冷等离子体作用后,肿瘤细胞会发生什么? 任何真正有分量的技术,都会走到这样一个关键节点:一个看起来很“漂亮”的概念,开始变成一个清晰、可解释的机制。 对于冷等离子体来说,这个关键节点,正是从细胞内部开始的。 当冷等离子体射流作用于生物环境时,它会产生一系列活性氧和活性氮物种,也就是 RONS。它们构成了整个反应链条的第一环。 接下来,真正重要的部分开始了。 肿瘤细胞会承受额外的氧化负荷。对于普通细胞来说,这也许仍然只是一次可以应对的压力。但癌细胞往往本来就处在“临界状态”:代谢异常、内部系统超负荷运转、保护机制已经接近极限。 这时,额外的一击就可能变成压垮它的关键力量。 细胞内部的 ROS 水平开始上升,线粒体压力加剧,细胞能量系统的稳定性被打破。与此同时,细胞膜、信号通路以及内部结构也会受到损伤。 如果作用模式选择得当,细胞最终可能进入程序性死亡,也就是凋亡(apoptosis)。 这一点极其重要。 我们讨…

Channel
CAP Oncology
@ColdAtmosphericPlasma
On this record: Growth · Engagement · Reactions · Posts · Citations · Cite this entry
29subscribers
-1 since we began measuring on 7 August 2026
Risers and fallers across the register · movement among entries of Under 1,000.
Register entry
| Telegram ID | -1004454314160 |
|---|---|
| Type | Channel |
| Username | @ColdAtmosphericPlasma |
| Created | 30 June 2026 — measured — dated from the channel’s first post |
| First recorded | 11 August 2026 |
| Last confirmed live | 11 September 2026 |
| Measurements held | 3 |
| Confirmed unchanged | 4 times, most recently 11 September 2026 |
| On Telegram | t.me/ColdAtmosphericPlasma |
Growth
| Measured (UTC) | Subscribers | Change |
|---|---|---|
| 20 Aug 2026, 05:35 | 29 | -1 |
| 11 Aug 2026, 04:01 | 30 | no change |
| 7 Aug 2026, 08:16 | 30 | first reading |
Engagement
17 posts held, back to 30 June 2026 — the reader has not yet reached the start of this channel’s public history, so older posts may sit further back, unread. Read across 1 page of Telegram’s post history, 20 posts per page.
Nothing published in the last 30 days. ERR and ER are rolling 30-day measures, so there is nothing to compute — we hold 17 posts for this entry, the most recent from 10 July 2026. An engagement rate over an empty window would be a number about nothing.
Reaction mix
8 reactions across 2 posts, in 4 distinct kinds. The most used accounts for 50.0% of them.
| Reaction | Count | Share | Share, drawn |
|---|---|---|---|
| ❤ | 4 | 50.0% | |
| 🙏 | 2 | 25.0% | |
| 👍 | 1 | 12.5% | |
| 💯 | 1 | 12.5% |
No sentiment is inferred, and none should be read in. This table is ordered by count and by nothing else. Emoji do not carry stable meaning across languages or communities — 🙏 is thanks in one channel and mourning in another — so we publish which ones were pressed and how often, and pass no judgement on what an audience meant by them.
Precision. Telegram publishes reaction counts per emoji and short-forms each one — 4.34K, 1.2M — so any single kind at or above 1,000 reaches us at three significant figures, and only counts below 1,000 are exact. The shares above are ratios of those figures and carry the same error. This is also why the total here can differ slightly from a reaction total printed elsewhere on the page: both are sums of the same rounded parts, taken over samples with different edges.
Coverage. Reactions were read on 2 of the 17 sampled posts in this sample. Summed by Telegram’s own count on each post — not by adding up the per-emoji breakdown above — those same posts carry 8 reactions in total: the kind of figure the paragraph above means by “a reaction total printed elsewhere on the page”.
Measured over the 17 most recent posts we hold, published 30 June 2026 to 10 July 2026, using the newest reading held for each. Telegram Stars are excluded: they are a payment, not a reaction, and they have their own section.
Recent posts
What Happens to a Tumor Cell After Exposure to Cold Plasma Every strong technology reaches a point where a beautiful concept turns into a concrete mechanism. For cold plasma, that moment begins inside the cell. When a cold plasma jet interacts with a biological environment, it generates reactive oxygen and nitrogen species — RONS. These particles become the first link in the chain. Then the most important part be…
Что происходит с опухолевой клеткой после воздействия холодной плазмы У любой сильной технологии есть момент, где красивое слово превращается в конкретный механизм. Для холодной плазмы этот момент начинается внутри клетки. Когда холодная плазменная струя воздействует на биологическую среду, она создаёт активные формы кислорода и азота — RONS. Эти частицы становятся первым звеном цепи. Дальше начинается самое важн…
RONS:冷等离子体的化学语言 如果想真正理解冷等离子体在肿瘤学中的价值,就需要记住一个简短的词:RONS。 它指的是活性氧和活性氮物种。 正是它们,把一种看似炫目的物理现象,转化为一种有潜力的医疗工具。 冷等离子体射流不仅仅是一束发光的气体流。在它的作用区域,会形成一个由多种活性粒子组成的“化学组合”。这些粒子会在气相中产生,也会在液体界面以及生物环境内部形成。 对于肿瘤细胞来说,这可能是一场严峻考验。 为什么? 因为许多癌细胞本身就长期处于高度压力之下。它们的代谢已经紊乱,内部应激水平偏高,保护系统也常常处在极限运转状态。当新的活性分子进一步叠加时,细胞可能就会难以承受。 这时,氧化应激就开始了。 接下来会发生一连串反应:细胞内部结构受损、线粒体功能紊乱、细胞信号传导失衡,以及程序性细胞死亡被启动。 如果用更形象的话来说,RONS 既不是子弹,也不是锤子。 它更像是一道精细的化学指令,可能迫使肿瘤细胞越…
RONS: The Chemical Language of Cold Plasma To understand cold plasma in oncology, it helps to remember one short word: RONS. These are reactive oxygen and nitrogen species. They are what transform a beautiful physical phenomenon into a potential medical tool. A cold plasma jet is not just a glowing stream of gas. In its active zone, an entire “cocktail” of reactive particles is formed. They arise in the gas phase…
RONS: химический язык холодной плазмы Чтобы понять холодную плазму в онкологии, нужно запомнить одно короткое слово: RONS. Это реактивные формы кислорода и азота. Именно они во многом превращают красивый физический эффект в потенциальный медицинский инструмент. Холодная плазменная струя — это не просто светящийся поток газа. В зоне её действия возникает целый “коктейль” активных частиц. Они появляются в газовой фаз…
❤4🙏2💯1
为什么冷等离子体对肿瘤学如此有吸引力? 在肿瘤学领域,有一个残酷的现实:肿瘤很少会轻易缴械投降。 即使外科医生切除了可见的肿瘤部分,组织中仍可能残留微小的肿瘤细胞。它们肉眼看不见,但正是这些“看不见的火星”,有时会再次点燃疾病复发的火焰。 因此,医学界一直在寻找新的局部工具——更精准、可控,并且能够在传统方法存在局限的地方发挥作用。 冷等离子体射流正是在这样的背景下进入视野。 它之所以对肿瘤学有吸引力,不在于加热,也不在于对组织进行粗暴破坏。它的核心逻辑,在于产生一系列活性氧和活性氮物种,从而可能在肿瘤细胞内部诱发氧化应激。 为什么这一点很重要? 因为肿瘤细胞本身往往已经处在高压状态。它的内部系统超负荷运转,代谢发生异常,应对压力的机制也与正常细胞不同。如果作用模式选择得当,这种额外负担就可能首先成为肿瘤细胞无法承受的临界打击。 简单来说:正常细胞也许还能扛住,而肿瘤细胞会更早越过那条红线。 这正是为什么冷等离…
Why Is Cold Plasma So Promising for Oncology? In oncology, there is one harsh truth: a tumor rarely surrenders without a fight. Even when a surgeon removes the visible part of a tumor, microscopic residual cells may remain in the tissue. They are invisible to the eye, yet it is often from these hidden sparks that the fire of disease can flare up again. That is why medicine is searching for new local tools — precis…
Почему холодная плазма интересна именно для онкологии В онкологии есть одна суровая истина: опухоль редко сдаётся без боя. Даже когда хирург удаляет видимую часть опухоли, в тканях могут оставаться микроскопические клетки. Они незаметны глазу, но именно из таких “невидимых искр” иногда снова разгорается пожар болезни. Поэтому медицина ищет новые локальные инструменты — точные, управляемые, способные работать там, …
👍1
CAP Oncology pinned a photo
什么是冷等离子体射流——用最简单的话说明白 当投资人第一次听到“冷等离子体用于肿瘤学”这句话时,脑海里通常会冒出同一个问题: 这是不是在“烧灼肿瘤”? 不是。 也正是在这里,最需要把真正的价值与表面印象区分开来。 冷等离子体射流不是火,不是激光,也不是依靠高温对组织进行粗暴破坏的方式。它是一股在非热状态下工作的电离气体流。它的目标不是把细胞烧掉,而是形成一种可控的物理化学作用。 换句话说,它不是一把对所有目标一通乱砸的锤子,而是一种用于高精度区域的精细工具。 冷等离子体真正的价值,在于它工作时会产生一系列活性粒子,也就是活性氧和活性氮物种。正是这些物质,可能在肿瘤细胞内引发一连串生物学反应:氧化应激、细胞内部系统受损,以及程序性细胞死亡。 对于投资人来说,重要的并不是这个物理现象看起来有多“炫”。 真正重要的问题是: 这种现象能否被转化为一个医疗产品? 要做到这一点,需要三件事: 紧凑型设备; 标准化作用…
What Is a Cold Plasma Jet — In Simple Terms When an investor first hears the phrase “cold plasma in oncology,” the first question is usually the same: So what is it — burning a tumor? No. This is exactly where it is important to separate signal from noise. A cold plasma jet is not fire, not a laser, and not a crude destruction of tissue through high temperature. It is a stream of ionized gas operating in a non-t…
Showing the 12 most recent of 17 posts we hold for @ColdAtmosphericPlasma. View and reaction counts are the latest single reading for each post, not a live figure, and a recent post is still accumulating both. A view count marked ≈ was rounded by Telegram before we ever saw it — t.me prints views in full below 1,000 and to three significant figures above, so ≈1,200,000 means somewhere between 1,150,000 and 1,249,999. Unmarked counts are exact. Text is reproduced from the public post preview and truncated for length.
Mentions
Named by 1 registered channel — every channel on the register whose own posts have named this one, by its current username or any other username it currently holds, merged from two separately captured readings of the same fact so a namer caught by only one of them is not missed and a namer both caught is not counted twice. A username this channel has since dropped is not matched — that handle may belong to someone else now, and crediting today’s namer to yesterday’s owner would misattribute it.
Named by
Channels on the register whose posts name this channel's handle.
A mention is a weaker signal than a forward and is counted separately for that reason — naming a channel is not republishing it, and a handle in a post body is easy to place deliberately. The post counts beside each row below are distinct posts in which the handle appeared, from posts we have read on both sides — the “Named by N registered channels” figure above is a different count, of distinct NAMING CHANNELS rather than posts, and is not the sum of the rows under it.
Cite this entry
A live page changes as we take new readings, so a citation should name the measurement it is based on, not just the URL. The line below cites the subscriber count as measured 20 August 2026 — this entry's latest reading, not the date you are reading this.
“CAP Oncology” (@ColdAtmosphericPlasma), 29 subscribers as measured 20 August 2026. Telegram Register, tgregister.com/channel/ColdAtmosphericPlasma.
Full measurement history, CC BY 4.0. Every reading this register holds for this entry, not just the latest one, as a dated, downloadable record: CSV · JSON. Free to use with attribution to tgregister.com. Each file carries its own generation timestamp, which is the figure to cite for exactly when the data was retrieved.