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European manufacturer of nitrile gloves, latex gloves, laboratory gloves, cleanroom gloves, chemical resistant gloves, biohazard gloves, sterile gloves

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Updated: 2026-09-22 01:56 Language: English (default) Access: Normal

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SHIELD Scientific manufacturer of latex and nitrile gloves Full homepage screenshot
Editorial Review

Website Review

What is SHIELD Scientific?

SHIELD Scientific is a European manufacturer of disposable protective gloves, including latex and nitrile options. Its product range covers laboratory gloves, cleanroom gloves, chemical-resistant gloves, biohazard gloves and sterile gloves. Rather than a retailer or marketplace, it presents itself as a producer, so its site is mainly aimed at buyers who need consistent specifications across orders.

Who it is for

  • Laboratory and research teams needing routine chemical and biological protection
  • Cleanroom operators where particle and contamination control matter
  • Pharmaceutical, healthcare and industrial users requiring sterile or biohazard-rated gloves
  • Procurement and safety managers comparing materials, thicknesses and compliance documentation

Material trade-offs

Nitrile is typically chosen where latex allergy is a concern and where resistance to oils and some chemicals is useful. Latex often offers high elasticity and tactile sensitivity, which suits examination and fine handling work, but it is unsuitable for latex-sensitive users. Sterile versions are suited to aseptic environments, while non-sterile gloves are generally adequate for general laboratory and industrial tasks.

The main practical consideration is matching glove type, material and sterility level to the hazard and the cleanliness class of the workspace, then verifying that the chosen specification meets the relevant standards.

What types of gloves does SHIELD Scientific manufacture?

SHIELD Scientific is a European manufacturer of disposable gloves aimed mainly at laboratories, cleanrooms, healthcare and industrial settings.

Its range covers:

  • Nitrile gloves – the core of the range, typically chosen for chemical resistance, durability and suitability for latex-sensitive users.
  • Latex gloves – natural rubber options offering high elasticity and fit, often used where tactile sensitivity matters.
  • Laboratory gloves – general-purpose disposable gloves for routine bench work and sample handling.
  • Cleanroom gloves – manufactured and packaged for controlled environments where particle and contamination levels are regulated.
  • Chemical-resistant gloves – intended for handling hazardous substances, with protection levels varying by model.
  • Biohazard gloves – suited to work involving biological materials and potentially infectious samples.
  • Sterile gloves – individually processed for aseptic tasks such as clinical procedures and cell culture work.

The main trade-offs are familiar ones: nitrile resists chemicals and oils well but may feel less elastic than latex; latex offers comfort and sensitivity but is unsuitable for people with latex allergies; cleanroom and sterile versions cost more because of stricter processing and packaging. Buyers typically select by exposure risk, required sterility and the cleanliness class of the working environment.

Which industries use SHIELD Scientific gloves?

SHIELD Scientific is a European manufacturer of disposable gloves, including nitrile, latex, sterile and chemical-resistant options. Its range is typically aimed at workplaces where hand protection, contamination control or chemical resistance matters more than general-purpose use.

Industries that commonly use these gloves

  • Laboratories and life sciences – nitrile and latex gloves are standard for sample handling, bench work and sterile procedures.
  • Healthcare and clinical settings – examination, sterile and biohazard gloves suit hospitals, clinics and diagnostic labs.
  • Pharmaceutical and cleanroom manufacturing – cleanroom-compatible gloves help control particle and microbial contamination during production.
  • Chemical and industrial processing – chemical-resistant gloves are suited to handling solvents, acids and other hazardous substances.
  • Food processing and research – disposable gloves support hygiene and handling requirements.
  • Electronics and precision assembly – low-particle, low-residue gloves may be used where contamination affects products.

Trade-offs to consider

Nitrile generally offers good chemical and puncture resistance without latex allergy concerns, while latex often provides superior comfort, fit and tactile sensitivity. Sterile and cleanroom versions cost more and are usually reserved for regulated environments. The right choice depends on the specific exposure, required sterility level and any allergy policies in the workplace.

What is the difference between latex and nitrile gloves?

Material and feel

Latex gloves are made from natural rubber, so they typically feel softer and more elastic, conforming closely to the hand. Nitrile gloves are synthetic and generally offer a slightly firmer, more structured fit.

Allergy considerations

The key difference for many workplaces is allergy risk. Natural rubber latex can trigger allergic reactions in some users, ranging from skin irritation to more serious responses. Nitrile contains no natural rubber latex proteins, so it is often chosen where latex sensitivity is a concern.

Chemical and puncture resistance

Nitrile generally resists a broader range of oils, solvents and greases, and tends to have better puncture resistance. Latex usually provides good tensile strength and flexibility but can degrade faster with certain chemicals.

Common uses

  • Latex: general laboratory work, food handling, and tasks needing maximum tactile sensitivity.
  • Nitrile: cleanrooms, chemical handling, biohazard work, and sterile environments where latex allergies matter.

Trade-offs at a glance

Factor Latex Nitrile
Feel Softer, more elastic Firmer, less stretchy
Allergy risk Possible Low
Chemical resistance Moderate Often broader
Puncture resistance Good Typically better

SHIELD Scientific manufactures both latex and nitrile gloves, including cleanroom, sterile and chemical-resistant options, so buyers can match material to task, user sensitivity and required protection level.

Are SHIELD Scientific gloves suitable for cleanroom environments?

Yes — cleanroom use is one of the areas SHIELD Scientific explicitly covers, alongside laboratory, chemical-resistant, biohazard and sterile glove ranges. The company describes itself as a European manufacturer of nitrile and latex gloves, and cleanroom gloves sit within that portfolio.

Who this suits

  • Cleanroom operators in electronics, pharmaceuticals, medical devices and similar controlled environments
  • Laboratory and sterile-handling teams that need gloves matched to a cleanliness class
  • Buyers comparing nitrile against latex for a given process

What to weigh

  • Material choice: Nitrile is often preferred where latex protein sensitivity or chemical resistance matters; latex may suit users who prioritise fit and tactile feel. Availability varies by range.
  • Sterility and cleanliness level: Cleanroom and sterile gloves are separate categories here, so the right pick depends on your required particle, extractable and bioburden limits rather than the brand alone.
  • Verification: Confirm the specific product's stated cleanroom class, sterility status and test data before specifying it, since suitability is per-product rather than per-manufacturer.

For a controlled environment, treat the site's cleanroom category as a starting point, then check the individual glove's documentation against your protocol.

Does SHIELD Scientific offer sterile and chemical-resistant gloves?

Yes. SHIELD Scientific is a European manufacturer whose product range includes both sterile gloves and chemical-resistant gloves, alongside nitrile, latex, laboratory, cleanroom and biohazard options.

H3 Sterile gloves Sterile gloves are typically individually packaged and suited to aseptic work where contamination control matters, such as microbiology, pharmaceutical handling, clinical procedures and cleanroom operations. Sterile nitrile or latex variants may be chosen depending on the required material properties and the sensitivity of the task.

H3 Chemical-resistant gloves Chemical-resistant gloves are intended for handling hazardous substances where permeation and breakthrough time matter more than tactile sensitivity. Selection usually depends on the specific chemical, concentration and contact duration, so the manufacturer's chemical resistance data is the practical starting point rather than a general claim.

H3 How the categories compare

Aspect Sterile gloves Chemical-resistant gloves
Main purpose Contamination control Protection against chemical permeation
Typical settings Aseptic, clinical, cleanroom Laboratories, industrial handling
Key selection factor Sterility assurance and fit Chemical-specific breakthrough data
Material examples Nitrile, latex Nitrile and other chemical-resistant compounds

H3 Trade-offs Sterility adds packaging and cost, and sterile gloves are not automatically chemical-resistant. Chemical-resistant gloves may be thicker and less tactile, which can reduce dexterity for fine work. Some products may combine both properties, but for regulated tasks it is worth confirming the specific specification, sterility assurance level and chemical test results for each product rather than relying on category names alone.

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Website Overview

Identifiable technologies and additional version or configuration signals make the service easier to fingerprint, which may help targeted scanners narrow their checks. An established domain and managed infrastructure suggest continuity of operations and may support dependable delivery, although neither guarantees service quality.

Domain and Registration

Registered in 2007, this domain has about 19 years of history. That suggests continuity, although ownership and purpose may have changed. Transfer-protection status is present, helping reduce the risk of unauthorized domain transfers. The domain uses the common .com extension, which is not an independent safety signal.

DNS and Email

Nameservers are provided by ovh.net, indicating managed DNS hosting. MX records point to the vadesecure.com email service. No CNAME was found; the observed records resolve directly to addresses. SPF and DMARC are configured. DKIM status is unknown. TXT records include verification markers for Google, Microsoft. Such markers may also remain after a service stops being used.

TLS and Certificates

The certificate uses an RSA 2048-bit public key, offering broad client compatibility. The server supplied a complete certificate chain. No organization name is present in the certificate; the available fields are consistent with domain validation. The certificate was issued by Let's Encrypt, commonly associated with automated certificate services. The certificate's total validity is about 89 days, consistent with a short renewal cycle.

HTTP and Browser Security

X-Powered-By exposes backend information: PHP/8.2.33, PleskLin. The response lacks these common security headers: CSP. No obvious internal addresses or debug information were found in the headers. The Server header identifies nginx without an exact version. No explicit CDN or WAF marker was found in the response headers.

Technology Stack Analysis

The public page identifies WP Rocket 3.23.2.2, WordPress, jQuery, Bootstrap, Google Tag Manager, nginx, PHP, with exact versions exposed for 1 technologies. These details can narrow vulnerability checks, although exposure alone is not a vulnerability.

Search and Social Sharing

The Generator tag identifies WP Rocket 3.23.2.2, making the publishing system easier to fingerprint. Open Graph is partially configured; og:image is missing. Twitter Card metadata is configured. JSON-LD includes Organization data, helping describe the organization as an entity. The page declares 16 language or regional alternatives using hreflang.

Hosting and Email

DNSovh.net
HostingOVH SAS
Emailvadesecure.com
Location France flagFrance 54.38.37.203

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Pages, Search and Sharing

Meta descriptionEuropean manufacturer of nitrile gloves, latex gloves, laboratory gloves, cleanroom gloves, chemical resistant gloves, biohazard gloves, sterile gloves
Canonical URLhttps://www.shieldscientific.com/
LanguageEnglish (default) · Multilingual
Twitter Cardsummary
All bots 1 allowed · 72 disallowed
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Registration details RDAP / WHOIS

RegistrarOVH sas
Registered2007-01-05
Expires2027-01-05
Domain statusclient delete prohibited、client transfer prohibited
Nameserversdns16.ovh.net、ns16.ovh.net
DNSSECunsigned

DNS records

TypeNameValueTTLPriority
Awww.shieldscientific.com54.38.37.20386400
MXshieldscientific.commx01.cloud.vadesecure.com864000
MXshieldscientific.commx02.cloud.vadesecure.com864000
MXshieldscientific.commx03.cloud.vadesecure.com864000
MXshieldscientific.commx04.cloud.vadesecure.com864000
NSshieldscientific.comdns16.ovh.net86400
NSshieldscientific.comns16.ovh.net86400
TXTshieldscientific.comMS=ms4110125086400
TXTshieldscientific.comgoogle-site-verification=-UGbuP0Kv77BtkeLUfMKLETFJOsz2vZEMT647vbxqqk86400
TXTshieldscientific.comgoogle-site-verification=5DnjQyDc9J5lMmVGAamq9btwKGl9bqfMfdFSLIa2BWk86400
TXTshieldscientific.comv=spf1 include:mx.ovh.com include:spf.protection.outlook.com -all86400
DMARC_dmarc.shieldscientific.comv=DMARC1; p=reject; rua=mailto:[email protected];86400

TLS and certificates

AssessmentNormal configuration
Supported protocolsTLSv1.2、TLSv1.3
Negotiated protocolTLSv1.3
Certificate subjectshieldscientific.com
IssuerLet's Encrypt
Valid until2026-12-03T04:47 · Remaining when checked: 72 days
Verification detailsCertificate trust: Passed · Hostname match: Passed

HTTP response headers

HeaderValue
content-typetext/html; charset=UTF-8
cache-controlmax-age=0
servernginx
strict-transport-securitymax-age=63072000; includeSubDomains; preload
x-frame-optionsSAMEORIGIN
x-content-type-optionsnosniff
referrer-policystrict-origin-when-cross-origin
permissions-policyautoplay=*, fullscreen=*, vertical-scroll=*

Identified technologies

WP Rocket 3.23.2.2WordPressjQueryBootstrapGoogle Tag ManagernginxPHP