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1                                              Degradable aliphatic polyesters are the cornerstones of
2 e surface ligands capable of binding to DNA, degradable aliphatic-ester dendritic scaffolds, and hydr
3                                      The non-degradable analogue of ATP alpha,beta-methylene ATP (alp
4           It gives a detailed summary of non-degradable and biodegradable systems and their applicati
5                   The resulting P(MBL)ROP is degradable and can be readily postfunctionalized into cr
6                                              Degradable and cell-compatible hydrogels can be designed
7                     The cryoGelMA conduit is degradable and could be completely degraded in 2-4 month
8 ppearance in the literature, a wide range of degradable and non-degradable polymers have been demonst
9  on fibroblast migration through collagenase-degradable and plasmin-degradable hydrogels and on smoot
10 arth abundant materials which are also fully degradable and recyclable.
11 oting characteristics, but it is also highly degradable and thus unsuited for several applications.
12 t the structural differences between readily degradable and undegradable micelles are rather minor, p
13 ition, a strain that expresses a temperature-degradable ATPase subunit of the 19S regulatory complex
14 gen species (ROS), is an intralysosomal, non-degradable, auto-fluorescent macromolecule which accumul
15 This liquid metal-based DDS with fusible and degradable behaviour under physiological conditions prov
16 polymers fulfill an unmet need for a readily degradable biocompatible polycarbonate.
17  this, three different types of macroscopic, degradable biomaterial hydrogel scaffolds were employed:
18 the availability of appropriate orthogonally degradable block copolymers for use as templates.
19 f drugs with SPIONs including thermo- and pH-degradable bonds, amide linkage, redox-cleavable bonds,
20 vant pharmaceutical that is otherwise poorly degradable by a bacterial community encountered in conve
21            These materials could be made non-degradable by epoxidation of the OND linkers without slo
22 gion of p73 results in a protein that is not degradable by Mdm2.
23 resulted in a p53 protein that was no longer degradable by the viral proteins.
24                                          Non-degradable capsules show long-term stability, whereas th
25 ading, rapidly release curcumin in vitro via degradable carbamate bonds, and retain in vitro bioactiv
26 ether, we believe that tethering proteins by degradable carbamate linkers is a promising strategy to
27 f lysozyme to poly(ethylene glycol) (PEG) by degradable carbamate linkers.
28 ial cells occurs when a surplus of an easily degradable carbon source (e.g., volatile fatty acids, VF
29 hods for green synthesis of useful naturally degradable carbon-based nanomaterials, to device operati
30 dy showed an enhanced clearance for the acid-degradable carrier, even after multiple dosing.
31                        Therefore, these acid-degradable cationic nanohydrogel particles can be consid
32 nhanced in vitro gene knockdown for the acid-degradable cationic nanoparticles compared to their non-
33 uccessful application of peptide linkers for degradable cationic polymers and DNA release.
34                                              Degradable cationic polymers are desirable for in vivo n
35                                              Degradable, cationic poly(beta-amino ester)s (PBAEs) wit
36                   Turnover studies using non-degradable CE and protein labels showed markedly increas
37 nd differentiation, can be controlled within degradable, cell-compatible hydrogels with temporal tuni
38 s 1.8 days (acetaminophen, ibuprofen) to not degradable (chlorthalidone, fluconazole).
39               These results suggest that the degradable Chol-PVA-PEG polymer is able to self-assemble
40  expression of either the wild-type or a non-degradable CKAP2 led to a mitotic arrest with monopolar
41      The capture-release capability of these degradable coatings is harnessed by a mixing chamber and
42                                    Using MMP-degradable collagen lattices or nondegradable substrates
43 drug delivery device, where air is used as a degradable component of our material to control drug rel
44                                     The well-degradable compounds showed slow equilibration and the l
45 n example for extremely difficult and slowly degradable compounds, CO2 production was close to the th
46 ronment, a Golden Age met with selective and degradable compounds.
47 ponents, including biodegradable polymer/non-degradable conductive polymer/dopant, biodegradable cond
48 pon Ca(2+) binding, native CaM assumes a non-degradable conformation, which most of the age-damaged s
49       When implanted subcutaneously in rats, degradable constructs containing VEGF and arginine-glyci
50 er significantly decreased toxicity over non-degradable counterparts.
51                      Introduction of various degradable cross-linking agents into the system resulted
52 be present when either the degradable or non-degradable crosslinker was used.
53 t study, bioactive hydrogels with a protease-degradable crosslinker were loaded with hepatocyte and v
54 lsion polymerization with a synthesized acid-degradable crosslinker.
55 ized with either disulfide or hydrolytically degradable crosslinkers, is critical to the high efficie
56        We found that the expression of a non-degradable cyclin B in embryos also caused an anaphase a
57 d attached to the arrested spindles, and non-degradable cyclin B levels remained high on both the cen
58 proteasome inhibitor or by expression of non-degradable cyclin B, Cdk inhibitors will nonetheless ind
59 nction, principally by overexpression of non-degradable cyclin B1 or securin, we find here that separ
60   We address this issue by reporting modular degradable dendrimers that achieve the required combinat
61 hMSCs encapsulated in hydrogels with the MMP-degradable Dex-peptides had elevated levels of ALP activ
62                                          The degradable diblock conjugate (2P-EPI) was synthesized by
63  end, we designed second-generation backbone-degradable diblock N-(2-hydroxypropyl)methacrylamide (HP
64 olymerizable siRNA pro-drug conjugate with a degradable, disulfide linkage was prepared.
65 em consisting of a deoxyribonuclease (DNase)-degradable DNA nanoclew (NCl) embedded with an acid-resp
66 , which is integrated constructed as a novel degradable drug device, demonstrates surprisingly effici
67  In addition, the hydrogel is designed to be degradable during cell culture, generating extra space t
68 ers were then thermally cross-linked to form degradable elastomeric structures.
69   A versatile method for preparing amorphous degradable elastomers with tunable properties that can b
70  classes of biologically and environmentally degradable electronic devices.
71 ess in both nondegradable gels and gels with degradable elements.
72 ly bonding the drug through a hydrolytically degradable ester linkage to a common hydrophilic polymer
73       By using these principles, we designed degradable films capable of extended release as well as
74 tion of WNT signaling by expression of a non-degradable form of beta-catenin specifically in SOX2-pos
75 contrast, neuroblasts overexpressing the non-degradable form of canonical APC/C substrates required f
76  approaches as well as expression of the non-degradable form of Cx43 significantly restore its accumu
77 t strain in which a functional but a rapidly degradable form of eIF5 fusion protein was synthesized f
78 t strain in which a functional but a rapidly degradable form of eIF6 fusion protein was synthesized f
79 escribe the effects of over-expressing a non-degradable form of geminin in various cell lines.
80 hich destabilizes the cbb(3) oxidase into a "degradable" form, perhaps by altering its conformation.
81 ild-type mouse class I MHC (H-2K(b)) but not degradable glycosylation mutants of H-2K(b) induced ER s
82      We examined a transgenic mouse in which degradable green fluorescent protein (GFP) is driven by
83 ugates and free drugs, the second-generation degradable high-molecular weight conjugates showed disti
84  results indicate that the second-generation degradable HPMA copolymer carrier can provide an ideal p
85 different therapeutic delivery systems, acid degradable hydrogels and nanoparticles.
86 n through collagenase-degradable and plasmin-degradable hydrogels and on smooth muscle cell migration
87 ochemical and physical signals in macroscale degradable hydrogels are engineered that can regulate ph
88                    Finally, an enzymatically-degradable hydrogels of P(MAA-co-NVP) crosslinked with t
89                        The nanocarrier-based degradable hydrogels provided controlled release of lact
90 oxyethyl methacrylate to form hydrolytically degradable hydrogels through free-radical-initiated cros
91 ight into the design of new cell-compatible, degradable hydrogels to understand and modulate cellular
92 oly(ethylene glycol) (PEG) nanocarrier-based degradable hydrogels were developed for the controlled r
93 mooth muscle cell migration through elastase-degradable hydrogels.
94 le, injectable alginate microspheres and non-degradable, implantable poly(ethylene vinyl acetate) mat
95 ct local delivery via diffusive release from degradable implants or direct intra-cerebral injection c
96 NP) formulations, and was found to be slowly degradable in phosphate buffered saline (PBS) but more r
97                      The particles are fully degradable in response to esterases due to an embedded e
98                                       When a degradable inimer was applied, the hyper-stars showed fa
99                  In this work, we engineered degradable, injectable alginate microspheres and non-deg
100  polymer/dopant or biodegradable polymer/non-degradable inorganic additives.
101 eutic antifungal agents in humans and easily degradable insecticides in agriculture.
102  in cell culture and xenograft models, a non-degradable IP3R3 mutant sensitizes tumour cells with low
103  dsRNA can be loaded on designer, non-toxic, degradable, layered double hydroxide (LDH) clay nanoshee
104  in which either disulfide-responsive or non-degradable linkages are incorporated.
105 radable nanomaterials incorporating specific degradable linkages that respond to various stimuli and
106 ubicin (DOX) to HPMA copolymer, and an MMP-2-degradable linker (PLGLAG) connected tumor-homing and -p
107                                        A non-degradable lipid radiolabel showed that lipid components
108  constant was independently verified using a degradable lipid radiolabel that eliminated from the bra
109                Herein, we identify promising degradable lipidoids and describe new design criteria th
110              Here, we have synthesized 1,400 degradable lipidoids and evaluate their transfection abi
111 o either free siRNA or siRNA-loaded non-acid-degradable lipoplex formulations, respectively.
112  conductive (3 x 10(5) S m(-1) ) features in degradable materials at ambient conditions over large ar
113  some contents appear degraded, but some non-degradable materials can subsequently be found in more r
114 omising strategy of utilizing 100% green and degradable materials in novel electronic and energy harv
115  shrinkage materials and preparation of (bio)degradable materials) of rROP monomer-containing materia
116 he impetus for active study of the design of degradable materials, intelligent delivery systems and a
117                                              Degradable matrices containing expression plasmid DNA [g
118        Here we introduce a biocompatible and degradable mesostructured form of silicon with multi-sca
119 tic (i.e., non-degradable) or dynamic (i.e., degradable) microenvironments.
120              APCs that phagocytosed the acid-degradable microgels containing ovalbumin were capable o
121                                     The acid-degradable microgels developed in this article should th
122          Ovalbumin is released from the acid-degradable microgels in a pH-dependent manner; for examp
123 rotecting the structural integrity of highly degradable miRNAs, providing a useful means for maintain
124 l base materials, formation chemistries, and degradable moieties is necessary to achieve the appropri
125          In addition, the injection of a non-degradable Mos (MBP-Mos) into the first cycle resulted i
126    Targeting the expression of gai (a non-GA-degradable mutant form of GAI) in the root meristem disr
127 design, synthesis and properties of backbone degradable N-(2-hydroxypropyl)methacrylamide (HPMA) copo
128 cently, we developed 2nd generation backbone degradable N-(2-hydroxypropyl)methacrylamide (HPMA) copo
129 y, which will guide the development of these degradable nanoconstructs to reach their potential for c
130 ondition in such patients, oxidation-induced degradable nanogels for iron chelation were rationally d
131 scribe the synthesis and characterization of degradable nanogels that display bulk erosion under phys
132  Thus, we have demonstrated the synthesis of degradable nanogels that erode under conditions and on t
133 lowed for the synthesis of cross-linked (bio)degradable nanogels.
134                       The generality of this degradable nanoparticle formulation should allow for the
135 esized that controlled release of PHCCC from degradable nanoparticles (NPs) might address these chall
136 dental device fracture or migration, the non-degradable nature of these materials risks intestinal ob
137 utility of OND linkers in the preparation of degradable network materials with potential applications
138                                    BPLPs are degradable oligomers synthesized from biocompatible mono
139 ells that are chemically functionalized with degradable oligonucleotide 'Velcro', allowing rapid, spe
140 psules show long-term stability, whereas the degradable ones break down their shells, enabling the co
141 The main biotransformation product, ATO, was degradable only in aerobic conditions, as evidenced by a
142 isfolded polypeptides into harmless protease-degradable or biologically active native proteins.
143 rly all electrospun scaffolds are either non-degradable or degrade hydrolytically, whereas natural EC
144 ies were shown to be present when either the degradable or non-degradable crosslinker was used.
145 very large numbers of ionically crosslinked (degradable or nondegradable) barrier layers cannot block
146 we have generated a toolkit of conditionally degradable or stabilisable orthologous dCas9 or Cpf1 eff
147  modulate cell response in static (i.e., non-degradable) or dynamic (i.e., degradable) microenvironme
148 of the aquifers, which is present as pyrite, degradable organic carbon, and geogenic U(IV) minerals.
149 uch as biosensors that are biocompatible and degradable over a controlled period of time can be forme
150 plicability in the characterization of other degradable particle constructs.
151 n, which may be used for the design of novel degradable pathogen-specific, and hence, environmentally
152                     In vitro testing of this degradable PCL delivery platform reveals approximately 4
153 division despite the presence of nuclear non-degradable Pds1.
154 e peptide-modified, matrix metalloproteinase-degradable PEG hydrogels formed lumenized epithelial sph
155 able attention has been paid on synthesis of degradable PEI derivatives using low MW one because low
156 ry to incorporate a matrix metalloproteinase-degradable peptide crosslinker (KKCGGPQG downward arrowI
157  diacrylate derivatives with proteolytically degradable peptide sequences included in the backbone of
158 stered until released by cleavage of the MMP-degradable peptide tether triggered by cell-secreted MMP
159 -terminus of a matrix metalloproteinase(MMP)-degradable peptide, which was then easily co-polymerized
160                  In this work, enzymatically degradable peptide-HPMA copolymers were synthesized by R
161 of enzymatic reaction of unstable and slowly degradable peptides with trypsin, respectively, and sugg
162                           For polar and more degradable pesticides, not many data on long-term persis
163                                            A degradable pH-sensitive hydrazone bond between a long sh
164 icle-based DNA delivery system composed of a degradable, pH-sensitive poly-beta amino ester and poly
165 stamine (BAC) cross-linked core out of a non-degradable pNIPAM shell.
166 morphogenetic protein over several days from degradable poly(beta-amino ester) based multilayers, thi
167 ently reported the parallel synthesis of 140 degradable poly(beta-amino esters) via the conjugate add
168 capsulated in cell-adhesive, proteolytically-degradable poly(ethylene) glycol-based hydrogels.
169 ve studies of bulk samples of hydrolytically degradable poly(lactic acid) (PLA) vs core-shell block c
170  cartilage regeneration, was encapsulated in degradable poly(lactic-co-glycolic acid) (PLGA) micropar
171            We present the first well-defined degradable poly(phosphonate)s with adjustable UCST.
172  To this end, we generated a library of >500 degradable, poly(beta-amino esters) for potential use as
173 ormation of carbon dioxide and epoxides into degradable polycarbonates (CO(2)-based copolymer) has be
174                                        Other degradable polycationic gene carriers such as polyamidoa
175 the recent developments on these three major degradable polycations as promising carriers for deoxyri
176 le method to prepare clinically translatable degradable polyesters.1 A variety of functional groups h
177  FTOH biotransformation pathways toward more degradable polyfluoroalkylcarboxylic acids, such as 5:3
178 d within newly formulated alginate-glutamine degradable polylysine (A-GD-PLL) microcapsules.
179 NaYF4 :Tm.Yb upconverting nanocrystals in UV-degradable polymer capsules, it is possible to access ef
180  demonstrate, for the first time, a backbone-degradable polymer directly synthesized via CVD.
181  the need for an environmentally responsive, degradable polymer has risen to improve treatment outcom
182 combination of Treg inducing factors through degradable polymer microspheres (TRI microspheres; TGF-b
183 nase inhibitor, masitinib, was released from degradable polymer microspheres delivered from the surfa
184 ned coating a commercial gelatin sponge with degradable polymer multilayer films containing vancomyci
185 capsulating a single siRNA molecule within a degradable polymer nanocapsule with a diameter around 20
186 d PPF can be covalently cross-linked to form degradable polymer networks, which have been widely expl
187  catalytic activity is critical to improving degradable polymer production.
188 ion of nanoparticles formulated with an acid degradable polymer shell and encapsulated HSA exhibited
189 f chemokine ligand 22 (CCL22), composed of a degradable polymer with a proven track record of clinica
190  delivery using a far ultraviolet (UV) light-degradable polymer, which allows noninvasively triggered
191  to yield a well-defined, alkene-substituted degradable polymer, which was used as a common backbone
192                                      An acid-degradable polymer-caged lipoplex (PCL) platform consist
193 esign principles of traditional and backbone degradable polymer-drug conjugates as well as the develo
194 tion of mRNA for delivery to the lungs using degradable polymer-lipid nanoparticles.
195 as encapsulated in a positively charged acid-degradable polymeric nanogel to facilitate decoration of
196 uinoline-based TLR7/8 agonist to 50-nm-sized degradable polymeric nanogels the potency of the agonist
197 is study, antigens were encapsulated in acid-degradable polymeric particle carriers to cascade cytoto
198 processes have implications in the design of degradable polymers as supramolecular scaffolds for biol
199 carbonates for the realization of functional degradable polymers by ring-opening polymerisation has d
200                              These cationic, degradable polymers contain pyridyldithio functionalitie
201               By this means, non cell-toxic, degradable polymers exhibiting UCST behavior in water be
202 terature, a wide range of degradable and non-degradable polymers have been demonstrated in drug deliv
203  new class of self-assembling, photo- and pH-degradable polymers of the polyacetal family is reported
204                         Herein we report new degradable polymers that stabilize proteins to environme
205 al product-derived materials and functional, degradable polymers to provide a new platform for functi
206  growth factor bFGF can be incorporated into degradable polymers used as delivery devices for hepatoc
207                                        These degradable polymers were then employed as excipients for
208 DO), results in well-defined, hydrolytically degradable polymers, as confirmed by FTIR spectroscopy a
209                                            A degradable polyphosphoester (PPE)-based cationic nanopar
210 s to a tissue engineering approach that uses degradable porous material scaffolds integrated with bio
211 201 in water makes it the first example of a degradable porous solid carrier for such fumigants.
212 for adaptation with different nanoparticles, degradable pre-polymers, and various therapeutics.
213 f p53 by deletion also results in a non-Mdm2-degradable protein.
214                       Expression of this non-degradable RB is found to antagonize the cytotoxic effec
215                      We present here a fully degradable, remotely controlled, implantable therapeutic
216 ed SELPs with matrix metalloproteinase (MMP) degradable sequences inserted in distinct regions of the
217 rthermore, both adhesive and proteolytically degradable sequences were required for cell migration to
218 s progresses normally in the presence of non-degradable Sgo1, indicating that degradation of Sgo1 is
219 h suggests that cholesterol analogs with non-degradable side chains represent a novel class of anti-m
220 ficial hydrogel matrices presenting protease-degradable sites, cell-adhesion motifs, and growth facto
221 esterol because (i) a non-hydrolyzable and a degradable SL analog elevated cellular cholesterol to si
222 ost acts as a significant and preferentially degradable source of bioavailable carbon in Arctic fresh
223  and nonfood applications as a renewable and degradable source of carbon and energy.
224    Differently from muscle, PG in liver is a degradable source of glucose and readily depleted by fas
225 cationic nanoparticles compared to their non-degradable spermine analogues.
226 eptide binding, removal, and conversion to a degradable subfragment) are mediated by features that re
227             Bioavailability limitations of a degradable substrate can therefore either improve the ov
228  followed by transit peptide conversion to a degradable substrate.
229 safe mechanism that expands the range of RQC-degradable substrates.
230 es flanked by matrix metalloproteinase (MMP) degradable substrates.
231  h(-1), respectively), despite identical MMP degradable substrates.
232 gate several drawbacks associated with other degradable sustained delivery technologies in the market
233  success of hydroxy acid based polyesters as degradable sutures and controlled drug delivery matrices
234 rubicin, respectively, through a cathepsin B degradable tetrapeptide linker (-Gly-Phe-Leu-Gly-).
235     Doxorubicin was linked via a lysosomally degradable tetrapeptide sequence to N-(2-hydroxypropyl)m
236 the fabrication of conformal, hydrolytically degradable thin films capable of administering sustained
237 e PEG-LA nanocarriers with 4-arm PEG-NHS via degradable thioester bonds.
238 ilable; (2) many biocides are short-lived or degradable through abiotic and biotic processes, but som
239 building blocks known to be biocompatible or degradable to natural metabolites in vivo, are described
240  recalcitrant under anaerobic conditions but degradable under aerobic conditions can be biodegraded a
241  mechanical deformations, but are completely degradable under enzymatic action.
242                  The resulting hydrogels are degradable under simulated physiological conditions and
243 y control, while incorporation of responsive degradable units enables cell- and/or user-directed degr
244                                     However, degradable upper critical phase separation (UCST) block
245  vector encoding a non-phosphorylatable, non-degradable variant of IkappaBalpha resulted in normal in
246      The synthesis and characterization of a degradable version of poly(acrylic acid), poly(glyceric
247 d only very slowly over multiple passages, a degradable version of the polycation was observed to mak
248   The persistence of PPs ranged from readily degradable with a dissipation half-life (DT50) as short
249 n and eventual disintegration into naturally degradable yet potentially reusable byproducts.

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