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View ChartVana (VANA) is an EVM-compatible Layer 1 blockchain network built to give users ownership and control over their personal data. The project describes itself as the network for user-owned, portable data and as open data infrastructure for human-grounded AI. Its core premise is that AI systems work best when they understand the user, yet personal data today is scattered across applications that do not interact, forcing people to rebuild their context from zero with every new product. Vana allows users to connect the accounts they already use and decide how their data can be accessed, making data permissioned, portable, and usable across the applications and AI systems they choose.
The network turns personal data into a user-owned asset class through Data Decentralized Autonomous Organizations (Data DAOs) and Data Liquidity Pools (DLPs). Registrations, grants, file records, and permissions are recorded onchain, so nobody except the data owner can change who has access. VANA is the native token of the network, with a maximum supply capped at 120 million tokens. The Vana whitepaper was published on December 3, 2024, and the project is in an early growth stage, with ecosystem activity focused on bootstrapping DataDAOs and expanding the range of applications built on the network.
Vana was co-founded by Anna Kazlauskas, who serves as Co-founder and CEO. She is the creator of Vana and CEO of Open Data Labs, and she began her journey into crypto while studying at MIT as part of the class of 2019. She has been cited discussing how Vana is reshaping data ownership by allowing users to reclaim and control their data, and MIT News featured the project in April 2025 in an article about letting users own a piece of the AI models trained on their data.
The broader team includes Art as Managing Director, Darren Rogan as Head of Ecosystem, and Anatoly Shulzhenko as a listed team member. Jack Spallone joined Vana to lead portable memory in the Vana stack following Vana's acquisition of the team behind Memory Protocol. The company profile lists 43 employees. Vana is supported by prominent venture capital firms including Paradigm, Coinbase Ventures, Polychain Capital, and DeFiance Capital.
Vana operates as an EVM-compatible Layer 1 blockchain that runs the Vana protocol. The chain is secured through validator staking: validators stake VANA to secure the blockchain, ensure reliable transaction validation, and maintain operational stability, receiving staking rewards in return. Registrations, grants, file records, and permissions are all recorded onchain, which means that only the data owner can change who has access to their data.
At the application layer, the network supports DataDAOs and DLPs. DataDAOs are Data Decentralized Autonomous Organizations that allow individuals to tokenize and monetize their data, granting them ownership and control over their digital footprints. These organizations can issue their own tokens tied to specific datasets or rights. DLPs can specify any currency for access, and DataDAOs in the Vana ecosystem typically use VANA by default. Access tokens can be swapped as desired by the buyer, seller, or agent, and they unlock datasets for use in applications by researchers, developers, and businesses. VANA serves as the foundational token interconnecting these DataDAO-issued tokens, fostering collaboration and enabling a robust data economy.
Vana's primary differentiator is its focus on data sovereignty as a first-class feature rather than an afterthought. The protocol is designed so that users control their data, decide how it is used, and directly shape the network. Applications receive access only through verifiable, revocable consent, and the onchain record of permissions means no intermediary can override the data owner's decisions. This stands in contrast to conventional models where platforms aggregate and monetize user data without meaningful consent or compensation.
Another distinguishing element is the multi-token ecosystem built around DataDAOs. Rather than treating data as a single homogeneous asset, Vana allows datasets and rights to be represented by dedicated tokens, with VANA acting as the connective tissue and default access currency. This structure creates room for price discovery, specialization, and collaboration across different data domains. The project also positions itself as defining the standard for how data moves in the AI age, aiming to build the world's largest user-owned data treasury. For builders, Vana offers a shared data layer where context flows with the user, reducing onboarding friction and enabling applications to start with real user history instead of empty profiles.
VANA is the native token of the Vana network and powers its ecosystem through several core functions. It is used for network security, as validators stake VANA to secure the blockchain and receive staking rewards for maintaining the network's integrity. It also pays network gas for every onchain transaction, including smart contract executions and interactions with applications on the network, establishing it as the medium of exchange for network activity.
Beyond security and fees, users can stake VANA in Data Validators and earn emissions for supporting the network in adding more valuable data capital to the ecosystem. VANA serves as the default data access currency for DataDAOs, and it acts as the primary trading pair for all tokens issued by DataDAOs, facilitating exchange and interoperability across the ecosystem. Finally, VANA holders participate in the decentralized governance of the Vana network, voting on proposals and influencing key decisions. Governance of the treasury will expand to network stakeholders and contributors through the Vana DAO, allowing participants to shape reward structures, emissions, and the network's overall direction.
The Vana ecosystem is organized around DataDAOs, DLPs, and Data Validators. DataDAOs allow individuals to tokenize and monetize their data, and they can issue their own tokens tied to specific datasets or rights. DLPs provide the liquidity and access layer, specifying the currency required for access, with VANA as the typical default. Data Validators stake VANA and earn emissions for helping the network add valuable data capital.
Ecosystem activity has shown early traction. According to Vana on X, over three weeks, 18,000 people proved the concept across 43 new apps. The project also acquired the team behind Memory Protocol, with Jack Spallone joining to lead portable memory in the Vana stack, signaling an expansion of the technical roadmap toward persistent, portable user context. Community allocation supports these efforts through rewards for high-quality data contributions to DataDAOs, airdrops to early adopters, and support to developers building on Vana. The ecosystem allocation funds grants for DataDAO bootstrapping, support for new DataDAO tokens, network partnerships, and block rewards to incentivize decentralization, innovation, and adoption.
VANA is not mined through proof-of-work. Instead, the network relies on validator staking for security and on Data Validator staking for data contributions. Validators stake VANA to secure the blockchain, ensuring reliable transaction validation and operational stability, and they receive staking rewards for their role in maintaining the network's integrity.
Users who want to participate in the data layer can stake VANA in Data Validators and earn emissions for supporting the network in adding more valuable data capital to the ecosystem. This mechanism aligns incentives between token holders and the quality of data available on the network. Before staking, participants should review the official documentation for current validator requirements, reward structures, and any lock-up or unbonding conditions, since these parameters can be updated through governance. As with any staking activity, there are risks, including slashing conditions, smart contract risk, and token price volatility.
Securing VANA begins with choosing a storage method that matches your usage. For long-term holdings, a hardware wallet that supports EVM-compatible networks is generally preferred, since it keeps private keys offline and away from internet-connected devices. For active use, a reputable software wallet can be convenient, but it should be paired with strong operational hygiene. Always back up your seed phrase offline, store it in multiple secure locations, and never share it with anyone, as no legitimate service will ever ask for it.
When interacting with the Vana network or any application in its ecosystem, verify official URLs and contract addresses through the project's documentation before approving transactions. Be cautious with token approvals, and revoke permissions that are no longer needed. Since VANA exists as a native token on Vana L1 and as a LayerZero OFT ERC-20 on other chains, confirm you are using the correct network and contract when moving assets. Treat unsolicited messages, airdrop claims, and investment offers as potential phishing attempts, and remember that crypto assets carry significant market risk, including extreme volatility and the potential loss of your entire capital.
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Vana is an EVM-compatible Layer 1 where VANA is the native token. Validators stake VANA to secure the chain and confirm transactions, earning staking rewards for maintaining network integrity. A second layer, Data Validators, lets users stake VANA to support Data Liquidity Pools (DLPs) and earn emissions for adding valuable data capital to the ecosystem.
On the supply side, Vana has a capped total supply of 120,000,000 VANA. Emissions to validators and Data Validators are drawn from the Community and Ecosystem allocations, which unlock on non-linear schedules, so new tokens enter circulation gradually rather than all at once. Stakers are also paid from network fees that builders pay in VANA for data reads.
For price, staking reduces free float by locking tokens, while emissions add sell-side pressure when rewards are liquidated. A rising share of staked VANA and growing fee revenue generally support long-term value; heavy emissions without matching demand can weigh on price.
Vana (VANA) runs on an EVM-compatible Layer 1, so every onchain action — data registration, consent grants, file records, and permission changes — consumes VANA as gas. That makes VANA the economic fuel of the data ecosystem: more DLPs, DataDAOs, and applications mean more transactions and more demand for gas.
Network upgrades typically target throughput, lower fees, and better developer tooling. Cheaper and faster transactions make it practical for more users to connect accounts, pool datasets, and monetize data, which expands the addressable market for VANA. The LayerZero OFT standard also lets VANA move across chains, widening liquidity and use cases.
Because Vana has a capped supply of 120,000,000 VANA, sustained ecosystem growth that raises gas demand and staking activity can tighten circulating supply. The long-term price implication is that utility-driven demand, not emissions alone, becomes the main value driver.
A spot ETF would be a regulated fund that holds actual VANA and issues shares that trade on traditional exchanges. It gives institutions and brokerage clients exposure to Vana without managing wallets or private keys, which lowers operational and custody barriers.
For VANA, sustained institutional inflows would likely raise liquidity, tighten available float, and add a structural bid that can lift the price floor. It would also improve legitimacy, making Vana easier to hold in retirement and advisory accounts. That said, an ETF does not change the token's fundamentals — it channels existing demand through a new wrapper.
Adoption can also arrive without an ETF, through exchange listings, custody support, and enterprise data partnerships. Investors should treat institutional flows as a liquidity and credibility catalyst for VANA, while remembering that crypto assets remain volatile and past inflows do not guarantee future price gains.
Vana (VANA) and Bitcoin (BTC) serve very different roles. BTC is a scarce monetary asset and store-of-value benchmark, while VANA is the utility and governance token of an EVM-compatible Layer 1 built for user-owned data and human-grounded AI.
| Dimension | Vana (VANA) | Bitcoin (BTC) |
|---|---|---|
| Core Positioning | Data sovereignty L1 for AI | Digital store of value |
| Supply Model | Capped 120M, staged unlocks | Capped 21M, halving issuance |
| Consensus | EVM L1 with VANA staking | Proof of Work mining |
| Main Use Cases | Gas, staking, data access, governance | Payments, reserve asset, settlement |
As an investment, BTC is the lower-volatility, higher-liquidity anchor of a crypto portfolio, while VANA is a smaller-cap, higher-beta bet on data ownership and AI demand. Position sizing and risk tolerance should reflect that difference.
On BTCC, you can attach stop-loss (SL) and take-profit (TP) orders directly to a VANA/USDT perpetual contract position before or after entry. Use them to define risk before the market moves against you.
Keep risk per trade small, avoid placing stops exactly on obvious round numbers, and remember that leverage magnifies both gains and losses on VANA.
The current price of Vana (VANA) is ₹105.600116, with a market cap of ₹314.590996Cr and 24h trading volume of ₹19.394527Cr. The circulating supply is 3.01Cr (max supply 12Cr).
Vana is the native token of the Vana L1, an EVM-compatible network for user-owned data and human-grounded AI. Its capped supply and staged unlock schedule mean circulating float can change over time, which is worth tracking alongside price and volume.
For the most accurate live figures, open the VANA/USDT perpetual contract page on BTCC and check the real-time order book, funding rate, and recent trades before placing any order.
Vana (VANA) responds to three layers of drivers:
Short-term moves are often sentiment-driven, while long-term value tracks whether the data economy on Vana keeps expanding.
The all-time high of Vana (VANA) is ₹3,411.002714, reached on 2024-12-17 00:35; the all-time low is ₹78.352399, recorded on 2026-08-04 02:15. These two levels frame the full range the token has traded since its December 2024 launch.
Comparing the current price to the ATH shows how far VANA has retraced from its peak, while the distance from the ATL shows how much it has recovered from the bottom. Both are useful reference points for risk management and for judging where the market currently sits in the cycle.
To inspect the full-cycle chart, open the VANA/USDT perpetual contract page on BTCC and switch between timeframes to view the complete price history, volume, and key support and resistance zones.
Reading VANA candlesticks starts with anatomy: each candle shows the open, high, low, and close for its period. The body spans open to close, while the wicks show the extremes. A long body signals strong directional conviction; a long wick signals rejection at that price.
Combine these signals rather than relying on any single one when trading VANA/USDT perpetuals on BTCC.
You can short VANA without holding any spot tokens by using BTCC VANA/USDT perpetual contracts. A short position profits when the price falls: you open the short at a higher price and later close it by buying back at a lower price, locking in the price difference.
This gives you a two-way trading opportunity. In bear markets or during sharp pullbacks, shorting lets you capture downside moves instead of sitting in cash. You can also use shorts to hedge a spot VANA holding without selling it.
Risk management is essential: always set a stop-loss above your entry, size positions so a single loss cannot wipe out your account, and remember that leverage magnifies both gains and losses. Shorting is a tool for experienced traders who understand liquidation risk.
Yes. BTCC offers flexible leverage of up to 50x on VANA/USDT perpetual contracts, subject to the platform's risk rules and position-size limits. Higher leverage means a smaller margin requirement for the same position size, but it also magnifies both gains and losses.
At 50x, a roughly 2% adverse move can approach liquidation, so leverage should be matched to your strategy and account size. Beginners are strongly advised to start at 2x–10x and always attach a strict stop-loss to every position.
Use isolated margin to cap risk per trade, monitor the funding rate on VANA/USDT, and scale leverage down in volatile conditions. Treat leverage as a tool for capital efficiency, not as a way to chase oversized returns.
After registering on BTCC, you can switch to Demo Trading mode and receive virtual funds, such as 100,000 USDT, to practice without risking real capital. The demo environment uses real VANA market data, so prices, order books, and volatility behave like the live market.
Use the demo account to rehearse the full workflow: adjusting leverage, choosing margin mode, placing long and short orders, and setting take-profit and stop-loss levels on VANA/USDT perpetual contracts. You can also test trailing stops and see how liquidation prices change with leverage.
Once you are comfortable with the mechanics and have a repeatable risk plan, you can move to live trading. Practicing first helps you avoid costly mistakes when real funds are on the line.
Follow this four-step flow to start trading Vana (VANA) on BTCC:
Start with small size and low leverage while you learn how VANA behaves, and always define your risk before entering a trade. The VANA/USDT perpetual contract lets you trade both rising and falling markets.
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