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1 tion and Tissue Plasticity in Cardiovascular Rejuvenation'.
2 s described in the theory of glass aging and rejuvenation.
3 and facilitates vacuole re-acidification and rejuvenation.
4 n exposure remain refractory to ICB-mediated rejuvenation.
5 lomas following microneedle therapy for skin rejuvenation.
6  and daughter cells that underlies aging and rejuvenation.
7 cious nonsurgical alternatives in periocular rejuvenation.
8 ques using facial injectables for periocular rejuvenation.
9 gainst chemotherapeutic toxicity and promote rejuvenation.
10 xhaustion and barrier of ICB-mediated T cell rejuvenation.
11 orated interest in the science of ageing and rejuvenation.
12 dable, minimally invasive approach to facial rejuvenation.
13 heir use toward the goal of achieving facial rejuvenation.
14 levant facial anatomy and its application on rejuvenation.
15 ng and evaluate critically the potential for rejuvenation.
16 hoot apices were cultured in vitro to induce rejuvenation.
17 ns including acne vulgaris, acne scars, skin rejuvenation and hair growth, and for therapeutic applic
18 ss putative mechanisms for blood-borne brain rejuvenation and suggest promising avenues for future re
19  Ink4a in aged ETPs results in their partial rejuvenation and that this can be accomplished by in viv
20                                       During rejuvenation, beta-catenin signalling, a pathway importa
21 ndrial fission and fusion contribute to this rejuvenation, but local protein synthesis is also likely
22  indicate that gamete formation brings about rejuvenation by eliminating age-induced cellular damage.
23                                         This rejuvenation effect is recapitulated by engraftment of y
24 a discussion of the current status of thymic rejuvenation efforts associated with: sex steroid ablati
25 f cell fate inheritance, cellular aging, and rejuvenation, i.e., the resetting of age in immortal lin
26 o offers opportunities for studying cellular rejuvenation in real time.
27 ese findings provide the basis for stem-cell rejuvenation in sarcopenic muscles.
28 ve also raised the possibility of functional rejuvenation in the aged hippocampus.
29                The art and science of facial rejuvenation is an ever-evolving field of medicine, as e
30                                              Rejuvenation is the configurational excitation of amorph
31           We also experimentally demonstrate rejuvenation level control in Zr(55)Al(10)Ni(5)Cu(30) bu
32 ecent work points to a conserved replicative rejuvenation mechanism that works by preventing the inhe
33                                Heterogeneous rejuvenation naturally should occur for glasses with fre
34       Mitochondria, therefore, need constant rejuvenation no matter how far they are from the soma.
35 li, as predicted by the model, (1) aging and rejuvenation occurred simultaneously in a population; (2
36 e tissue in rejuvenated leaves suggests that rejuvenation occurs nearly simultaneously in all leaf pr
37 clinical applications, such as surgery, skin rejuvenation, ocular and soft tissue recontouring, and a
38  and genetic interventions can result in the rejuvenation of aged stem cells.
39 ical agent is beneficial in part through its rejuvenation of aged tissue stem cells.
40 ized graft into juvenile recipients leads to rejuvenation of both thymic structure and function, sugg
41                                 We observe a rejuvenation of circumpolar deep waters synchronous and
42  reconstruction for repair, replacement, and rejuvenation of damaged and/or ageing tissues and/or org
43 sion is critical for asymmetric division and rejuvenation of daughter cells.
44     Our results strengthen the argument that rejuvenation of ecosystem function requires restoration
45    Immune-checkpoint-blockade (ICB)-mediated rejuvenation of exhausted T cells has emerged as a promi
46 echniques have arisen that are useful in the rejuvenation of facial skin.
47  on proliferation, survival, metabolism, and rejuvenation of hCPCs in vitro and in vivo.
48 aling and reveal new targets for therapeutic rejuvenation of impaired T-cell responses during chronic
49 nent of the response to dark exposure is the rejuvenation of inhibitory synaptic transmission, result
50 es these advances with a focus on ageing and rejuvenation of key endogenous stem and progenitor cell
51 The observation that epc mutations block the rejuvenation of leaf primordia in excised shoot apices s
52 pithelial cell motility is critical for self-rejuvenation of normal intestinal mucosa, wound repair,
53 are ameliorated by Pim-1 kinase resulting in rejuvenation of phenotypic and functional properties.
54 eventing this recruitment partially inhibits rejuvenation of remyelination.
55                                              Rejuvenation of senescent hCPCs will improve the outcome
56 enew or extend replicative potential via the rejuvenation of telomere length.
57 ity, might lead to structural and functional rejuvenation of the aged brain.
58 in the early repair process and required for rejuvenation of the aged phenotype.
59 h expectations from this new opportunity for rejuvenation of the aging or diseased body.
60                         Among organ systems, rejuvenation of the central nervous system (CNS) is argu
61             Thus, the prospect of meaningful rejuvenation of the CNS has seemed an impossible goal; h
62                                              Rejuvenation of the DG by enhancing integration of adult
63 ion, and promoted either the recovery or the rejuvenation of the functional insulin-producing beta ce
64 ly constant in face lift surgery is the goal-rejuvenation of the lower two thirds of the face and nec
65 niques used by oculoplastic surgeons for the rejuvenation of the periorbital area.
66 entation may be an important process for the rejuvenation of the surfaces of near-Earth asteroids, an
67 multiple micro-sized needles to promote skin rejuvenation or increase transdermal delivery of topical
68 clear signatures of time-dependent aging and rejuvenation physics.
69                             In contrast, the rejuvenation process is strongly affected through the pr
70 emand for nonsurgical injection-based facial rejuvenation products has risen enormously in recent yea
71                              Such blocking ('rejuvenation') protects these neurons in both in vitro a
72 f this approach, we developed a somatic cell rejuvenation protocol using serial nuclear transfer to p
73 ted from uniformity, thermal cycling induces rejuvenation, reaching less relaxed states of higher ene
74 re recently applied to investigate aging and rejuvenation related to systemic factors.
75 n studies in the broader context of systemic rejuvenation research.
76 BP17 impaired NCC in young cells, while iPSC rejuvenation restored NCC in aged cells.
77                                      Indeed, rejuvenation strategies which have targeted the thymic s
78 ermane for the design of long lasting thymic rejuvenation strategies.
79                         Here we review brain rejuvenation studies in the broader context of systemic
80 sed to identify causes of aging and evaluate rejuvenation therapies.
81 helicase as a potential molecular target for rejuvenation therapies.
82             Evaluating the prospects for HSC rejuvenation therefore ultimately requires approaching t
83 environment, these tissues undergo continual rejuvenation through homeostasis, and, in addition, they
84  we propose a method to control the level of rejuvenation through systematic thermal processing and c
85 is Review focuses on the emerging biology of rejuvenation through the lens of epigenetic reprogrammin
86 tate in a metallic glass, such as ageing and rejuvenation, through a set of simple equations describi
87 nit composition at glutamatergic synapses, a rejuvenation to a composition similar to developmentally
88 ues for lower eyelid and midface restoration/rejuvenation using filler agents.

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