Company Details
sunspire-health
74
1,563
62133
sunspirehealth.com
0
SUN_2967531
In-progress


Sunspire Health Company CyberSecurity Posture
sunspirehealth.comSunspire Health is a nationwide network of addiction treatment facilities that offer personalized treatment plans for people of all walks of life, meeting them where they are at and guiding them through recovery. Our facilities offer an array of addiction recovery services across the United States and are able to provide the full spectrum of care including detox, residential and outpatient treatment programs in settings that are designed to promote healing. Sunspire began as a single treatment facility in Florida in 2011 and has expanded to become a comprehensive network of seven addiction treatment facilities located in Massachusetts, South Carolina, Florida, Texas, Illinois, and California. Our facilities are small in size with a maximum of 40 beds and a high staff-to-patient ratio, meaning that each person receives personalized, quality care no matter which Sunspire center they go to for treatment. sunspirehealth.com
Company Details
sunspire-health
74
1,563
62133
sunspirehealth.com
0
SUN_2967531
In-progress
Between 700 and 749

Sunspire Health Global Score (TPRM)XXXX

Description: Several employee email accounts were accessed in a phishing attack. A hacker sends emails to individuals under a legitimate employee name and fools one or more recipients into revealing security information about the network. Compromised includes patient names, dates of birth, Social Security numbers, treatment and diagnosis information, and health insurance information. There is no evidence the information in the emails has been misused in any way.


No incidents recorded for Sunspire Health in 2026.
No incidents recorded for Sunspire Health in 2026.
No incidents recorded for Sunspire Health in 2026.
Sunspire Health cyber incidents detection timeline including parent company and subsidiaries

Sunspire Health is a nationwide network of addiction treatment facilities that offer personalized treatment plans for people of all walks of life, meeting them where they are at and guiding them through recovery. Our facilities offer an array of addiction recovery services across the United States and are able to provide the full spectrum of care including detox, residential and outpatient treatment programs in settings that are designed to promote healing. Sunspire began as a single treatment facility in Florida in 2011 and has expanded to become a comprehensive network of seven addiction treatment facilities located in Massachusetts, South Carolina, Florida, Texas, Illinois, and California. Our facilities are small in size with a maximum of 40 beds and a high staff-to-patient ratio, meaning that each person receives personalized, quality care no matter which Sunspire center they go to for treatment. sunspirehealth.com


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Explore insights on cybersecurity incidents, risk posture, and Rankiteo's assessments.
The official website of Sunspire Health is http://sunspirehealth.com/.
According to Rankiteo, Sunspire Health’s AI-generated cybersecurity score is 742, reflecting their Moderate security posture.
According to Rankiteo, Sunspire Health currently holds 0 security badges, indicating that no recognized compliance certifications are currently verified for the organization.
According to Rankiteo, Sunspire Health has not been affected by any supply chain cyber incidents, and no incident IDs are currently listed for the organization.
According to Rankiteo, Sunspire Health is not certified under SOC 2 Type 1.
According to Rankiteo, Sunspire Health does not hold a SOC 2 Type 2 certification.
According to Rankiteo, Sunspire Health is not listed as GDPR compliant.
According to Rankiteo, Sunspire Health does not currently maintain PCI DSS compliance.
According to Rankiteo, Sunspire Health is not compliant with HIPAA regulations.
According to Rankiteo,Sunspire Health is not certified under ISO 27001, indicating the absence of a formally recognized information security management framework.
Sunspire Health operates primarily in the Mental Health Care industry.
Sunspire Health employs approximately 74 people worldwide.
Sunspire Health presently has no subsidiaries across any sectors.
Sunspire Health’s official LinkedIn profile has approximately 1,563 followers.
Sunspire Health is classified under the NAICS code 62133, which corresponds to Offices of Mental Health Practitioners (except Physicians).
No, Sunspire Health does not have a profile on Crunchbase.
Yes, Sunspire Health maintains an official LinkedIn profile, which is actively utilized for branding and talent engagement, which can be accessed here: https://www.linkedin.com/company/sunspire-health.
As of January 22, 2026, Rankiteo reports that Sunspire Health has experienced 1 cybersecurity incidents.
Sunspire Health has an estimated 5,276 peer or competitor companies worldwide.
Incident Types: The types of cybersecurity incidents that have occurred include Breach.
Title: Phishing Attack on Employee Email Accounts
Description: Several employee email accounts were accessed in a phishing attack. A hacker sends emails to individuals under a legitimate employee name and fools one or more recipients into revealing security information about the network. Compromised includes patient names, dates of birth, Social Security numbers, treatment and diagnosis information, and health insurance information. There is no evidence the information in the emails has been misused in any way.
Type: Phishing Attack
Attack Vector: Email
Vulnerability Exploited: Social Engineering
Threat Actor: Unknown Hacker
Motivation: Data Theft
Common Attack Types: The most common types of attacks the company has faced is Breach.
Identification of Attack Vectors: The company identifies the attack vectors used in incidents through Phishing Email.

Data Compromised: Patient names, Dates of birth, Social security numbers, Treatment and diagnosis information, Health insurance information
Systems Affected: Employee email accounts
Commonly Compromised Data Types: The types of data most commonly compromised in incidents are Patient Names, Dates Of Birth, Social Security Numbers, Treatment And Diagnosis Information, Health Insurance Information and .

Type of Data Compromised: Patient names, Dates of birth, Social security numbers, Treatment and diagnosis information, Health insurance information
Sensitivity of Data: High

Entry Point: Phishing Email

Root Causes: Social Engineering via Phishing Email
Last Attacking Group: The attacking group in the last incident was an Unknown Hacker.
Most Significant Data Compromised: The most significant data compromised in an incident were Patient names, Dates of birth, Social Security numbers, Treatment and diagnosis information, Health insurance information and .
Most Significant System Affected: The most significant system affected in an incident was Employee email accounts.
Most Sensitive Data Compromised: The most sensitive data compromised in a breach were Patient names, Health insurance information, Social Security numbers, Dates of birth and Treatment and diagnosis information.
Most Recent Entry Point: The most recent entry point used by an initial access broker was an Phishing Email.
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Backstage is an open framework for building developer portals, and @backstage/backend-defaults provides the default implementations and setup for a standard Backstage backend app. Prior to versions 0.12.2, 0.13.2, 0.14.1, and 0.15.0, the `FetchUrlReader` component, used by the catalog and other plugins to fetch content from URLs, followed HTTP redirects automatically. This allowed an attacker who controls a host listed in `backend.reading.allow` to redirect requests to internal or sensitive URLs that are not on the allowlist, bypassing the URL allowlist security control. This is a Server-Side Request Forgery (SSRF) vulnerability that could allow access to internal resources, but it does not allow attackers to include additional request headers. This vulnerability is fixed in `@backstage/backend-defaults` version 0.12.2, 0.13.2, 0.14.1, and 0.15.0. Users should upgrade to this version or later. Some workarounds are available. Restrict `backend.reading.allow` to only trusted hosts that you control and that do not issue redirects, ensure allowed hosts do not have open redirect vulnerabilities, and/or use network-level controls to block access from Backstage to sensitive internal endpoints.
Backstage is an open framework for building developer portals, and @backstage/cli-common provides config loading functionality used by the backend and command line interface of Backstage. Prior to version 0.1.17, the `resolveSafeChildPath` utility function in `@backstage/backend-plugin-api`, which is used to prevent path traversal attacks, failed to properly validate symlink chains and dangling symlinks. An attacker could bypass the path validation via symlink chains (creating `link1 → link2 → /outside` where intermediate symlinks eventually resolve outside the allowed directory) and dangling symlinks (creating symlinks pointing to non-existent paths outside the base directory, which would later be created during file operations). This function is used by Scaffolder actions and other backend components to ensure file operations stay within designated directories. This vulnerability is fixed in `@backstage/backend-plugin-api` version 0.1.17. Users should upgrade to this version or later. Some workarounds are available. Run Backstage in a containerized environment with limited filesystem access and/or restrict template creation to trusted users.
Backstage is an open framework for building developer portals. Multiple Scaffolder actions and archive extraction utilities were vulnerable to symlink-based path traversal attacks. An attacker with access to create and execute Scaffolder templates could exploit symlinks to read arbitrary files via the `debug:log` action by creating a symlink pointing to sensitive files (e.g., `/etc/passwd`, configuration files, secrets); delete arbitrary files via the `fs:delete` action by creating symlinks pointing outside the workspace, and write files outside the workspace via archive extraction (tar/zip) containing malicious symlinks. This affects any Backstage deployment where users can create or execute Scaffolder templates. This vulnerability is fixed in `@backstage/backend-defaults` versions 0.12.2, 0.13.2, 0.14.1, and 0.15.0; `@backstage/plugin-scaffolder-backend` versions 2.2.2, 3.0.2, and 3.1.1; and `@backstage/plugin-scaffolder-node` versions 0.11.2 and 0.12.3. Users should upgrade to these versions or later. Some workarounds are available. Follow the recommendation in the Backstage Threat Model to limit access to creating and updating templates, restrict who can create and execute Scaffolder templates using the permissions framework, audit existing templates for symlink usage, and/or run Backstage in a containerized environment with limited filesystem access.
FastAPI Api Key provides a backend-agnostic library that provides an API key system. Version 1.1.0 has a timing side-channel vulnerability in verify_key(). The method applied a random delay only on verification failures, allowing an attacker to statistically distinguish valid from invalid API keys by measuring response latencies. With enough repeated requests, an adversary could infer whether a key_id corresponds to a valid key, potentially accelerating brute-force or enumeration attacks. All users relying on verify_key() for API key authentication prior to the fix are affected. Users should upgrade to version 1.1.0 to receive a patch. The patch applies a uniform random delay (min_delay to max_delay) to all responses regardless of outcome, eliminating the timing correlation. Some workarounds are available. Add an application-level fixed delay or random jitter to all authentication responses (success and failure) before the fix is applied and/or use rate limiting to reduce the feasibility of statistical timing attacks.
The Flux Operator is a Kubernetes CRD controller that manages the lifecycle of CNCF Flux CD and the ControlPlane enterprise distribution. Starting in version 0.36.0 and prior to version 0.40.0, a privilege escalation vulnerability exists in the Flux Operator Web UI authentication code that allows an attacker to bypass Kubernetes RBAC impersonation and execute API requests with the operator's service account privileges. In order to be vulnerable, cluster admins must configure the Flux Operator with an OIDC provider that issues tokens lacking the expected claims (e.g., `email`, `groups`), or configure custom CEL expressions that can evaluate to empty values. After OIDC token claims are processed through CEL expressions, there is no validation that the resulting `username` and `groups` values are non-empty. When both values are empty, the Kubernetes client-go library does not add impersonation headers to API requests, causing them to be executed with the flux-operator service account's credentials instead of the authenticated user's limited permissions. This can result in privilege escalation, data exposure, and/or information disclosure. Version 0.40.0 patches the issue.

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