-prick b
13 immunotherapies of tumors have demonstrated promise for altering the progression of malignancies, im
14 lasmonic and catalytic activities hold great promise for analyzing chemical reactions by in situ surf
15 stems by genetic engineering has shown great promise for antibody discovery, tolerance studies and fo
16 A recent technological advance that shows promise for applications in health care, including trans
17 itive all-textile airflow sensor holds great promise for applications in smart textiles and wearable
18 ydrogenation of carbon dioxide holds immense promise for applications in sustainable fuel synthesis a
19 of microparticles using acoustic waves holds promise for applications ranging from cell sorting to th
20 ly benign lead-free oxides, which hold great promise for applications ranging from non-volatile memor
21 ls possessing memory of thermal history hold promise for applications such as neuromorphic computing,
24 e by canonical CBEs, and thus are especially promising for applications in which off-target editing m
27 coated Zn/CdS/CdSe heterojunction is greatly promising for being applied in photoelectrochemical bios
28 rd-generation sequencing technologies brings promise for better characterization of genomic structura
30 Machine learning techniques hold immense promise for better drug response predictions, but most h
32 ing across defined geographical locations is promising for better understanding HIV transmission netw
33 (3) family (X = O, S, Se, Te), are extremely promising for beyond Moore's Law computing applications
35 njectable microcomposite cryogels show great promise for biomedical applications, especially in tissu
41 cell types from renewable cell sources holds promise for cell replacement therapies for diabetes.
49 results indicate that our afferent nerve is promising for constructing self-aware neurorobotics in t
52 OFs despite their structural variability and promise for creating systems with adjustable properties.
53 les with multiple sclerosis (MS) holds great promise for deciphering immunopathogenic disease mechani
54 n is a human-associated bacterium that holds promise for delivery of therapies in the gut microbiome(
55 al properties of these compounds, indicating promise for designer quantum systems synthesized from th
56 of detection of 10pM and thereby shows great promise for detection of DA levels for early diagnosis o
58 assessment of the human face, holding great promise for development as an objective tool for surgica
59 cies and interkingdom interactions will hold promise for devising alternative strategies in antibioti
60 Machine Learning (ML) approaches have shown promise for different water resources problems, and they
67 tis (RA) patients using macrophage PET holds promise for early diagnosis and therapeutic response mon
69 ered van der Waals (vdW) crystals hold great promise for electronic, optoelectronic, and quantum devi
70 other machine learning approaches hold great promise for elucidating the functional impact of both co
71 While single-cell DNA sequencing is very promising for elucidating and understanding CNAs, our fi
72 of nanostructured Mott insulators hold great promises for emerging quantum technologies while providi
77 The simple and precise CiS measurement is promising for evaluation of cell quality or module integ
79 ectrochemical transistors (OECTs) show great promise for flexible, low-cost, and low-voltage sensors
80 w dual immunosensor chip offers considerable promise for frequent decentralized testing of I and C to
81 Ri) and activation (CRISPRa) approaches hold promise for functional gene studies and genome-wide scre
82 ductive MOFs in voltammetric detection holds promise for further development of highly modular, sensi
88 is still low; however, there is significant promise for future clinical applications as the ancestra
91 the implementation of microfluidics make it promising for future adaptation into point-of-care syste
94 amounts of benzene at low partial pressures, promising for future investigations into the industrial
95 mechanism of Sox10 regulation, which appears promising for future translational studies on PNS and CN
96 In grapevine, GCN analysis has shown great promise for gene function prediction, however, measurabl
99 The flexibility of a Bayesian framework is promising for GWAS, but current approaches can benefit f
101 r tolerance to lattice mismatch, making them promising for heterostructure formation and semiconducto
102 ic textures with topological stability, hold promises for high-density and energy-efficient informati
103 conductivity and robust ferroelectricity is promising for high-performance ferroelectric devices bas
106 ion in the biomedical community due to their promise for human therapeutics and an alternative to che
108 Therefore, the present electrode holds great promise for identification and quantification of drugs i
109 elated mesolimbic dopamine function may hold promise for identifying depressed individuals likely to
110 ights omics approaches and studies that hold promise for identifying future therapeutic targets.
112 The findings demonstrate that mGWAS hold promise for identifying novel genetic factors involved i
113 free-electron laser (XFEL) pulses hold great promise for imaging function in nanoscale and biological
114 nd early phase clinical trials offer renewed promise for immunologic strategies for blocking acquisit
115 ecial clamping device using gas mixtures are promising for implant activation by swiftly and effectiv
118 ween T2D and CHD is beginning to provide the promise for improved prevention and treatment of both di
121 ted medical diagnostic AI systems hold great promise for improving access to care, increasing accurac
122 ays in malignant cells have shown tremendous promise for improving clinical outcomes for patients wit
124 nting forecasts with internet data has shown promise for improving forecast accuracy and timeliness i
126 nflammatory and anti-fibrotic effects are of promise for improving healing by balancing the primary d
127 rentiated disease stratification holds great promise for improving individualized diagnosis and progn
128 r frailty assessment and interventions holds promise for improving patient outcomes before and after
130 (PTT) to treat many diseases, and hold great promise for improving the diagnosis and treatment of dis
131 ues, and therapeutic targets that have shown promise for improving the management of patients with th
133 sed palliative care interventions have shown promise for improving the ways that patients and family
135 orbital angular momentum (OAM) of light show promise for increasing the bandwidth of optical communic
136 een tumors and the immune response holds the promise for increasing the response to current immunothe
137 wo degenerate magnetic ground states and are promising for increasing storage density, but remain une
138 ased cancer immunotherapies have shown great promise for inducing clinical regressions by targeting t
139 and ease of solution processing makes MXene promising for integrated RF components in various flexib
140 transneuronal spread of AAV1 generates great promise for its application as a unique tool for manipul
142 Spectrally resolved photoacoustic imaging is promising for label-free imaging in optically scattering
146 ion approach is fully automated, robust, and promising for live-time treatment planning and research
147 stainable intensification of pasture is most promising for local development, where large relative in
150 redox eutectic based strategy is potentially promising for low-cost and high-energy storage systems.
153 as of research are highlighted as especially promising for making advances in pneumonia, acute hypoxe
155 ibility with roll-to-roll processing make it promising for many applications, including ultrathin fle
156 content addressable memory (CAM)-shows great promise for mapping a diverse range of computational mod
157 (NIR-II) imaging at 1100-1700 nm shows great promise for medical diagnosis related to blood vessels b
161 unction as two panels, these biomarkers show promise for monitoring pharmacodynamic responses to sulf
164 ically carried by vortex light beams holds a promise for multidimensional high-capacity data multiple
165 acetyl-lysine reader bromodomains, has shown promise for multiple cancers and neurodegenerative disea
166 ion in swab samples, this system holds great promise for multiplexed detection in other clinically re
170 y spin-orbit torque (SOT) holds considerable promise for next generation ultralow-power memory and lo
171 heir monolayer 2D analogues have shown great promise for next-generation electronic materials as well
172 -metal batteries with solid electrolytes are promising for next-generation energy-storage devices.
173 fore, the ECO/pABCA4 based nanoparticles are promising for non-viral gene therapy for Stargardt disea
176 The technology is highly versatile and holds promise for numerous applications that are previously di
177 and sensitivity, which in turn, offers great promise for numerous applications, spanning from bioanal
179 rability, and low cost, which make it highly promising for on-site pathogen detection of bovine masti
182 smaller than electrical antennas offers the promise for orders of magnitude efficiency improvement o
183 lts demonstrate that this novel approach has promise for overcoming two major issues in human islet t
184 ards personalized medicine holds significant promise for p53 reactivating compounds and could have wi
185 nhibitor drugs hold considerable therapeutic promise for patients with OASC and stimulate the institu
187 d hydrogels with angiogenic cells hold great promise for penile reconstruction to restore reproductiv
188 for studying HBV/HDV co-infections and holds promise for performing chemical library screens and impr
189 ng, we suggest ensembleCNV holds significant promise for performing genome-wide CNV association studi
190 ts present in the human body and holds great promise for personalized health monitoring owing to its
194 le lifespans, and high power densities, hold promise for powering flexible fabric-based electronics.
195 mples investigated, our approach shows great promise for predicting in vivo anti-androgenicity (i.e.,
200 Bead-based immunoassays have shown great promise for rapid and sensitive protein quantification.
201 sis of drugs of abuse and nerve agents holds promise for rapid countermeasures for protecting soldier
202 mong these strategies, biosensors hold great promise for rapid detection of arsenic, in particular, n
203 te measurement of methanol in spiked breath, promising for rapid screening of methanol poisoning and
206 tained on the homemade columns, offering the promise for reasonable column efficiencies in TRLC despi
207 g topical corticosteroids in mice are highly promising for recovery of spirochetes, further optimizat
209 ng and activation of hypoxia signaling holds promise for rescuing regenerative activity in old muscle
212 gs, and while these technologies offer great promise for revolutionizing AF detection and screening,
213 able lithium (Li) metal batteries hold great promise for revolutionizing current energy-storage techn
214 intelligence and digital slide scanning show promise for revolutionizing the clinical parasitology la
215 as capacitive deionization have shown great promise for salt removal and nutrient recovery, but thei
218 noble-metal-free heterogeneous catalysts is promising for selective oxidation of aromatic alcohols;
221 logies have become state of the art and show promise for speeding up the breeding process in early ge
226 alent inhibitors are currently showing great promise for systems that are normally difficult to targe
227 es at environmental pH values) that may hold promise for the deactivation of proteinaceous contaminan
228 ger distinct signaling pathways, holds great promise for the design of safer and more effective drugs
229 e presented VHH-based technology holds great promise for the development of bunyavirus antiviral ther
231 t gene expression using small molecules hold promise for the development of new therapeutics targetin
233 revealed that the breitfussin scaffold holds promise for the development of selective kinase inhibito
235 ermeability and selectivity; they hold great promise for the enormous challenging separations in ener
236 l details of catalytic systems holds immense promise for the fundamentals-based bottom-up design of n
237 -crystallization strategy holds considerable promise for the future design and synthesis of more adva
239 essed at early onset of carcinogenesis, hold promise for the identification of subjects with a precli
241 ble performance obtained in this study shows promise for the n-DAMO application in domestic wastewate
242 ding chemical vapor deposition, show broader promise for the preparation of high-quality molecular fr
243 les with suspected infectious agents), shows promise for the rapid phylogenetic characterization of o
244 The electrochemical splitting of water holds promise for the storage of energy produced intermittentl
246 ammonia removal in cirrhotic rats and holds promise for the treatment of hyperammonemic crises-assoc
247 ptor-1) modulators including fingolimod show promise for the treatment of ischemic and hemorrhagic st
248 266I) in tumor cells holds great therapeutic promise for the treatment of MCC and many other STING-de
250 ing phase I-III clinical trials or that show promise for the treatment of neurological conditions tha
251 f cannabinoid type 2 receptor (CB(2)R) holds promise for the treatment of numerous conditions, includ
252 gs acting at M1/M4 muscarinic receptors hold promise for the treatment of symptoms associated with br
253 es (mechanoresponsive molecules) offer great promises for the development of smart force-responsive m
254 t functionalized, highly porous polymers are promising for the adsorptive capture of boric acid, a ne
255 Measurement of optic disc elevation appears promising for the detection of elevated intracranial pre
257 The proposed electrochemical sensor can be promising for the development of simple low-cost water q
258 features indicate that MOF-coated probes are promising for the direct and rapid monitoring of polyflu
259 brium reactive environment, which makes them promising for the fabrication of advanced nanomaterials
260 edded hexagonal porous carbon nanosheets are promising for the hydrogen evolution reaction (HER), res
262 of Ca(2+) responses in a neural-type cell is promising for the potential use of nanosecond bipolar pu
264 Deutetrabenazine, a deuterated drug that is promising for the treatment of Huntington's disease(2),
270 (3,4-ethylenedioxythiophene) has shown great promise for thermoelectric generators, however, the thic
275 vironmental cues with drug experiences holds promise for treating addiction, yet accessing the distri
276 class of bioactive lipids, which show great promise for treating diabetes and inflammatory diseases.
277 gulation of endogenous utrophin offers great promise for treating DMD, as it can functionally compens
278 and neuromodulation technologies hold great promise for treating mood and other brain disorders in n
284 tes as an in vitro research tool holds great promise for understanding drug-induced cardiotoxicity of
285 Resource-rational approaches offer much promise for understanding human cognition, especially if
289 cted, uncharged aliphatic bis-oximes holding promise for use as protonation-dependent, conformational
291 this strain of Synechocystis sp. shows great promise for use in phycoremediation, with potential to r
292 this conductive variant of DNA demonstrates promise for use in synthetic biological constructs as a
294 ectral image quality and data throughput are promising for use toward analytical VCD measurements.
296 hereby the wetting properties of solids, has promise for various physical, chemical, biological and i