Apps like Favor and Instacart can now apply for permits to deliver booze from stores and restaurants straight to your door. Photo courtesy of Favor

It's about to be a lot easier to order your favorite handle of booze straight to your door, thanks to new legislation. The Texas Alcoholic Beverage Commission just began accepting applications for permits enabling services like Favor and Instacart to bring alcohol to your home.

In June, Governor Greg Abbott signed legislation that widens the door for liquor delivery across the Lone Star State. Any third-party company seeking to launch the service can now obtain a so-called consumer delivery permit from TABC. Chris Porter, a TABC spokesman, tells CultureMap that the first permits should be issued during the third week of December — just in time for Christmas Day and New Year's Eve parties.

In a December 5 news release, TABC executive director Bentley Nettles says this law is "an important step forward for Texas consumers, as well as alcohol retailers. For years, Texans across the state have relied on third-party services to deliver everything from clothing to vehicles. Now, at long last, alcohol can be delivered as well."

Before enactment of the law, certain businesses like liquor stores could distribute beer, wine, and liquor in Texas to homes and businesses. But through this year's legislative update, third-party companies now will be permitted to pick up beer, wine, and liquor from a state-licensed retailer such as a bar, restaurant, or liquor store and then take it to customers — either as solo purchases or along with food orders.

"We primarily see this as appealing to third-party delivery services," Porter says. "There are laws on the books which became effective in September that allow restaurants with the proper permit to deliver alcohol along with food on their own. Of course, if these businesses opt instead to contract that delivery to a third party, then the third party would need the new consumer delivery permit."

The new law mandates that drivers and booze buyers be at least 21 years old, which is the legal age for alcohol consumption in Texas.

Among the businesses and organizations that backed the legislation are San Antonio grocery chain H-E-B, which owns the Austin-based Favor delivery app; Instacart; the Houston-based Landry's restaurant conglomerate; e-commerce giant Amazon; TechNet; the Texas Restaurant Association; Beer Alliance of Texas; Wholesale Beer Distributors of Texas; and the California-based Wine Institute.

"This law will allow more businesses to take advantage of on-demand delivery apps that enable them to reach more customers, while ensuring deliveries of alcohol are carried out safely and responsibly," David Edmonson, TechNet's executive director for Texas and the Southeast, said in a June news release.

The Texas Restaurant Association applauds the law as a way for restaurants to better compete in the on-demand economy.

"With customers increasingly craving convenience, and hotels, grocery stores, and package stores already permitted to allow alcohol to be taken or delivered off the premises, this legislation [levels] the playing field for restaurants," the association says in a statement.

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This article originally ran on CultureMap.

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Austin company to bring AI-powered school to The Woodlands

AI education

Austin-based Alpha School, which operates AI-powered private schools, is opening its first Houston-area location in The Woodlands.

The 8,000-square-foot school, scheduled to be ready for the 2026-27 academic year, initially will serve students in kindergarten through eighth grade. Alpha says the school will offer “open workshop spaces and innovative classrooms that support personalized instruction, core academics, leadership development, and real-world life skills.”

Alpha sets aside two hours each school day for the AI-driven, self-paced study of core subjects like math, reading and science. The rest of each school day consists of life-skills workshops focusing on topics such as leadership and financial literacy.

Alpha’s school in The Woodlands has begun accepting applications for the 2026-27 school year. Annual tuition costs $40,000.

“The Woodlands is one of the most dynamic, forward-thinking communities in Texas, and Alpha is proud to bring

an innovative educational model that complements its strong academic foundation,” says Rachel Goodlad, head

of expansion for Alpha.

Founded in 2014, Alpha School combines adaptive technology-driven instruction with immersive life-skills workshops. Its model emphasizes mastery-based learning in core subjects alongside development of communication, critical thinking, financial literacy and leadership skills. It operates more than 15 schools across the country.

Elsewhere in Texas, Alpha operates schools in Austin, Brownsville, Fort Worth and Plano. Alpha also operates 12 Texas Sports Academy campuses in Texas, including locations in Houston, Pearland and Richmond, along with a NextGen Academy esports school in Austin, a school for gifted students in Georgetown, and lower-cost Nova Academy campuses in Austin and Bastrop.

Alpha has fans and critics. While supporters tout students’ high achievement rates, detractors complain about the high tuition and the AI-influenced depersonalization of education.

“Students and our country need to be in relationship with other human beings,” Randi Weingarten, president of the American Federation of Teachers, a teachers union, tells The New York Times. “When you have a school that is strictly AI, it is violating that core precept of the human endeavor and of education.”

Alpha co-founder MacKenzie Price, a podcaster and social media influencer, doesn’t share Weingarten’s views.

“Parents and teachers: We need to embrace this change,” Price wrote after President Trump signed an executive order promoting AI in schools.

The Times notes that Alpha doesn’t employ AI as a tutor or a supplement. Rather, the newspaper says, AI is “the school’s primary educational driver to move students through academic content.”

Houston researcher secures $1.7M to develop drug for aggressive form of breast cancer

cancer research

A University of Houston researcher has joined a $3.2 million effort to develop a new drug designed to attack a cancer-driving protein commonly found in triple-negative breast cancer.

Triple-negative breast cancer (TNBC) is one of the most difficult-to-treat forms of cancer and accounts for 10 percent to 15 percent of all breast cancer cases. The disease gets its name because tumors associated with it test negative for estrogen receptors, progesterone receptors and excess HER2 protein, making it difficult to target. Due to this, TNBC is often treated with general chemotherapy, which can come with negative side effects and drug resistance, according to UH.

UH College of Pharmacy research associate professor Wei Wang is developing a drug that can target the disease more specifically. The drug will target MDM2, a protein often overproduced in TNBC that also contributes to faster tumor growth.

Wang is working on a team led by Wei Li, director of the University of Tennessee Health Science Center College of Pharmacy’s Drug Discovery Center. She has received $1.7 million to support the research.

Wang and UH professor of pharmacology and toxicology Ruiwen Zhang have discovered a compound that can break down MDM2. In early laboratory models, the compound has shown the ability to shrink tumors.

Wang and Zhang will focus on understanding how the treatment works and monitoring its effectiveness in models that closely mirror human disease.

“We will study how the drug targets MDM2 and evaluate the most promising drug candidates to determine effective dosing, understand how the drug behaves in the body, compare it with existing treatments and assess early safety,” Wang said in a news release.

Li’s team at the University of Tennessee will be working on the chemistry and drug design end of the project.

“This work could lead to an entirely new class of therapies for triple-negative breast cancer,” Li added in the release. “We’re hopeful that by directly removing the MDM2 protein from cancer cells, we can help more patients respond to treatment regardless of their tumor type.”