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Today, we are announcing our integration with Hyperlane ⏩, the open interoperability framework connecting more than 150 blockchain networks. Shield Swap is built for confidential trading. Participant identities stay off the public ledger, portfolio balances remain encrypted to the participant’s keys, and trades do not expose the participant’s full...

21,247 次观看 • 21 天前 •via X (Twitter)

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Today, we are announcing our collaboration with NEAR Intents, the intent-based execution layer connecting assets and participants across 34 blockchain networks, which has processed more than $25 billion in all-time volume. Shield Swap is working with NEAR Intents to make it easier for market participants to move assets across blockchain networks and trade without exposing their activity inside the venue to the public market. NEAR Intents is a multichain transaction protocol that allows users to specify the outcome they want, and competing solvers quote the execution. That removes much of the work normally involved in moving assets across chains. Participants do not need to choose a bridge, build a route, or manage gas tokens across several networks. They choose the asset they want to move and the result they want to receive. Solvers handle the route and compete on price. Shield Swap takes a similar approach to confidential trading. Participants are able to execute a trade without publishing their identity, holdings, and strategy to the market. This is difficult to achieve on a transparent blockchain. Wallet addresses are persistent identifiers, and positions can be reconstructed from transaction history. Over time, trades reveal patterns that other market participants can use against the trader. Inside Shield Swap, participant identities stay off the public ledger, portfolio balances remain encrypted to the participant's keys, and trades do not expose the participant's full activity to public observers. Each transaction also creates a compliance record that can be disclosed to authorized parties when required. Working with NEAR Intents connects these two parts of the trading process. A participant can state the outcome they want and source assets from supported EVM and non-EVM networks. Solvers compete to deliver the best available route. Once those assets enter Shield Swap and are shielded, subsequent holdings and trades remain confidential inside the venue. Transactions on origin networks remain visible. Confidentiality begins when assets are shielded within Shield Swap. This gives participants access to liquidity across networks without carrying public transaction history into every trade they make afterward. Early access is open to organizations and individual market participants at

Shield Swap

78,518 次观看 • 16 天前

What is Chainlink CCIP? Chainlink's (Chainlink) Cross-Chain Interoperability Protocol, or CCIP, is designed to let applications communicate across different blockchain networks. Put simply, CCIP acts as a secure messaging and transfer layer between otherwise disconnected blockchains. Here's how it works: (1) It moves data between blockchains CCIP allows smart contracts on one blockchain to send messages to smart contracts on another network. That means an application can trigger an action on a different chain without requiring users to manually move between ecosystems. (2) It can transfer tokens across networks CCIP also supports cross-chain token transfers. Projects can use token pools and other mechanisms to move assets between supported chains while maintaining controlled supply across networks. (3) It lets you combine messaging and asset movement A major feature of CCIP is that developers can send arbitrary messages, transfer tokens, or do both in a single cross-chain transaction, rather than needing separate systems for each. (4) It uses Chainlink's decentralized oracle infrastructure CCIP relies on Chainlink's decentralized oracle network to validate and deliver cross-chain messages. The system uses multiple independent components to help verify transactions and protect against failures or manipulation. (5) It adds programmable token transfers CCIP is not limited to simply sending an asset from one chain to another. Developers can attach instructions to transfers, allowing receiving applications to automatically perform actions when tokens arrive. This could make cross-chain lending, payments, trading, and other DeFi applications easier to build. (6) It is designed for multiple blockchain environments CCIP supports communication across different blockchain ecosystems rather than forcing applications to operate within a single network. That matters as liquidity, users, and applications become increasingly fragmented across chains. The bigger idea is simple. Blockchains were originally built as separate networks, but users and capital increasingly need to move between them. CCIP is Chainlink's attempt to provide the infrastructure for that movement. If cross-chain applications continue expanding, secure interoperability could become one of the most important layers in the blockchain stack.

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17,376 次观看 • 1 个月前

What is Quant Network's Overledger? Overledger is Quant’s (Quant) interoperability platform, designed to connect different blockchains and traditional systems through a common API layer. It tries to make different blockchain networks communicate without forcing developers to build separate integrations for every chain. (1) Overledger acts as a universal API gateway. Developers can use standardized APIs to interact with supported blockchains instead of learning and maintaining separate infrastructure for each network. (2) It works as a translation layer between different blockchain environments. Quant describes Overledger as a “universal translator,” allowing applications to communicate across different DLT architectures through a common interface. (3) This is where Overledger differs from the typical bridge model. Instead of every application relying on a separate bridge between two chains, Overledger provides a common interoperability layer that can connect multiple networks. That can reduce the need for point-to-point integrations, which become increasingly complex as more blockchains enter the ecosystem. (4) Overledger can also power multi-chain applications. Quant calls these mApps, applications designed to operate across multiple distributed ledgers rather than being locked to one blockchain. The platform can also handle transaction signing, asset transfers, and other blockchain interactions through its APIs. (5) But Overledger does not completely eliminate bridges. Quant also provides its own bridge infrastructure for transferring assets between networks, using standardized APIs and smart contracts. Since June 2026, this has also expanded into Quant Fusion, a multi-ledger rollup connecting dozens of blockchains. The bigger idea is that the applications can have interoperability via an infrastructure layer as opposed to establishing the connections all over again.

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19,040 次观看 • 17 天前

What is Plume Network? Plume (Plume) is a blockchain built specifically for bringing real-world assets onchain and making them usable in DeFi. Unlike blockchains that treat tokenization as just another application, Plume is building an entire financial ecosystem around real-world assets, or RWAs. Treasuries, private credit, commodities, funds, and other traditionally illiquid assets can be represented as blockchain-based assets and then used across decentralized financial applications. Plume calls this model RWAfi, or real-world asset finance. So what makes Plume different? (1) ) It is purpose-built for RWAs Plume launched its Genesis mainnet in June 2025 as a permissionless blockchain designed around RWA finance. In October 2025, Plume was approved by the SEC as a registered transfer agent, a regulatory step most general-purpose chains don't hold. The network is EVM-compatible, allowing developers to use familiar Ethereum tooling while accessing lower-cost execution. (2) It focuses on more than tokenization. Plume wants tokenized assets to actually do something once they reach the blockchain. Its ecosystem allows RWA-backed assets to be used for lending, borrowing, trading, staking and yield strategies. Its flagship Nest protocol, for example, lets users gain exposure to institutional-backed assets through yield-bearing RWA positions that can then become useful across DeFi. (3) Compliance is built into the infrastructure. Real-world assets come with regulations, investor restrictions and identity requirements that ordinary DeFi tokens usually do not face. Plume has therefore built compliance and screening capabilities directly into its network rather than treating them as an afterthought. Its blockchain includes protocol-level AML, ATF and sanctions screening infrastructure. (4) It is trying to make institutional assets composable. A tokenized Treasury or private credit position does not have to sit idle in a wallet. The goal is to make these assets usable across different financial applications, similar to how USDC, ETH and other crypto assets move through DeFi today. Plume's Portal already allows users to swap, lend, borrow, loop and earn against RWA-backed assets. (5) Plume is also building cross-chain infrastructure. Its SkyLink infrastructure is designed to distribute RWA yields across other blockchain networks. That means Plume does not necessarily need every investor to move onto Plume itself. Instead, the network can act as infrastructure for bringing institutional yield into other ecosystems. (6) The network has attracted major institutional names. Apollo Global Management, WisdomTree, Hamilton Lane and Securitize are among the institutions connected to Plume's ecosystem. Securitize, for example, announced plans to deploy assets through Plume's Nest protocol, linking institutional tokenization infrastructure with Plume's RWA holder base. So where does PLUME fit in? $PLUME is the network's native token. It can be used for gas, staking, governance, collateral and ecosystem access. Plume also says protocol fees can eventually support token buybacks, ecosystem incentives and further network growth. Plume is betting that the next major phase of crypto adoption will not only involve digital-native assets. It will involve putting traditional financial assets onchain and making them programmable. The challenge is turning that vision into deep liquidity, compliant infrastructure and genuine demand. If Plume can solve those problems, it could become an important piece of the infrastructure connecting traditional finance with DeFi.

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22,447 次观看 • 28 天前

TL;DR - Privacy on public blockchains has historically been fragmented and episodic. Umbra introduces persistent, expressive privacy by default. - Umbra is a private financial layer on Solana, enabling private transfers, swaps, balances, and yield within a continuous shielded environment. - Umbra combines client-side zero-knowledge proofs for anonymity with MPC for confidentiality - MPC enables confidential balances via Encrypted Token Accounts (ETAs), hiding balances and transfer amounts - Privacy strength depends not only on cryptography, but on anonymity set size and user behavior. - Umbra treats anonymity sets as a first-class metric and designs the product to minimize behavioral privacy failures. - A multi-purpose shielded pool allows funds to remain private across transfers, swaps, and yield, compounding privacy over time. - The Umbra SDK allows wallets and applications to integrate private transfers, swaps, and balances, feeding activity into a shared shielded pool. - Swaps execute via public liquidity venues while identity, balances, and intent remain unlinkable. - Users can earn yield on shielded assets, incentivizing longer time in the private environment. - Umbra mitigates exit-related privacy risks through product design, including anonymity indicators, configurable unshielding delays, and confidential balances. - UTXO-based shielded systems suffer from performance decay as balances fragment into many notes over time, increasing scan and aggregation costs. - Umbra eliminates this bottleneck by consolidating balances into Encrypted Token Accounts (ETAs), using UTXOs only at the anonymity boundary. The result is encrypted balances with stable, high-performance transfers even as activity scales. - Compliance is addressed through proactive screening against risk databases and opt-in selective disclosure via read-only viewing keys. - Umbra was launched via MetaDAO as an ownership coin, with governance and economic policy determined by token holders through futarchy. - Umbra is not a mixer or a single feature, but a sovereign privacy domain with its own private state and internal economy. - Umbra is Hopecore for Privacy. Thank you all for reading!

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13,815 次观看 • 8 个月前

Everyone is waiting for the next big move in crypto. Meanwhile, the market underneath is already changing. Institutional crypto products are becoming more sophisticated. 21shares is adding staking directly to its ETH and DOT ETF names, while BlackRock and Fidelity are also moving deeper into staked ETH products. That matters because institutional exposure is evolving beyond simply holding an asset and waiting for price appreciation. Yield is becoming part of the product. But the market itself still has the same weakness we’ve seen for years: leverage. XRP went from roughly $0.99 to $1.69 in five days before the reversal wiped out hundreds of millions in leveraged longs. BTC, ETH and SOL were pulled into the move too. So while the financial rails are getting better, positioning can still get reckless very quickly. And this isn’t limited to crypto-native assets. RWA adoption is expanding through networks like BNB Chain, putting more real-world assets in front of more users. Now the problem shifts from issuance to liquidity. More assets across more chains means more distribution, but without interoperability, liquidity can remain fragmented. Even gaming sits somewhere in this transition. The fight around GTA 6’s physical ownership model is a reminder that digital assets are increasingly becoming licenses, access rights and programmable products rather than things people physically own. That’s the bigger shift I’m watching. Crypto isn’t developing in isolation anymore. ETFs, RWAs, digital ownership, tokenized assets and onchain markets are all moving toward the same direction: more financial and economic activity becoming digitally accessible. The question isn’t whether this transition is happening. It’s whether the infrastructure can keep up once everyone stops waiting and starts participating.

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23,583 次观看 • 29 天前

What is the XDC Network? XDC Network (XDC Network) is an EVM-compatible Layer 1 built around payments, trade finance, tokenization, and enterprise blockchain use cases. Put simply, XDC is trying to bring blockchain infrastructure closer to traditional financial markets. The network launched its mainnet in 2019 and uses XinFin Delegated Proof of Stake, known as XDPoS. So, what makes XDC different from other Layer 1 networks? (1) It focuses heavily on financial infrastructure. XDC was designed with global trade and financial applications in mind. That includes trade finance, cross-border payments, real-world asset tokenization, and decentralized finance. Businesses can tokenize assets such as invoices, bonds, commodities, and other financial instruments on the network. (XDC Network Docs) (2) It is compatible with Ethereum. XDC is EVM-compatible, meaning developers can use familiar Ethereum tools and Solidity smart contracts. That makes it easier for existing Ethereum applications to migrate or expand onto XDC. The network also supports token standards such as XRC20, XRC721, and XRC1155. In Jan 2026, XDC did its Cancun hard fork, syncing with Ethereum's own upgrade and bringing EIP-1559 fee burns on-chain. (3) XDC is built for fast and inexpensive transactions. The network targets roughly two-second block times and supports more than 2,000 transactions per second. Transaction costs are also designed to remain extremely low, making high-volume financial activity more practical. That combination is particularly important for applications handling large numbers of transactions. But speed alone is not what XDC is betting on. Its bigger pitch is whether blockchain can become useful infrastructure for financial institutions and global commerce. So, how does XDC secure the network? XDC uses XDPoS 2.0, which combines delegated proof of stake with Byzantine fault-tolerant consensus. Token holders participate by supporting masternode candidates, while elected masternodes help validate transactions and produce blocks. XDPoS 2.0 also uses the HotStuff consensus protocol and adds forensic monitoring for malicious validator activity. The upgrade went live on mainnet in September 2024. It introduced three-block finality, with transactions reaching finality roughly six seconds after block inclusion. Worth noting, financial applications generally need predictable settlement rather than transactions that can remain uncertain for long periods. Then there is another important part of the XDC architecture: Subnets. XDC Subnets allow organizations to operate permissioned blockchain networks while connecting them to the broader XDC ecosystem. Companies can maintain greater control over governance, privacy, and infrastructure without abandoning interoperability with XDC. That structure is particularly relevant for institutions that cannot put sensitive commercial information directly onto a public blockchain. A company could therefore operate a private environment while using XDC Mainnet for checkpointing and broader interoperability. This creates a bridge between private enterprise infrastructure and public blockchain networks. Rather than competing purely for retail users, XDC trying to position itself as financial infrastructure for tokenized assets, trade finance, payments, and institutional markets.

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15,145 次观看 • 29 天前

What is Shiba Inu’s Shibarium? Shibarium is the Layer 2 network built around the Shiba Inu ecosystem, designed to make transactions faster and cheaper than using Ethereum directly. Shibarium moves much of the activity away from Ethereum while still using Ethereum as its underlying settlement layer. SHIB itself remains an Ethereum-based token, separate from Shibarium, which is a distinct chain built to support the wider ecosystem. (1) It is designed to reduce transaction costs for Shiba Inu users and developers, making frequent onchain activity more practical. (2) It gives developers a dedicated network for building Shiba Inu ecosystem apps, including DeFi protocols, games and other Web3 applications. (3) ethereum:0x9813037ee2218799597d83d4a5b6f3b6778218d9 serves as Shibarium's gas token, its governance token through the Doggy DAO, and the asset validators and delegators stake to secure the network's proof-of-stake consensus. (4) Shibarium is also designed to expand the utility of the broader Shiba Inu ecosystem by moving activity beyond simply holding or trading $SHIB. (5) A portion of Shibarium's base transaction fees is converted into SHIB burns, an active mechanism running since block 6,206,570 that links network usage directly to SHIB's supply. Shibarium is the infrastructure layer intended to support a broader ecosystem of applications and onchain activity. As adoption grows, the key question will be whether Shibarium can turn its large community into sustained network usage.

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21,642 次观看 • 18 天前

What is XRP Ledger 3.3.0 Upgrade? The XRP Ledger is moving from version 3.2.1 to 3.3.0, bringing a substantial set of protocol changes. But there is an important distinction. The 3.3.0 software release does not mean every new feature is already active on the XRPL mainnet. The release gives validators the software needed to support new amendments, which must separately pass the XRPL's amendment process. Put simply, this upgrade is less about changing how the entire XRP Ledger works and more about giving it new tools for payments, tokenization, privacy and institutional use. Here are the major changes: (1) Batch Transactions Batch transactions allow multiple transactions to be packaged and executed as a single atomic unit. That means a group of related transactions can either succeed together or fail together. This could be particularly useful for institutional delivery versus payment, where an asset and payment need to settle together without leaving one side completed while the other fails. The XLS-56 standard defines the Batch design and allows multiple transactions to be processed as one atomic unit. (2) Permission Delegation Permission Delegation allows an account to grant specific transaction permissions without handing another party control of its main private key. That could make operational wallets easier to manage for institutions. For example, a business could delegate certain actions to another party while retaining control over the underlying account. The important point is that delegation is limited by the permissions granted, rather than becoming a transfer of complete account ownership. (3) Sponsor Sponsor tackles one of XRPL's less visible barriers for new users. Accounts and certain ledger objects require XRP reserves, while transactions also require fees. Sponsor allows another account to cover those costs on behalf of a user. That could be useful for neobanks, wallets and other applications that want customers to use XRPL without first acquiring XRP simply to satisfy network requirements. The XLS-68 proposal specifically covers sponsored fees and reserves while keeping the user's account control intact. (4) Confidential Transfers Confidential Transfers bring a limited form of privacy to Multi-Purpose Tokens, or MPTs. The feature is designed to hide certain balances and transfer amounts while preserving mechanisms for authorized parties to verify information when required. This is important for institutions handling tokenized assets because complete public visibility can create problems around commercially sensitive transactions. However, this is not full account anonymity. The feature is focused on MPTs. It does not suddenly make XRP transactions private across the entire XRP Ledger. (5) Dynamic MPT Dynamic Multi-Purpose Tokens make MPTs more flexible after issuance. Token issuers can designate certain properties as mutable when creating the token. Those permitted properties can then be changed later without making every part of the token freely editable. That could matter for tokenized real-world assets whose requirements may change over time. The XLS-94 proposal is designed specifically around this controlled flexibility. (6) Fixes And Protocol Improvements Not everything included in XRPL 3.3.0 is a headline feature. The release also contains software fixes, security improvements, performance work and other protocol changes. The official 3.3.0 release includes Batch V1.1, Confidential Transfer for MPTs, Sponsor and Dynamic MPT work, alongside numerous fixes and engineering changes. There is also an important history behind some of these features. Earlier versions of Batch and Permission Delegation encountered security issues before activation, leading developers to work on revised implementations. That means the new versions are not simply new features appearing overnight. They are also the result of the XRPL's amendment and security review process. And this is perhaps the most important thing to understand about XRPL 3.3.0. A software release is not the same thing as a network activation. Validators still need to support individual amendments through the XRP Ledger's governance process before those capabilities become active. So XRPL 3.3.0 should be viewed as an important infrastructure milestone rather than six new features suddenly switching on simultaneously. Together, these changes push the XRP Ledger further toward the infrastructure needed for tokenized finance and institutional blockchain applications.

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16,661 次观看 • 1 个月前