eBook | Zero Trust and Hybrid Cloud Security
Learn why Zero Trust is essential for securing hybrid cloud environments. Explore strategies to reduce risk, improve visibility, address cloud misconfigurations, and protect users, applications, and data across multi-cloud deployments. Download the eBook.

Zero Trust and Hybrid Cloud Security Learn why Zero Trust security is the only option to secure the hybrid cloud
https://www.checkpoint.com/
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Table of Contents Introduction .................................................................................. 3 The Complexity of the Hybrid Cloud ............................................... 4 Understanding Why Hybrid Cloud Security Requires Vigilance ......................................................................... 5 Hybrid Cloud and Zero Trust ........................................................... 7 Zero Trust: Keys to Success ........................................................... 8 Cloud Native Firewall Tests Expose Critical Security Gaps ..............................................................................13 Check Point CloudGuard ...............................................................14 Check Point Harmony SASE ...........................................................18 Conclusion ..................................................................................21
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Introduction
Cloud infrastructure has become the backbone of modern IT frameworks, playing a critical role in supporting services ranging from email and data storage to application hosting and DevOps. Enterprise organizations are migrating, modernizing, and customizing hybrid cloud data centers to create greater agility, data sovereignty, and operational efficiencies.
But these ever-evolving hybrid environments are creating new and more challenging security risks. Understanding the advantages and limitations of hybrid cloud environments is critical to their successful deployment – making both the process of building a hybrid deployment and the choice of the right cloud security solution among the two most important decisions IT leaders must make.
According to research from our recent 2025 State of Cyber Security Report, security risks from hybrid cloud deployments pose a unique set of challenges for cyber security professionals, from vulnerabilities related to administration and misconfigurations, to challenges in threat detection and prevention. This growing complexity has made security within cloud environments and across hybrid cloud configurations a blind spot for many organizations.
So how can cyber security professionals address security inconsistencies across cloud providers and ensure their employees, customers, and partners remain protected from advanced cyber threats?
Security leaders are increasingly turning to Zero Trust models that combine policies, processes, and technology to establish trust from cloud to edge to secure their multi-cloud deployments.
https://www.checkpoint.com/security-report/?flz-category=items&flz-item=report--cyber-security-report-2025
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The Complexity of the Hybrid Cloud Cloud infrastructure administration has become an increasingly difficult task in recent years as cloud migrations increase and these assets become a larger target for attackers. As organizations continue to expand their cloud footprint to take advantage of cost, performance, and geographic efficiencies, they must now monitor for issues across a more diverse and disconnected cloud ecosystem as well as respond to threats derived from or within these assets.
With each new cloud service provider and newly deployed workload, the number of access points and workloads running in the cloud compound the attack surface. SOC teams will need to respond to new and different alerts and the nuances of each private cloud must be learned and understood by cyber professionals. Services, terminologies, and security mechanisms are not congruent. Navigating this ever-expanding landscape is no easy task – made more difficult by the need to understand and manage myriad configurations and settings to maintain the security of these connected environments.
Some of these challenges were highlighted in our 2024 Cloud Security Report which found that more than 40 percent of respondents were prioritizing end-to-end visibility and monitoring, cloud governance and risk management, and data security and privacy.
Cloud commitments now exceed $380B with an average 25% YOY growth driven by cloud migration and AI infrastructure access. Partner Insights, November 5, 2024
https://engage.checkpoint.com/2024-cloud-security-report https://protect.checkpoint.com/v2/r02/___https:/substack.com/app-link/post?publication_id=1334412&post_id=151210140&utm_source=post-email-title&utm_campaign=email-post-title&isFreemail=true&r=3moe8d&token=eyJ1c2VyX2lkIjoyMTk0ODgyNjksInBvc3RfaWQiOjE1MTIxMDE0MCwiaWF0IjoxNzMwODE2MTAyLCJleHAiOjE3MzM0MDgxMDIsImlzcyI6InB1Yi0xMzM0NDEyIiwic3ViIjoicG9zdC1yZWFjdGlvbiJ9.hPoRxkPr166HC8aS_Xn53X-BZFLPun--yEoRhjUW-MY___.YzJlOmNwYWxsOmM6bzphNTY1MmFiMmY5ZGY3ZjcwMDE2MTg2ZDRlMjBjZGFmZjo3OjQ2OGE6NDhjODAyMjQwYzhiOWU2MWE3NWRmOWQ0NjJiNTk2NGY3MTc3NmM2M2NiNWU5YWRhZmFhM2E0YjI1MDRhYzU3YjpoOlQ6Tg
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Understanding Why Hybrid Cloud Security Requires Vigilance Let’s dive into more detail on specific hybrid cloud challenge areas: managing and securing Non-Human Identities (NHI), ensuring authentication and access security in the cloud, and cloud-based Large Language Model (LLM) exploits.
Non-Human Identities (NHI) Management NHIs include service accounts, API keys, and built-in user accounts. These entities are critical to the functionality of cloud systems, but can often be misconfigured or inadequately secured, providing easy points of entry for attackers.
One of the most high-profile examples of NHI exploit occurred in January 2024, when the advanced nation-state threat group Midnight Blizzard exploited a misconfigured OAuth application in Microsoft’s Azure environment. This vulnerability allowed attackers to pivot from testing environments to production, accessing sensitive systems and even internal emails from top Microsoft executives.
In India, a misconfigured S3 bucket exposed over 500GB of sensitive personal and biometric data, including information from military personnel and other major corporations, including Fujitsu and BMW, also experienced breaches due to misconfigured cloud storage containers, leading to the exposure of sensitive client data and login credentials.
Authentication and Access Security is Limited Inadequate access management and control can lead to unauthorized access to sensitive information. Adopting a comprehensive Identity and Access Management (IAM) solution and multi-factor authentication (MFA) helps maintain centralized control over user permissions and enhances security. IAM solutions integrate and streamline user authentication across both cloud and on-premises systems. Additionally, access control can be integrated with IAM to simplify and secure networks and data based on user roles or application access rights.
https://www.checkpoint.com/cyber-hub/cloud-security/what-is-hybrid-cloud/ https://www.checkpoint.com/cyber-hub/cloud-security/what-is-identity-and-access-management-iam/ https://www.checkpoint.com/cyber-hub/network-security/what-is-multi-factor-authentication-mfa/
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However, while this integration provides seamless user experiences, it also creates potential pathways for lateral movement by attackers. Once attackers compromise an on-premises network, they can pivot into cloud environments through various vectors, including hybrid user accounts and cloud connectors.
An attack like this occurred in 2024 when the threat actor Storm-0501 launched a series of multi-stage attacks against hybrid cloud environments. These attacks allowed the actor to deploy backdoor accounts, spread ransomware, and infiltrate sensitive systems across the network.
In similar attacks Iranian-based threat groups like Mango Sandstorm (aka Mercury) and Storm-1084 have used hybrid cloud environments to target Israeli organizations. By leveraging the connection between on-premises systems and the cloud, attackers were able to dump emails, send malicious messages, and carry out destructive attacks on cloud assets.
Cloud-based Large Language Model (LLM) Exploits The growing popularity of generative AI in the cloud has introduced new opportunities for threat actors. Cloud service providers now offer AI-driven solutions that allow businesses to build, train, and deploy custom language models, such as large language models (LLMs), to meet their unique needs. These models are designed to integrate proprietary knowledge bases and ensure greater data privacy, providing companies with control over their sensitive information.
As AI becomes more accessible, cyber criminals have also found ways to exploit these technologies for their own gain. One of these threats is a new form of cloud hijacking: LLMjacking. In this attack, threat actors compromise cloud accounts and take control of existing hosted LLM models or deploy their own. One notable incident saw attackers using an LLM proxy to resell access to LLMs to third parties, while others exploited LLM jailbreaks to offer uncensored chatbot characters for sale.
Exploitation of AI is not a future threat – it is happening today.
Russia, China, and Iran have already been caught using ChatGPT to create advanced tools and exploit vulnerabilities. We anticipate some actors may even pivot to private LLM instances to improve operational security, using the cloud’s evolving technologies for more sophisticated and hard-to-detect attacks.
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Hybrid Cloud and Zero Trust Given the challenges of monitoring and securing the modern hybrid cloud, security experts now recommend a shift to a Zero Trust security model for all hybrid cloud environments.
Rather than assuming all assets and pathways are secure and protected, Zero Trust takes an “assume breach” posture to ensure full protection and create hardened defenses against malicious threats.
What is Zero Trust Security? The Zero Trust model is based on a “never trust, always verify” security stance. As organizations move to the cloud, shifting from perimeter protection to identity protection by adopting Zero Trust is essential to maintaining a high level of security. In traditional security models, there is an implicit level of trust placed in every user, device, and network within an organization’s network. However, this assumption of trust can leave organizations vulnerable to attacks.
In Zero Trust, no user, device, or application is automatically trusted, regardless of whether they are inside or outside the network. Everything must be verified and authenticated before being granted access to any system.
A 2024 Gartner Survey Revealed 63% of Organizations Worldwide Have Implemented a Zero-Trust Strategy
https://www.checkpoint.com/cyber-hub/network-security/what-is-zero-trust/ http://A 2024 Gartner Survey Revealed 63% of Organizations Worldwide Have Implemented a Zero-Trust Strategy http://A 2024 Gartner Survey Revealed 63% of Organizations Worldwide Have Implemented a Zero-Trust Strategy http://A 2024 Gartner Survey Revealed 63% of Organizations Worldwide Have Implemented a Zero-Trust Strategy
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Zero Trust: Keys to Success In a Zero Trust framework, every component of an organization’s security architecture is designed to minimize risks and prevent unauthorized access, regardless of the environment. In a hybrid cloud setup, the principles of Zero Trust are critical for maintaining control and security across a distributed and often complex infrastructure.
Below is an expanded breakdown of key aspects of Zero Trust in such environments:
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Build a Foundation on User Identity and Authentication Ensuring that only authorized users can access resources is paramount in maintaining hybrid cloud security. Zero Trust frameworks continuously authenticate and verify user identities, making sure that every access request is thoroughly checked before granting permission. This prevents unauthorized access, even when systems are spread across multiple cloud services and on-premises environments.
Authentication methods, including MFA, add extra layers of protection, ensuring that even if one factor (like a password) is compromised, attackers cannot easily gain access. Coupled with a Zero Trust approach, where user identity is treated as the foundational element of secure access, these strategies ensure that only the right individuals and devices can interact with sensitive systems and data.
To further enhance security, firewalls and gateways provide application control and identity management integration. They simplify and secure complex application environments, ensuring comprehensive protection against unauthorized access.
Prevent Breaches at the Endpoint In a Zero Trust model, security rules are applied to every endpoint and connected device including laptops, smartphones, tablets, and any IoT devices. Each endpoint must meet specific security requirements—such as up-to-date antivirus software, operating system patches, or compliance with encryption standards—before it is granted access to any corporate resources.
This endpoint-centric security ensures that even if a device is compromised, it cannot easily penetrate the network. By continuously monitoring and validating the security posture of devices, Zero Trust ensures that only trusted, compliant devices can interact with organizational systems, significantly reducing the risk of breaches from unsecured endpoints.
Organizations are increasingly using AI for threat prevention. For example, Check Point integrates AI to enhance cyber security through automation, adaptive threat detection, and rapid incident response, preventing the most advanced threats and future-proofing cyber defenses. Organizations that use AI to enforce their Zero trust policies during monitoring and risk assessment can cut their time to recognize a breach in half as well as reducing the cost of a breach by half.
https://www.checkpoint.com/cyber-hub/network-security/what-is-iot/ https://www.checkpoint.com/cyber-hub/cyber-security/what-is-incident-response/
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Adopt a Least Privilege Access (LPA) Policy Zero Trust adopts the principle of least privilege, ensuring that users are only granted the minimal level of access necessary for their specific roles or tasks. This not only minimizes the risk of accidental misuse, but also reduces the potential damage from a breach. For example, a marketing or sales employee might only have access to the marketing department’s resources and not to sensitive financial data.
Access privileges are dynamically adjusted based on real-time factors, such as the user’s job responsibilities, current projects, and even the context of the request. By limiting access in this way, Zero Trust ensures that compromised credentials or malicious insider activity cannot easily escalate to accessing critical systems or sensitive data.
Micro-Segment Access Across the Network Micro-segmentation involves dividing the network into smaller, isolated segments, each governed by its own set of security policies and access controls.
This granular level of security makes it much harder for threats to spread laterally through the network. In a hybrid cloud environment, where resources are distributed across both on-premises and cloud infrastructures, micro-segmentation ensures that access to each segment is tightly controlled. Even if an attacker gains access to one part of the network, they cannot automatically access other parts, such as financial systems or intellectual property databases.
This containment strategy is key to reducing the scope of a potential breach and preventing widespread damage.
Develop a Dynamic Perimeter Security Postur Zero Trust treats all areas of the network, both on-premise and in the cloud, as potentially vulnerable.
Unlike traditional security models that rely on perimeter defenses, Zero Trust assumes that modern organizations operate in a distributed environment with remote users, cloud services, and hybrid infrastructures. As a result, security is enforced everywhere, not just within the physical perimeter.
https://www.checkpoint.com/cyber-hub/network-security/what-is-the-principle-of-least-privilege-polp/
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Every access request, whether it originates from an internal user, a cloud service, or a remote device, is subject to rigorous verification. In a hybrid cloud environment, the dynamic perimeter approach ensures that all access requests—whether they come from corporate headquarters or a third-party cloud provider—are scrutinized to prevent threats from breaching the perimeter.
Data Encryption Protects Critical Data from Exploit and Compromise Encryption is a cornerstone of Zero Trust security, ensuring that sensitive data remains protected wherever it resides—whether on-premises, in the cloud, or in transit. In hybrid cloud configurations, where data flows between different environments, encryption ensures that even if data is intercepted, it remains unreadable to unauthorized parties.
Zero Trust mandates that data is encrypted both at rest (when stored) and in transit (when being transferred between systems), maintaining its confidentiality and integrity. This is especially critical in a hybrid cloud setup, where data may pass through various networks, some of which may not be fully under the organization’s control. Encryption ensures that even if attackers gain access to the network or intercept communications, they cannot easily exploit the data.
Continuous Monitoring and Risk Assessment Zero Trust doesn’t simply verify users and devices at the point of access—it is successful because it provides ongoing monitoring and risk assessments.
By analyzing user behavior, network traffic, and device health in real-time, Zero Trust can quickly detect suspicious activities or deviations from normal patterns, allowing for rapid responses to potential threats. This continuous vigilance is essential in a hybrid cloud setup, where data and users may be constantly interacting across multiple environments. If an anomaly is detected—such as an unusual login attempt from an unfamiliar location—Zero Trust can enforce additional security measures, such as re-authentication or limiting access, to mitigate the risk before any damage occurs.
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AI for Threat Prevention Zero Trust works by analyzing user behavior, network traffic, and device health in real-time to identify suspicious activity or deviations from normal patterns. This enables swift responses to emerging threats —a process that is significantly quickened when AI is used to proactively prevent threats. This ongoing vigilance is particularly crucial in a hybrid cloud environment, where data and users frequently interact across multiple platforms. When an anomaly, like an unusual login from a new location, is detected, Zero Trust can trigger additional security measures—such as re-authentication or access restrictions—to prevent damage before it occurs.
By leveraging AI to enforce Zero Trust policies during monitoring and risk assessments, companies can significantly reduce both the time it takes to detect a breach and the cost per breach—cutting both in half. IBM’s 2024 Cost of a Data Breach Report found that two out of three organizations studied are deploying security AI and automation across their security operation center (SOC). And when these technologies were used extensively across prevention workflows organizations incurred an average $2.2 million less in breach costs compared to those with no use in these workflows – the largest cost savings revealed in the 2024 report.
https://newsroom.ibm.com/2024-07-30-ibm-report-escalating-data-breach-disruption-pushes-costs-to-new-highs#:~:text=CAMBRIDGE%2C Mass.%2C July 30%2C 2024 %2F PRNewswire %2F,disruptive and further expand demands on cyber teams.
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Cloud Native Firewall Tests Expose Critical Security Gaps In late 2024, CyberRatings.org, a non-profit that evaluates cybersecurity products, released independent test results on the effectiveness of cloud vendors’ firewalls. The findings show that native cloud security is not enough to prevent threat actors from breaching private cloud defenses. Attackers looking to penetrate your network via low security public cloud providers can use this as an intrusion point without sufficient cyber security defenses.
CyberRatings.org tested 522 medium to high-severity exploits against the firewall offerings from Amazon Web Services (AWS) and Microsoft Azure.
AWS Firewall: Blocked only 0.3% of the exploits tested. Azure Firewall: Managed to block 24.14% of the exploits.
What These Results Tell Us About Native Cloud Security Cloud providers are focused on developing and maintaining cloud infrastructures that are easy to use, cost effective, and efficient.
However, they have invested less in the security of their environments. Understanding these security deficiencies is critical for security leaders utilizing hybrid cloud configurations.
0.3% 24.14%
https://cyberratings.org/press/cyberratings-org-announces-test-results-for-cloud-service-provider-native-firewalls/
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Check Point CloudGuard Bringing Zero Trust to Enterprise Hybrid Cloud Deployments Check Point CloudGuard helps organizations secure their hybrid cloud environments both by taking a prevention-first approach to cyber security threats and by employing Zero Trust security principles to provide the highest level of threat protection.
CloudGuard has been identified as a leader by analysts and customers, providing best-of-breed network security, firewall and gateway management, and WAF.
https://www.checkpoint.com/cloudguard/
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The Check Point Advantage Automated Application & API Security with CloudGuard WAF CloudGuard WAF offers a robust, cloud-native Web & API security solution designed to safeguard your applications against both known and unknown threats. By leveraging contextual AI, it ensures precise threat prevention without the need for constant signature updates, giving you a proactive approach to security.
Cloud Native by Design CloudGuard WAF is built to integrate seamlessly with modern cloud environments and is CI/CD-friendly, offering smooth deployment and automation.
Whether you’re installing, upgrading, or configuring, CloudGuard WAF simplifies the process using declarative infrastructure-as-code or APIs. This design ensures continuous prevention-first security without interrupting your development workflow, providing you with a frictionless, scalable solution for securing your applications at every stage of the deployment lifecycle.
CloudGuard WAF recognized as a Leader in 2024 GigaOm Radar report for Application and API Security
https://www.checkpoint.com/cloudguard/waf/ https://www.checkpoint.com/cyber-hub/cloud-security/what-is-infrastructure-as-code-iac/
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Preemptive Protection CloudGuard WAF provides zero-day protection for your Web Apps and APIs by utilizing machine learning (ML)-based security. This means you can defend against evolving threats in real-time, without the dependency on traditional signature updates, ensuring that your applications stay protected from day one.
Precise Detection and Prevention Through its advanced detection and prevention capabilities, CloudGuard WAF identifies more threats while minimizing false positives, saving time and creating SOC efficiencies.
Comprehensive Cloud-Native Protection with CloudGuard Network Security Experience a cloud-native security gateway that delivers industry-leading advanced threat prevention and multi-layered network security across all public, private, and hybrid cloud environments.
Based on a Zero Trust framework, CloudGuard ensures that all traffic is dropped by default, allowing only authorized traffic to flow between source and destination addresses, minimizing attack surfaces and enhancing the security posture across hybrid cloud infrastructures.
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Advanced Threat Prevention Powered by AI CloudGuard integrates AI-powered security to offer a comprehensive suite of advanced security features, including:
• Firewall & IPS (Intrusion Prevention System) to block malicious traffic • Application Control to regulate app usage and prevent unauthorized access • IPsec VPN for secure, encrypted communications • Antivirus and anti-bot protection against evolving malware and botnet threats • DLP (Data Loss Prevention) to prevent sensitive data leaks • Threat Extraction & Emulation for proactive protection against file-based threats
These advanced capabilities work together to protect your cloud infrastructure from both known and unknown threats, ensuring high levels of security without compromise.
Seamless Automation and Integration CloudGuard Network Security is built for rapid deployment and supports full automation, perfectly aligning with CI/CD processes and Infrastructure as Code (IaC) practices. It also integrates with leading configuration management tools, enabling quick configuration and ensuring consistent, automated security enforcement throughout the development lifecycle.
Unified Security Management The Unified Security Management console provides consistent visibility, policy management, logging, reporting, and control across all your cloud and on-premise environments.
This centralized platform streamlines security operations and allows organizations to manage and enforce Zero Trust frameworks effectively, ensuring comprehensive protection across public, private, and hybrid cloud networks.
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Check Point Harmony SASE Harmony SASE Enhances Both Network Security and User Experience Harmony SASE seamlessly integrates workspace security and network optimization into a single, cloud-based platform designed for the modern enterprise, making it the ideal solution for enforcing Zero Trust security principles.
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The Check Point Advantage Superior User Experience Harmony SASE ensures that users connect securely to company resources and the web without compromising their connection speeds. No more slowdowns or frustrating delays, all while maintaining robust security.
Full-Mesh Connectivity Whether working remotely or on-site, Harmony SASE offers secure, reliable connections to company resources, whether those resources are hosted in the cloud or on-premises. This flexibility is crucial for maintaining Zero Trust access controls across diverse environments.
Reduce Operating Complexity With Harmony SASE, managing users, resource access, and network performance is simplified through a single, unified cloud dashboard. This reduces operational overhead and streamlines security management across the organization.
Hybrid Internet Access Employees can connect directly to the web without sacrificing security, thanks to on-device malware protection and real-time web filtering. This is essential in a Zero Trust framework, ensuring that every connection, whether internal or external, is continuously validated.
Full-Mesh Private Access Harmony SASE provides granular, secure Zero Trust Private Access for users and sites. It ensures that only authorized individuals and devices can access specific resources, no matter where they are, enforcing strict access policies at every step.
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SaaS Security Map your entire SaaS ecosystem with Harmony SASE and remediate security gaps to reduce your attack surface. By closing vulnerabilities in SaaS applications, you ensure a more secure environment for your users and data.
Secure SD-WAN Harmony SASE optimizes connectivity for over 10,000 business applications, combining it with full suite protection powered by ThreatCloud AI—the industry’s most effective threat prevention technology. This ensures that every connection is securely managed, and threats are mitigated proactively, making it an invaluable tool for Zero Trust security.
Implement Zero Trust Security with Check Point To truly embrace a ‘never trust, always verify’ approach, it is imperative to implement a least- privilege framework across your cloud environments and prevent the exposure of keys and secrets within code.
Check Point Infinity provides a unified platform to enforce these measures across security and development teams. It enables security teams to manage users and roles across multi-cloud and on premises networks as well as code security across the development lifecycle. It ensures continuous scanning of cloud networks to adapt automatically to the dynamic nature of cloud applications. And it provides notifications on findings to the right developer or security engineer within seconds, enabling both high standards of cloud security and an outstanding developer experience.
Conclusion Cloud infrastructure is a critical component of IT frameworks and the dependence on the cloud will only continue to accelerate in the coming decade. As enterprise organizations continue to migrate, modernize, and tailor hybrid cloud deployments, they unlock greater agility, data sovereignty, and operational efficiencies. But these rapidly evolving hybrid environments come with a price: a new wave of complex security risks.
Technology and security leaders must understand the security vulnerabilities of their hybrid cloud networks to ensure their organization is protected. And the best protection to hybrid cloud can be found in adopting Zero Trust models. By integrating policies, processes, and technology, Zero Trust establishes trust across cloud environments, from the cloud to the edge, ensuring secure multi-cloud deployments.
As hybrid cloud environments continue to evolve, staying ahead of security risks will require proactive strategies and robust frameworks. Zero Trust offers a powerful approach to bridging the gaps and securing the modern cloud infrastructure that supports your organization’s most critical operations.
Learn how to secure your hybrid cloud with Check Point.
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Introduction The Complexity of the Hybrid Cloud Understanding Why Hybrid Cloud Security Requires Vigilance Hybrid Cloud and Zero Trust Zero Trust: Keys to Success Cloud Native Firewall Tests Expose Critical Security Gaps Check Point CloudGuard Check Point Harmony SASE Conclusion
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