Synchronized cilium loss may prolong skin growth by removing a brake on cell-cycle re-entry
In reconstructed skin, broader fibroblast clock phases may help repair finish by preserving cilia, proposed brakes on renewed cell division. The hypothesis is rejected if specifically altering cilia leaves growth completion unchanged while repeated inflammatory pulses determine the outcome.
Stage of verification
- Hypothesis published2026-09-25
- Indirect evidenceAssessed at 5 of 10
- Direct testAwaited
Map of the hypothesis
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Where in the body
Ageing mechanism
Kind of knowledge gap
A double ring marks the main placement where a group contains several values.
Target map
Every target of every published hypothesis, each with the actions a hypothesis can propose on it. The targets and the actions of this hypothesis are drawn solid.

Rhythm or programme
Circadian phase distribution
The distribution of cells across different phases of their molecular clocks
Where this hypothesis actsDermal fibroblasts during recovery after a sleep shift
Hypotheses on this target 3
Inhibition
Activation
Function preservation
Feedback restoration
Rhythm restoration3
Direct measurement

What is proposed
Rhythm restoration
Broaden the distribution of fibroblast clock phases while keeping the mean phase unchanged
With whatNot stated in the record
HowCompare narrow and broad phase distributions in reconstructed skin with matched mean phase, clock amplitude, cell composition, injury and total treatment
Possible result
Possible shorter periods of shared cilium loss and less residual proliferation before the next cycle
From the recordПоэтому намеренное распределение дермальных клеток по разным фазам может обеспечивать более полное завершение восстановления, чем точная межтканевая синхронизация.

Rhythm or programme
Primary cilium assembly
The formation or reformation of primary cilia on cells
Where this hypothesis actsRecovering dermal fibroblasts after initial migration and between treatment exposures
Hypotheses on this target 1
Inhibition
Activation1
Function preservation
Feedback restoration
Rhythm restoration
Direct measurement

What is proposed
Activation
Restore primary cilia after initial migration
With whatNot stated in the record
HowIntervene in cilium assembly with two independent verification methods and restoration of the original phenotype; specific interventions are not stated
Possible result
Possible restraint of cell-cycle re-entry and elimination of the advantage of distributed clock phases
From the recordВосстановление ресничек после начальной миграции должно устранить преимущество распределённых фаз, сохраняя исходное рассогласование молекулярных часов.
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Every target read from the published hypotheses, each kind around its pictogram. A larger mark means more hypotheses act on that target. Point at a mark and the actions proposed on it branch out of it.
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The logic
The train of thought that ends in this hypothesis. Each stage is the reason the next exists. The master question narrows to a goal, the goal to an unknown nobody has closed, the unknown to the hypothesis proposed here. Every step below says what it rests on and what carries it.
Restoring middle-aged skin to younger function may require repair to stop reliably as well as start. The unexpected move is to deliberately spread the timing of repair cells rather than make all skin layers run together. This is a pipeline-generated proposal, not a measured result: staggered timing might prevent too many cells from losing a proposed brake on division at once.
- Treatment timed to the outer skin layer after a sleep shift is proposed to make many repairing fibroblasts dismantle their primary cilia together.
- Cells with a rebuilt projection are proposed to face a restraint on renewed division; cells that lose it together would enter a shared interval without that restraint.
- Weak remaining growth signals are proposed to sustain growth in the supporting skin layer after the outer layer has regained its protective function.
- Spreading cell timings is predicted to shorten the interval when many cells lack projections and preserve a sufficient fraction with rebuilt projections between treatments.
- That preserved fraction is proposed to let repair finish even while average clock timings remain different across skin layers.
A workshop can keep a brake on production if some supervisors are always on duty. Sending every supervisor away at the same time leaves a shared interval when small requests can keep production going.
Where the picture breaks: Cells do not supervise one another in the way people do. The proposal concerns each cell's own structures, and the supplied material does not establish how a particular fraction of restrained cells would stop growth across the tissue.
- Master questionstep 01 of 04
The intended therapy would bring the functional condition of middle-aged human skin closer to that of young people.
Rests on: The goal explicitly names younger skin function as the desired outcome, without specifying which functions would establish success.
Stated in the chain - Goal pillarstep 02 of 04
Repeated rounds of skin repair need a reliable way to limit further growth once repair is complete.
Rests on: The desired improvement in skin function is narrowed to the ability of repeated repair to stop appropriately.
AssumptionThe chain assumes that improving the stopping of repeated repair would contribute to younger skin function; the master goal does not establish that connection.
- Gap questionstep 03 of 04
After a shift in sleep timing, treatment scheduled by the internal clock of the epidermis, the outer skin layer, might worsen its timing mismatch with the dermis, the supporting layer underneath, and immune cells, which participate in defence and inflammation. Accounting for delays between these groups might prevent unfinished repair from accumulating.
Rests on: The preceding stage supplies the problem of stopping repeated repair, but does not connect that problem to sleep shifts or timing differences between skin layers.
LeapA basis linking sleep shifts and treatment timing to accumulated unfinished repair is missing from the preceding stage and the supplied source excerpts.
- Hypothesisstep 04 of 04
Staggering the internal clocks of fibroblasts, cells that build and maintain skin's supporting material, is proposed to help growth finish by keeping enough cells equipped with rebuilt primary cilia. The proposed deciding quantity is the lowest fraction of cells bearing these projections between treatments, rather than the average timing difference between skin layers.S4
Rests on: The preceding stage supplies the timing problem. Cells' projections acting as restraints on renewed division provide a literature-based foothold for the proposed alternative. Cells in Frontiers in cell and developmental biology (2020) are described through a method for studying projection loss during renewed division, but that supplied excerpt reports no outcome. More directly, Cells (2022) discusses primary cilia as structural checkpoints for renewed division in laboratory fibroblast sublines; it does not establish the proposed effect in repairing skin or identify a required fraction of cells with rebuilt projections.
Supported by literature
What is carried, and what is not. Two screened sources speak to the central projection–division link: Cells (2022, S4) discusses a structural checkpoint in laboratory fibroblast sublines, while Nature communications (2022, S8) reports projection shortening, loss and rebuilding during changes in muscle stem cells, cells that replenish muscle; neither establishes the proposed timing effect in repairing skin. No supplied source establishes the sequence from sleep shift through coordinated projection loss to prolonged skin growth, or the proposed minimum protective fraction.S4S8
Where the reasoning is carried by something unstated · 2
- Goal pillar. The chain assumes that improving the stopping of repeated repair would contribute to younger skin function; the master goal does not establish that connection.
- Gap question. A basis linking sleep shifts and treatment timing to accumulated unfinished repair is missing from the preceding stage and the supplied source excerpts. Establish the missing link before relying on this step.
How a result here could mislead · 3
- Reduced division after manipulating projection assembly could be attributed to restoring a brake, even if the intervention directly disrupts cell division through another role of the affected proteins. What closes it: The proposed two independent ways of checking the intervention and restoring the original cell behaviour must establish that the relevant effect depends on rebuilding projections. Reduced division counts as successful repair only if defect closure, protective barrier function and mechanical recovery are preserved, as the proposal requires.
- An advantage from staggered clocks could be credited to projections when it actually comes from fewer repeated inflammatory bursts, the competing explanation. Matching overall amounts of cytokines, signalling proteins exchanged between cells, could still conceal different patterns of short bursts. What closes it: The proposed measurement and reproduction of cytokine patterns in paired cultures must preserve their timing, not merely their totals. Repeated inflammatory activation must also be tracked alongside projection loss and renewed division so the rival explanation remains distinguishable.
- A negative result from rebuilding projections could appear to reject the hypothesis even if too few cells rebuilt them, or they rebuilt them outside the interval when the proposed brake matters. What closes it: Measure the fraction of cells with rebuilt projections throughout the interval between treatments and verify rebuilding after the initial cell movement specified in the proposal. The material supplies no numerical definition of a sufficient fraction; the criterion for an adequate intervention must be fixed before interpreting the outcome.
What would make this wrong. The proposed causal chain would fail if verified, specific changes to primary-cilium rebuilding during the relevant interval did not change when growth finished, while the outcome instead followed the frequency of repeated inflammatory bursts. That is the rejection condition supplied by the hypothesis.
What it would change. If this held, treatment timing aimed at younger skin function would need to account for how many repair cells retain a restraint on division between treatments, rather than rely only on aligning average clocks across skin layers. Deliberately staggered cell timing could then support more complete repair. Even a successful result in laboratory-built skin using donor fibroblasts from people aged 40–60 would not establish restoration of younger function in living human skin, long-term benefit, or a therapy with a specified treatment and dose.
Sources read · 9
FOP Negatively Regulates Ciliogenesis and Promotes Cell Cycle Re-entry by Facilitating Primary Cilia Disassembly. · Frontiers in cell and developmental biology · 2020
“To analyze cilia disassembly during cell cycle re-entry, cells were plated at roughly but below 30% confluency and grown overnight before transfection with siRNAs.”
Does not settle: This text does not establish effects in skin fibroblasts, epidermal-phase treatment, synchronized cilium loss, residual mitogenic signaling, dermal growth, or a minimum fraction of ciliated cells between exposures.
IFT139 regulates Hedgehog signaling and cilia structure through ciliary protein localization. · Biology open · 2025
Does not settle: The supplied text is a reference-list fragment and does not report experiments or results on fibroblasts, skin recovery, sleep-phase shifts, ciliary loss or re-formation, cell-cycle re-entry, or any minimum ciliated-cell fraction.
Bi-allelic variants in CEP295 cause Seckel-like syndrome presenting with primary microcephaly, developmental delay, intellectual disability, short stature, craniofacial and digital abnormalities. · EBioMedicine · 2024
“Together, these results indicated that loss of CEP295 triggers G 1 -phase arrest in a p53-dependent manner.”
Does not settle: This source does not test synchronized ciliary resorption, epidermal-phase treatment, repeated cilium formation between exposures, dermal growth after barrier restoration, or tissue-phase shifts.
Heterogeneity of the NIH3T3 Fibroblast Cell Line. · Cells · 2022
“There is increasing evidence that primary cilia are not generated simply as a consequence of the differentiated state of the cell, but that they function as structural checkpoints for cell cycle re-entry and progression [ ].”
Does not settle: Источник описывает NIH3T3-сублинии in vitro и не устанавливает причинный эффект синхронной утраты или восстановления ресничек на рост дермы, эпидермальные фазы, сдвиг сна, минимальную долю ресничных фибробластов либо восстановление кожного барьера.
Primary cilia as a targetable node between biliary injury, senescence and regeneration in liver transplantation. · Journal of hepatology · 2024
“Our results indicate that primary cilia damage results in biliary injury and a loss of regenerative potential.”
Does not settle: This source does not establish effects in skin or fibroblasts, synchronized cilium loss or re-formation between treatments, epidermal-phase timing, a minimum ciliated-cell fraction, or prolonged dermal growth after barrier recovery.
Neuron-intrinsic and glial pathways regulate sensory cilia regeneration in adult C. elegans. · bioRxiv : the preprint server for biology · 2026
“Although cilia disassemble and reassemble upon cell cycle entry and exit, respectively, in dividing cells, it remains unclear whether postmitotic cells such as neurons can regenerate these structures in vivo following injury to restore function, and whether this process recapitulates developmental ciliogenesis.”
Does not settle: This source does not test skin, fibroblasts, epidermal timing, synchronized cilium loss, mitogenic signaling, dermal growth, or a minimum fraction of cells with re-formed cilia between treatments.
Mechanical stretch promotes apoptosis and impedes ciliogenesis of primary human airway basal stem cells. · Respiratory research · 2023
“We found that prolonging the mechanical stretch of ABSCs activated apoptosis, hindered their proliferation, and impeded ciliogenesis.”
Does not settle: Открытыми остаются причинная связь между утратой первичных ресничек и повторным входом в клеточный цикл, фибробласты кожи, эпидермальные фазы, синхронизация клеток и дермальный рост.
GLI3 regulates muscle stem cell entry into GAlert and self-renewal. · Nature communications · 2022
“When satellite cells enter the cell cycle (Fig. , Activation), primary cilia length decreases sharply. Then, primary cilia disassemble prior to mitosis (Fig. , Proliferation) to reassemble specifically in the PAX7 + self-renewing cells (Fig. , Self-renewal).”
Does not settle: Источник описывает мышечные стволовые клетки и миобласты, а не дермальные фибробласты или кожу после сдвига сна. Он не проверяет синхронную утрату ресничек, длительность дермального роста, восстановление эпидермального барьера, минимальную долю клеток с ресничками между воздействиями или причинную роль ресничек как ограничения повторного входа в клеточный цикл.
Melatonin promotes hair regeneration by modulating the Wnt/β-catenin signalling pathway. · Cell proliferation · 2024
“Here, we systematically investigated the role of MLT in hair regeneration using a hair depilation mouse model.”
Does not settle: It does not establish effects of sleep-phase shifts, epidermal-phase-timed treatment, primary-cilium loss or re-formation, fibroblast cell-cycle re-entry, barrier restoration, or the minimum fraction of ciliated fibroblasts between exposures.
The gap this hypothesis explains
Something is claimed here, but it rests on evidence too thin to carry weight.
Does timing treatment by skin-surface clocks worsen tissue mismatches, and can accounting for delays prevent unfinished repair?
Original wording · exactly as the pipeline generated it
Может ли выбор времени лечения по эпидермальным часам усиливать рассогласование с дермой и иммунными клетками после сдвига сна, и предотвращает ли учёт межтканевых задержек накопление незавершённого восстановления?
What this question is asking
The question concerns whether the daily timing of the skin’s outer layer is a reliable guide for scheduling treatment after sleep timing changes. It asks whether following that layer’s clock could put treatment ahead of the readiness of the deeper skin layer and immune cells, which participate in defense and repair. It then asks whether a schedule that accounts for timing differences between these tissues prevents unfinished repair from accumulating over weeks or months, compared with a schedule based only on the outer layer. This assumes that differences between tissue clocks reflect differences in readiness for treatment and that repeated treatment before all tissues are ready could leave repair unfinished; the supplied sources do not establish those links.
- Epidermis
- The skin’s outer layer, called the skin surface or outer layer in this explanation. S4 estimates daily clock timing from a sample of this layer.
- Dermis
- The skin layer beneath the epidermis. The question asks whether its readiness for treatment can differ from the timing indicated by the outer layer.
- Immune cells and immune signaling
- Immune cells participate in defense and tissue repair; immune signaling is the communication that regulates their activity. These terms cover many cell types and signals, rather than one uniform repair state.
- Circadian clock, circadian phase, and clock oscillations
- A circadian clock is a biological timing system with a cycle of roughly one day. Phase means the position within that cycle, while oscillations are the recurring rises and falls in measured activity. Knowing phase does not by itself establish readiness for treatment.
- Tissue timing mismatches and delays
- These describe differences in the timing of biological cycles across tissues. The question proposes that such differences could affect coordinated repair, but a clock difference is not automatically evidence of harmful disagreement.
- ZeitZeiger and biomarkers
- ZeitZeiger is the analysis method named in S4 for estimating daily clock timing from biological measurements. Biomarkers are measurable biological features used to indicate a condition or process; here, they indicate epidermal clock timing.
- Treatment readiness and unfinished repair
- Treatment readiness means the state in which a tissue could respond appropriately to the proposed treatment. Unfinished repair means repair activity or damage left unresolved between treatment periods. Neither has a specified measurement in the supplied material.
- Fibroblasts, glioma cells, and neurons
- Fibroblasts are cells that help produce and maintain tissue structure; glioma cells are brain-tumor cells; neurons are nerve cells. S3 uses these different cell types as models for studying biological clocks, rather than measuring coordinated repair across intact skin.
- Sleep restriction, sleep deprivation, and a sleep-timing shift
- Sleep restriction reduces available sleep; sleep deprivation involves losing sleep; a sleep-timing shift changes when sleep occurs. These conditions can overlap, but findings about sleep loss do not automatically establish effects of changed sleep timing.
- Skin barrier function
- The skin’s ability to act as a protective boundary between the body and its surroundings. S6 reports damage to this function in mice.
- Oxidative stress
- A condition in which reactive chemicals overwhelm cellular protection and can damage cell components. S6 reports this form of skin damage after sleep restriction.
- Nicotine
- A biologically active substance examined alongside sleep deprivation in S9. Its presence is part of that study’s context, not an established explanation for the proposed tissue-clock mismatch.
- Cell adhesion molecules and inflammation
- Cell adhesion molecules help cells attach to other cells or surrounding structures. Inflammation is a response to injury or threat that can participate in repair; measurements related to both were among the outcomes assessed in S8.
- Gut–brain–skin connections
- A collective name for interactions linking the digestive system, brain, and skin. S5 discusses disruption of these interactions, rather than directly comparing the clocks of different skin tissues.
Epidermal clock timing can be estimated, but after a sleep shift it may precede the readiness of the dermis and immune cells; repeated treatment based on epidermal timing may therefore accumulate unfinished repair.
The epidermis is the skin’s outer layer, the dermis is the layer beneath it, and immune cells help defend and repair tissue. The assumption is that their daily clocks can indicate different times of readiness after a change in sleep timing, so treatment timed to the outer layer might arrive too early for the others. If this holds, accounting for those differences could provide a better guide to complete skin repair.
S4 establishes the narrower point that a set of measurements from one human epidermal sample can estimate its daily clock timing to within three hours. It does not establish that this estimate measures treatment readiness, that deeper tissues adjust more slowly after a sleep shift, or that timing treatment this way causes unfinished repair to accumulate. None of the supplied sources directly establishes those additional links. Their absence from this limited set does not show that the proposed mechanism is false.S4
The same question asked without the part nothing read establishes:
- After a change in sleep timing, does treatment scheduled by the human epidermal clock increase timing differences with the dermis and immune cells?
- After a change in sleep timing, does scheduling skin treatment using several tissues’ clock timings reduce unfinished repair compared with using epidermal timing alone?
- Surface-based timing worsens mismatches; accounting for delays prevents unfinished repair Under the proposed mechanism, the outer layer indicates a treatment time before deeper tissues and immune cells are ready, and repeated mismatches leave repair unfinished. Accounting for their delays would then remove a scheduling-related cause of incomplete repair, making the outer-layer clock alone an insufficient guide.
- Surface-based timing worsens mismatches; accounting for delays does not prevent unfinished repair Treatment timing would affect coordination between tissues, but correcting that coordination would not be sufficient to complete repair. A closer match between tissue clocks could therefore not be treated as evidence that unfinished repair had stopped accumulating.
- Surface-based timing does not worsen mismatches The proposed first step, in which following the outer-layer clock increases disagreement between tissues, would not occur under the conditions assessed. Preventing that particular mismatch would then provide no demonstrated explanation for a benefit from a more complex schedule; overall effects on repair would remain a separate question.
A clock measurement could guide treatment only if the time it reports corresponds to a useful time for the processes that treatment affects. If different skin layers become ready at different times, following the outer layer alone could potentially schedule treatment before deeper repair processes are ready. Under the question’s proposed mechanism, repeating that mismatch could leave some repair unfinished, although the read sources do not demonstrate this sequence. Conversely, if these timing differences do not impair repair, treating them as harmful could make scheduling more complicated without an established benefit.
Оценка эпидермальной фазы и межтканевые часы имеют RL-1; адаптивное расписание не располагает проверенными правилами согласования всех слоёв.
В течение недель и месяцев межтканевые задержки остаются допустимыми, остаточная активность не нарастает, коррекция режима практически выполнима.
Неизвестно, улучшает ли привязка к эпидермальным часам восстановление органа при сдвиге сна или систематически опережает готовность других тканей.
The mechanism it proposes
The engine's own statement of the hypothesis, in full.
После сдвига сна лечение, привязанное к эпидермальной фазе, может синхронно запускать разборку первичных ресничек у большинства восстанавливающихся фибробластов. Предполагается, что повторное образование ресничек создаёт физическое ограничение повторного входа в клеточный цикл. Одновременная утрата этого ограничения позволяет слабым остаточным митогенным сигналам продлевать дермальный рост после восстановления эпидермального барьера. Главный причинный параметр здесь представляет собой минимальную долю фибробластов с восстановленными ресничками между воздействиями. Смещение средних тканевых фаз может сохраняться без накопления повреждения, если эта доля достаточна. Поэтому намеренное распределение дермальных клеток по разным фазам может обеспечивать более полное завершение восстановления, чем точная межтканевая синхронизация.
Testing and possible results
The prediction that would tell it apart
A hypothesis that predicts what its rivals predict is not worth running an experiment over. This is the observation on which this one differs.
В реконструированной коже сравнить узкое и широкое распределения фаз фибробластов при одинаковых средней фазе, индивидуальной амплитуде часов, составе клеток, повреждении и суммарном лечении. Проверять фактические цитокиновые профили и дополнительно воспроизводить их в парных культурах. Гипотеза предсказывает, что более широкое распределение фаз уменьшит длительность общей утраты ресничек и остаточную пролиферацию перед следующим циклом. Восстановление ресничек после начальной миграции должно устранить преимущество распределённых фаз, сохраняя исходное рассогласование молекулярных часов. Гипотеза опровергается, если изменение ресничек при подтверждённой специфичности вмешательства не меняет завершение роста, а исход определяется частотой повторных воспалительных импульсов.
States a measurable outcome; comparing rivals needs more conditions. The prediction specifies directional differences under matched conditions, loss of an advantage after cilia restoration, and an explicit rejection condition. No rival prediction is supplied. Only a bench experiment would settle it.
What testing it would take
The engine's own read on whether this is testable with methods that already exist.
Первичные фибробласты доноров 40–60 лет позволяют совместить репортёр молекулярных часов, визуализацию ресничек и отслеживание клеточного цикла. Воздействия на сборку ресничек требуют двух независимых способов проверки и восстановления исходного фенотипа: многие соответствующие белки также участвуют в митозе. Уменьшение пролиферации засчитывается только при сохранении закрытия дефекта, барьерной функции и механического восстановления.
Other explanations
Every other hypothesis the engine wrote for the same gap, and the observation that would separate the two.
В реконструированной коже сравнить узкое и широкое распределения фаз фибробластов при одинаковых средней фазе, индивидуальной амплитуде часов, составе клеток, повреждении и суммарном лечении. Проверять фактические цитокиновые профили и дополнительно воспроизводить их в парных культурах. Гипотеза предсказывает, что более широкое распределение фаз уменьшит длительность общей утраты ресничек и остаточную пролиферацию перед следующим циклом. Восстановление ресничек после начальной миграции должно устранить преимущество распределённых фаз, сохраняя исходное рассогласование молекулярных часов. Гипотеза опровергается, если изменение ресничек при подтверждённой специфичности вмешательства не меняет завершение роста, а исход определяется частотой повторных воспалительных импульсов.
- Rival 01 of 01What would separate them
Inflammatory fluctuations may repeatedly activate nuclear factor kappa B and delay skin repair predicts: При одинаковых измеренных тканевых фазах, состоянии ресничек и интегральной локальной цитокиновой нагрузке изменение вариабельности слабого воспалительного входа должно менять число отдельных повторных активаций NF-κB и остаточную дермальную пролиферацию. В режиме, где средний вход ниже порога, увеличение дисперсии должно повышать вероятность активации. Расписание, выбранное по индивидуально оценённой вероятности повторного запуска, должно превосходить расписание по среднему фазовому отставанию при одинаковых числе процедур, суммарном воздействии и сроке наблюдения. Гипотеза опровергается, если вариабельность не влияет на повторные активации в установленном подпороговом режиме либо если их изменение не влияет на завершение восстановления.
Why this is not the mainstream account
The engine is asked to say what its hypothesis would overturn and what would surprise a specialist. This is its answer.
В клеточной модели повреждение останавливало обычные колебания длины ресничек у края дефекта; мигрирующие клетки имели короткие реснички либо теряли их. Это показывает возможное расхождение между молекулярной фазой и состоянием органеллы. [Исследование циркадной динамики ресничек](https://pmc.ncbi.nlm.nih.gov/articles/PMC10702818/). В независимой работе сохранение ресничек задерживало повторный вход в клеточный цикл, а нарушение их образования снимало задержку. [Исследование FOP и сборки ресничек](https://www.frontiersin.org/journals/cell-and-developmental-biology/articles/10.3389/fcell.2020.590449/full). Эти результаты поддерживают отдельные звенья, но пока не подтверждают предложенный механизм повторного восстановления кожи.
Кожная хронотерапия: пересмотру подлежала бы учебная глава о синхронизации периферических часов как цели лечения. Проверяемое радикальное утверждение состоит в том, что повышенная согласованность фаз сама создаёт период одновременной утраты ограничения роста, а управляемая неоднородность фаз защищает восстановление.
Преднамеренное расширение распределения дермальных фаз улучшает завершение восстановления при ухудшении формальной синхронности часов; восстановление ресничек устраняет преимущество этого режима без коррекции межтканевых фаз.
В целевом поиске не найдено обзора, предлагающего намеренную неоднородность фаз дермальных клеток для сохранения непрерывного ограничения роста первичными ресничками при повторной терапии. Общая связь ресничек, часов и клеточного цикла уже известна; новизна относится только к этому причинному объяснению вреда синхронизации. Отсутствие такой работы во всей литературе не доказано.
What stands behind it
Which of the figures above have a study behind them, which are the engine's own, and what it would take to refute the hypothesis. This audit never judges the idea.
This hypothesis states no figure and cites no study, so there is nothing here to trace.
What it would take to refute it. Nothing already retrieved carries the prediction’s terms and it names no measurement this layer can route to a public dataset, so the bench is the residual — not a finding against it.
0 citation handles extracted; 1 Europe PMC search run; 0 records examined; 0 sources stored for enrichment, 0 with full text. A citation that did not resolve is a bibliographic failure, not proof that no such paper exists, and no hypothesis is blocked by this audit.